Analytical determinations of luteolin

Plants, through the photosynthesis process, produce the substances necessary for all the life cycles of nature, which are called "primary metabolites." Moreover, there are some plants that synthesize, in addition to these, other substances with more specific functions, which are known as &...

Full description

Saved in:
Bibliographic Details
Published inBioFactors (Oxford) Vol. 47; no. 2; pp. 141 - 164
Main Authors Tesio, Alvaro Y., Robledo, Sebastian N.
Format Journal Article
LanguageEnglish
Published Hoboken, USA John Wiley & Sons, Inc 01.03.2021
Subjects
Online AccessGet full text

Cover

Loading…
Abstract Plants, through the photosynthesis process, produce the substances necessary for all the life cycles of nature, which are called "primary metabolites." Moreover, there are some plants that synthesize, in addition to these, other substances with more specific functions, which are known as "secondary metabolites." It is inside this group that flavonoids are located, whose main function is to protect organisms from damage caused by different oxidizing agents. Luteolin (3,4,5,7‐tetrahydroxy‐flavone) belongs to the sub‐class of flavonoids known as flavones and is one of 10,000 flavonoids currently known, being one of the most bio‐active flavonoids. Its various beneficial properties for health, together with the increasing reduction in the use of synthetic antioxidants, make the study of luteolin a very active field. Within this, the quantification of this molecule has become a subject of very special interest given that it is transversal to all fields. In this review article, we aim to give the reader a broad and deep vision of this topic, focusing on the events reported in the last 5 years and covering all possible techniques related to analytical determinations. We will discuss in terms of advantages and disadvantages between techniques, selectivity, sensitivity, costs, time consumption, and reagents as well as in the complexity of operations.
AbstractList Plants, through the photosynthesis process, produce the substances necessary for all the life cycles of nature, which are called "primary metabolites." Moreover, there are some plants that synthesize, in addition to these, other substances with more specific functions, which are known as "secondary metabolites." It is inside this group that flavonoids are located, whose main function is to protect organisms from damage caused by different oxidizing agents. Luteolin (3,4,5,7-tetrahydroxy-flavone) belongs to the sub-class of flavonoids known as flavones and is one of 10,000 flavonoids currently known, being one of the most bio-active flavonoids. Its various beneficial properties for health, together with the increasing reduction in the use of synthetic antioxidants, make the study of luteolin a very active field. Within this, the quantification of this molecule has become a subject of very special interest given that it is transversal to all fields. In this review article, we aim to give the reader a broad and deep vision of this topic, focusing on the events reported in the last 5 years and covering all possible techniques related to analytical determinations. We will discuss in terms of advantages and disadvantages between techniques, selectivity, sensitivity, costs, time consumption, and reagents as well as in the complexity of operations.Plants, through the photosynthesis process, produce the substances necessary for all the life cycles of nature, which are called "primary metabolites." Moreover, there are some plants that synthesize, in addition to these, other substances with more specific functions, which are known as "secondary metabolites." It is inside this group that flavonoids are located, whose main function is to protect organisms from damage caused by different oxidizing agents. Luteolin (3,4,5,7-tetrahydroxy-flavone) belongs to the sub-class of flavonoids known as flavones and is one of 10,000 flavonoids currently known, being one of the most bio-active flavonoids. Its various beneficial properties for health, together with the increasing reduction in the use of synthetic antioxidants, make the study of luteolin a very active field. Within this, the quantification of this molecule has become a subject of very special interest given that it is transversal to all fields. In this review article, we aim to give the reader a broad and deep vision of this topic, focusing on the events reported in the last 5 years and covering all possible techniques related to analytical determinations. We will discuss in terms of advantages and disadvantages between techniques, selectivity, sensitivity, costs, time consumption, and reagents as well as in the complexity of operations.
Plants, through the photosynthesis process, produce the substances necessary for all the life cycles of nature, which are called "primary metabolites." Moreover, there are some plants that synthesize, in addition to these, other substances with more specific functions, which are known as "secondary metabolites." It is inside this group that flavonoids are located, whose main function is to protect organisms from damage caused by different oxidizing agents. Luteolin (3,4,5,7‐tetrahydroxy‐flavone) belongs to the sub‐class of flavonoids known as flavones and is one of 10,000 flavonoids currently known, being one of the most bio‐active flavonoids. Its various beneficial properties for health, together with the increasing reduction in the use of synthetic antioxidants, make the study of luteolin a very active field. Within this, the quantification of this molecule has become a subject of very special interest given that it is transversal to all fields. In this review article, we aim to give the reader a broad and deep vision of this topic, focusing on the events reported in the last 5 years and covering all possible techniques related to analytical determinations. We will discuss in terms of advantages and disadvantages between techniques, selectivity, sensitivity, costs, time consumption, and reagents as well as in the complexity of operations.
Author Tesio, Alvaro Y.
Robledo, Sebastian N.
Author_xml – sequence: 1
  givenname: Alvaro Y.
  orcidid: 0000-0001-9004-5947
  surname: Tesio
  fullname: Tesio, Alvaro Y.
  email: atesio@cidmeju.unju.edu.ar
  organization: Centro de Desarrollo Tecnológico General Savio
– sequence: 2
  givenname: Sebastian N.
  surname: Robledo
  fullname: Robledo, Sebastian N.
  email: snrobledo@ing.unrc.edu.ar
  organization: Universidad Nacional de Río Cuarto
BackLink https://www.ncbi.nlm.nih.gov/pubmed/33660395$$D View this record in MEDLINE/PubMed
BookMark eNp1kM9LwzAYhoNM3KYe_AdkF0EP3b40Tdsc53A6GOyi55A0CUTSZiYtsv_e7tdF9BT48rwPvO8YDRrfaITuMEwxQDqT1pspLlK4QCNcFmlSQokHaASM4iTPCBmicYyfAJhAVl6hISF5DoTREXqYN8LtWlsJN1G61aG2jWitb-LEm4nrWu2dbW7QpREu6tvTe40-li_vi7dkvXldLebrpCI5QJJJSWSWKtXbM6MACoyVZILlElNVFYzS_p9WZX8XtMwoLkHSwigjlUxZTq7R49G7Df6r07HltY2Vdk402neRpxkr-sYYsx69P6GdrLXi22BrEXb8XK0HZkegCj7GoA2vbHuo1gZhHcfA9-Px_Xh8P16fePqVOEv_Yk_2b-v07n-QP682y0PiB5x6fIU
CitedBy_id crossref_primary_10_1016_j_jep_2023_116630
crossref_primary_10_1007_s13346_023_01418_4
crossref_primary_10_1016_j_jep_2022_115695
crossref_primary_10_1016_j_intimp_2024_112587
crossref_primary_10_1016_j_prmcm_2024_100401
crossref_primary_10_3390_ijms242115995
crossref_primary_10_1016_j_ijbiomac_2023_125926
crossref_primary_10_1039_D2AN00345G
crossref_primary_10_3389_fphar_2022_816025
crossref_primary_10_1016_j_bse_2023_104646
crossref_primary_10_1016_j_psep_2025_107046
crossref_primary_10_3390_ijms24087247
crossref_primary_10_1097_MD_0000000000037089
crossref_primary_10_1016_j_biopha_2024_116909
crossref_primary_10_1186_s13020_023_00764_2
crossref_primary_10_1002_biof_1729
crossref_primary_10_1007_s13738_024_03122_7
crossref_primary_10_3892_ol_2023_13913
crossref_primary_10_1080_1028415X_2023_2180866
crossref_primary_10_1186_s12906_022_03652_8
Cites_doi 10.1155/2015/682365
10.1080/10942912.2014.978010
10.3390/molecules21111609
10.1016/j.snb.2014.09.011
10.13005/ojc/340605
10.1016/j.electacta.2010.11.037
10.1016/j.cbi.2020.109211
10.1007/s13197-017-2653-1
10.1016/j.electacta.2017.12.004
10.1016/j.saa.2019.117542
10.1016/j.jpba.2015.01.007
10.1155/2019/6518528
10.1002/pca.2598
10.1556/1006.2016.29.4.3
10.1016/j.jpba.2015.07.015
10.1016/j.chroma.2019.460434
10.1039/C4AY02531H
10.1016/j.jelechem.2019.113378
10.1002/elan.201900066
10.1080/00032719.2014.971364
10.1016/0955-2863(95)00168-9
10.1007/s12161-019-01433-7
10.1016/j.talanta.2019.06.022
10.1016/j.apt.2016.02.016
10.1016/j.jelechem.2015.07.014
10.1248/cpb.55.1065
10.1016/j.talanta.2018.10.061
10.1007/s00604-015-1575-8
10.1093/chromsci/bmv239
10.1002/pca.2621
10.1002/biof.1633
10.5740/jaoacint.17-0469
10.1016/j.phrs.2020.104939
10.1016/j.jchromb.2017.01.020
10.1093/chromsci/bmw099
10.1016/j.talanta.2019.120373
10.1007/s00216-018-1529-1
10.1039/C9RA06265C
10.1016/j.jelechem.2018.07.049
10.20964/110378
10.1007/s12161-017-0904-4
10.1016/j.abb.2006.09.003
10.1155/2020/8271203
10.1016/j.jchromb.2017.05.021
10.1016/S1452-3981(23)06558-6
10.1016/j.snb.2018.11.010
10.1016/j.jelechem.2019.04.074
10.1055/s-2006-957969
10.1002/elps.201600118
10.1201/9781439823057
10.1016/j.jelechem.2016.08.037
10.1016/j.foodchem.2016.02.086
10.1016/S0162-0134(02)00511-1
10.1016/j.talanta.2016.05.071
10.1155/2020/9353975
10.1002/elan.201700403
10.1016/j.chroma.2006.01.019
10.1080/10739149.2015.1038560
10.1016/j.jelechem.2018.04.009
10.1039/C5RA12865J
10.1016/j.snb.2013.11.023
10.1002/bmc.3970
10.1016/j.jpba.2019.05.019
10.1016/j.talanta.2020.121710
10.1016/j.jchromb.2015.06.002
10.1039/C9RA07482A
10.3390/biom9080367
10.1007/s13765-017-0260-5
10.1016/j.foodres.2017.03.018
10.1016/j.microc.2014.03.004
10.1016/0006-2952(92)90489-6
10.1016/j.bjp.2018.09.006
10.1016/j.talanta.2020.120843
10.1039/C6AY01752E
10.1155/2015/130873
10.1016/j.snb.2014.07.005
10.1155/2015/980890
10.1016/j.trac.2020.116065
10.1039/C4AY01477D
10.1556/1006.2018.31.3.2
10.1039/C9NJ05241K
10.1016/j.talanta.2016.01.041
10.1016/j.jpha.2017.06.005
10.1016/j.jchromb.2017.03.035
10.3390/molecules22081267
10.1155/2020/3950609
10.1016/j.microc.2018.12.006
10.1002/jssc.201500913
10.1039/C7AY02721D
10.3390/chemosensors5030023
10.1016/j.talanta.2020.120891
10.1039/C5AY00291E
10.1016/j.microc.2018.04.014
10.1016/j.microc.2020.105442
10.1155/2017/8370584
10.1016/j.chroma.2015.11.077
10.1093/chromsci/bmv171
10.4028/www.scientific.net/AMR.941-944.994
10.1016/j.bioelechem.2013.01.002
10.1016/j.jelechem.2015.11.005
10.1016/j.chroma.2010.12.068
10.2174/138955709787001712
10.1016/j.trac.2013.02.008
10.1016/j.jpba.2017.07.038
10.1016/S0024-3205(99)00120-4
10.1556/1006.2018.31.6.3
10.3390/molecules25020409
10.1007/s10337-016-3147-4
ContentType Journal Article
Copyright 2021 International Union of Biochemistry and Molecular Biology
2021 International Union of Biochemistry and Molecular Biology.
Copyright_xml – notice: 2021 International Union of Biochemistry and Molecular Biology
– notice: 2021 International Union of Biochemistry and Molecular Biology.
DBID AAYXX
CITATION
NPM
7X8
DOI 10.1002/biof.1720
DatabaseName CrossRef
PubMed
MEDLINE - Academic
DatabaseTitle CrossRef
PubMed
MEDLINE - Academic
DatabaseTitleList MEDLINE - Academic
CrossRef

PubMed
Database_xml – sequence: 1
  dbid: NPM
  name: PubMed
  url: https://proxy.k.utb.cz/login?url=http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?db=PubMed
  sourceTypes: Index Database
DeliveryMethod fulltext_linktorsrc
Discipline Anatomy & Physiology
Chemistry
EISSN 1872-8081
EndPage 164
ExternalDocumentID 33660395
10_1002_biof_1720
BIOF1720
Genre reviewArticle
Journal Article
Review
GrantInformation_xml – fundername: Universidad Nacional de jujuy
– fundername: Secretaría de Ciencia y Técnica (SECyT)
  funderid: PPI 2020, Res.083/20
– fundername: Agencia Nacional de Promoción Científica y Tecnológica FONCYT
  funderid: 00975‐2018
– fundername: Secretaría de Ciencia y Técnica (SECyT)
  grantid: PPI 2020, Res.083/20
– fundername: Agencia Nacional de Promoción Científica y Tecnológica FONCYT
  grantid: 00975-2018
GroupedDBID ---
-~X
.GJ
05W
0R~
10A
1OC
23N
31~
33P
36B
3SF
4.4
4P2
52S
52U
52V
53G
5GY
5RE
8-1
A00
A8Z
AAESR
AAEVG
AAFNC
AAHBH
AAHHS
AAHQN
AAIPD
AAMNL
AANHP
AANLZ
AAONW
AASGY
AAXRX
AAYCA
AAZKR
ABCUV
ABDBF
ABQWH
ABUBZ
ABXGK
ACAHQ
ACBWZ
ACCFJ
ACCZN
ACGFS
ACGOF
ACMXC
ACPOU
ACPQW
ACRPL
ACUHS
ACXBN
ACXQS
ACYXJ
ADBBV
ADBTR
ADEOM
ADIZJ
ADKYN
ADMGS
ADNMO
ADOZA
ADXAS
ADZMN
ADZMO
ADZOD
AEEZP
AEIGN
AEIMD
AENEX
AEQDE
AEUYR
AFBPY
AFFPM
AFGKR
AFPWT
AFRHK
AFWVQ
AFZJQ
AHBTC
AIACR
AITYG
AIURR
AIWBW
AJBDE
ALMA_UNASSIGNED_HOLDINGS
ALUQN
ALVPJ
AMBMR
AMYDB
ASPBG
ATUGU
AVWKF
AZFZN
AZVAB
BDRZF
BFHJK
BHBCM
BMXJE
BNHUX
BOGZA
BRXPI
C45
CAG
COF
DCZOG
DRFUL
DRMAN
DRSTM
DU5
EAD
EAP
EAS
EBD
EBS
EDH
EJD
EMB
EMK
EMOBN
ESX
F5P
FEDTE
FUBAC
G-S
GODZA
HGLYW
HVGLF
HZ~
IOS
KBYEO
LATKE
LEEKS
LH4
LITHE
LOXES
LUTES
LW6
LYRES
MET
MEWTI
MIO
MRFUL
MRMAN
MRSTM
MSFUL
MSMAN
MSSTM
MXFUL
MXMAN
MXSTM
MY~
O66
O9-
OIG
OVD
P2P
P2W
P4E
QB0
ROL
SUPJJ
SV3
TEORI
TUS
WBKPD
WIH
WIJ
WIK
WNSPC
WOHZO
WXSBR
WYISQ
WYJ
XG1
XV2
Y6R
ZZTAW
AAYXX
AEYWJ
AGHNM
AGQPQ
AGYGG
CITATION
AAMMB
AEFGJ
AGXDD
AIDQK
AIDYY
NPM
7X8
ID FETCH-LOGICAL-c3600-4bb3b42dd6604fd00711db9a96b15dc79553b45c8711a5845180b57fdfbdb2963
ISSN 0951-6433
1872-8081
IngestDate Fri Jul 11 03:17:48 EDT 2025
Mon Jul 21 05:38:53 EDT 2025
Tue Jul 01 01:27:06 EDT 2025
Thu Apr 24 23:07:11 EDT 2025
Wed Jan 22 16:30:44 EST 2025
IsDoiOpenAccess false
IsOpenAccess true
IsPeerReviewed true
IsScholarly true
Issue 2
Keywords luteolin
antioxidant
electroanalytical chemistry
flavonoid
chromatography
Language English
License 2021 International Union of Biochemistry and Molecular Biology.
LinkModel OpenURL
MergedId FETCHMERGED-LOGICAL-c3600-4bb3b42dd6604fd00711db9a96b15dc79553b45c8711a5845180b57fdfbdb2963
Notes Funding information
Agencia Nacional de Promoción Científica y Tecnológica FONCYT, Grant/Award Number: 00975‐2018; Secretaría de Ciencia y Técnica (SECyT), Grant/Award Number: PPI 2020, Res.083/20; Universidad Nacional de jujuy
ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
ObjectType-Review-3
content type line 23
ORCID 0000-0001-9004-5947
OpenAccessLink https://onlinelibrary.wiley.com/doi/pdfdirect/10.1002/biof.1720
PMID 33660395
PQID 2497100119
PQPubID 23479
PageCount 24
ParticipantIDs proquest_miscellaneous_2497100119
pubmed_primary_33660395
crossref_citationtrail_10_1002_biof_1720
crossref_primary_10_1002_biof_1720
wiley_primary_10_1002_biof_1720_BIOF1720
ProviderPackageCode CITATION
AAYXX
PublicationCentury 2000
PublicationDate March/April 2021
2021-03-00
2021-Mar
20210301
PublicationDateYYYYMMDD 2021-03-01
PublicationDate_xml – month: 03
  year: 2021
  text: March/April 2021
PublicationDecade 2020
PublicationPlace Hoboken, USA
PublicationPlace_xml – name: Hoboken, USA
– name: Netherlands
PublicationTitle BioFactors (Oxford)
PublicationTitleAlternate Biofactors
PublicationYear 2021
Publisher John Wiley & Sons, Inc
Publisher_xml – name: John Wiley & Sons, Inc
References 2019; 2019
2019; 849
2019; 12
2019; 204
2019; 842
2011; 56
2020; 10
2019; 281
2016; 37
2016; 780
2020; 208
2020; 328
2006; 455
2020; 215
1124; 273
1996; 62
2019; 29
2002; 92
2020; 213
2016; 158
2018; 34
1992; 43
2018; 31
2016; 152
2019; 9
2017; 60
2016; 19
2019; 31
2013; 91
2019; 102
2016; 204
2017; 258
2016; 11
2014; 941
2020; 2020
2015; 115
2015; 754
2017; 54
2020; 159
2015; 2015
2016; 21
2020; 25
2015; 759
2020; 1609
2016; 1430
2020; 158
2015; 997
2016; 29
2019; 173
2016; 27
2018; 10
2016; 8
2017; 5
2017; 7
2015; 182
2015; 38
2017; 1060
2020; 56
2015; 107
2016; 79
2017; 31
2015; 48
2001
2015; 43
2018; 817
2020; 46
2020; 133
2020; 44
2006; 1112
2019; 194
2014; 203
1996; 7
2015; 17
2013; 47
2015; 5
2018; 140
2021; 223
2017; 2017
2017; 22
2018; 147
2017; 1046
2015; 10
2016; 54
1999; 65
2020; 227
2017; 29
2018; 824
2014; 192
2015; 206
2007; 55
2015; 7
2014; 115
2019; 145
2017; 97
2017; 1053
2017; 10
2009; 9
2019; 411
2011; 1218
2015
2018; 56
e_1_2_9_75_1
e_1_2_9_98_1
e_1_2_9_52_1
e_1_2_9_79_1
e_1_2_9_10_1
e_1_2_9_56_1
e_1_2_9_33_1
e_1_2_9_90_1
e_1_2_9_103_1
e_1_2_9_107_1
Zhang X (e_1_2_9_54_1) 2018; 56
e_1_2_9_37_1
e_1_2_9_18_1
e_1_2_9_41_1
e_1_2_9_64_1
e_1_2_9_87_1
e_1_2_9_22_1
e_1_2_9_45_1
e_1_2_9_68_1
e_1_2_9_83_1
e_1_2_9_6_1
Wang Y (e_1_2_9_80_1) 2015; 2015
e_1_2_9_2_1
e_1_2_9_111_1
e_1_2_9_115_1
e_1_2_9_26_1
e_1_2_9_49_1
e_1_2_9_30_1
e_1_2_9_53_1
e_1_2_9_99_1
e_1_2_9_72_1
e_1_2_9_34_1
e_1_2_9_57_1
e_1_2_9_95_1
e_1_2_9_91_1
e_1_2_9_102_1
e_1_2_9_106_1
e_1_2_9_15_1
e_1_2_9_38_1
Dramou P (e_1_2_9_60_1); 273
e_1_2_9_19_1
e_1_2_9_42_1
e_1_2_9_88_1
e_1_2_9_61_1
e_1_2_9_46_1
e_1_2_9_84_1
e_1_2_9_23_1
e_1_2_9_65_1
e_1_2_9_5_1
Tesio AY (e_1_2_9_27_1) 2015
e_1_2_9_114_1
Fu L (e_1_2_9_94_1) 2015; 10
e_1_2_9_118_1
e_1_2_9_9_1
Tian S (e_1_2_9_62_1) 2015; 17
Kempuraj D (e_1_2_9_11_1) 2020; 46
e_1_2_9_69_1
e_1_2_9_110_1
e_1_2_9_31_1
e_1_2_9_50_1
e_1_2_9_73_1
e_1_2_9_35_1
e_1_2_9_77_1
e_1_2_9_96_1
e_1_2_9_12_1
e_1_2_9_92_1
e_1_2_9_109_1
e_1_2_9_101_1
e_1_2_9_105_1
e_1_2_9_39_1
e_1_2_9_16_1
Wang Y (e_1_2_9_81_1) 2020; 2020
Shen J (e_1_2_9_71_1) 2019; 2019
e_1_2_9_20_1
e_1_2_9_89_1
e_1_2_9_24_1
e_1_2_9_43_1
e_1_2_9_66_1
e_1_2_9_85_1
e_1_2_9_8_1
e_1_2_9_4_1
e_1_2_9_113_1
e_1_2_9_117_1
e_1_2_9_28_1
e_1_2_9_47_1
Solnier J (e_1_2_9_14_1)
e_1_2_9_74_1
e_1_2_9_51_1
e_1_2_9_78_1
e_1_2_9_13_1
e_1_2_9_32_1
e_1_2_9_55_1
e_1_2_9_97_1
e_1_2_9_93_1
e_1_2_9_108_1
e_1_2_9_70_1
Dong X (e_1_2_9_58_1) 2017; 2017
e_1_2_9_100_1
e_1_2_9_104_1
e_1_2_9_17_1
e_1_2_9_36_1
e_1_2_9_59_1
e_1_2_9_63_1
e_1_2_9_40_1
e_1_2_9_21_1
e_1_2_9_67_1
e_1_2_9_44_1
e_1_2_9_86_1
e_1_2_9_7_1
e_1_2_9_82_1
e_1_2_9_3_1
Silva Silveira R (e_1_2_9_76_1) 2020; 56
e_1_2_9_112_1
e_1_2_9_116_1
e_1_2_9_25_1
e_1_2_9_48_1
e_1_2_9_29_1
References_xml – volume: 10
  start-page: 3434
  year: 2017
  article-title: SPE‐UHPLC‐DAD method for the simultaneous determination of three flavonoids in grape juice by using Bis(tetraoxacalix[2]arene[2]triazine)‐modified silica as sorbent
  publication-title: Food Anal Methods
– volume: 2020
  start-page: 1
  year: 2020
  article-title: Phytochemical Study and Antibacterial and Antibiotic Modulation Activity of (Pomegranate) Leaves
  publication-title: Scientifica
– volume: 152
  start-page: 15
  year: 2016
  article-title: Isocratic LC–DAD–FLD method for the determination of flavonoids in paprika samples by using a rapid resolution column and post‐column pH change
  publication-title: Talanta
– volume: 7
  start-page: 894
  year: 2015
  article-title: Electrochemical determination of luteolin in chrysanthemum using multi‐walled carbon nanotubes–ionic liquid composite electrode
  publication-title: Anal Methods
– volume: 31
  start-page: 437
  year: 2018
  article-title: Development and validation of a novel high‐performance thin‐layer chromatography method for the simultaneous determination of apigenin and luteolin in Hygrophila spinosa T
  publication-title: Anders J Planar Chromat
– volume: 997
  start-page: 122
  year: 2015
  article-title: LC–MS/MS method for the simultaneous quantification of 11 compounds of extract in lysates of mesangial cell cultured by high glucose
  publication-title: J Chromatogr B
– volume: 11
  start-page: 3776
  year: 2016
  article-title: Application of poly(3,4‐thylenedioxythiophene)/manganese dioxide composite‐modified electrode for sensitive electrochemical detection of luteolin
  publication-title: Int J Electrochem Sci
– volume: 102
  start-page: 75
  issue: 1
  year: 2019
  article-title: Simultaneous determination of 15 flavonoids in Scutellaria barbata–Hedyotis diffusa Herb Pair by HPLC Q‐TOF MS
  publication-title: J AOAC Int
– volume: 2020
  start-page: 1
  year: 2020
  article-title: Pharmacokinetic comparisons of different combinations of Yigan Jiangzhi formula in rrats: simultaneous determination of fourteen components by UPLC‐MS/MS
  publication-title: J Anal Methods Chem
– volume: 411
  start-page: 1029
  issue: 5
  year: 2019
  article-title: Microwave irradiation followed by zinc oxide based dispersive solid‐phase extraction coupled with HPLC for simultaneous extraction and determination of flavonoids in Veronicastrum latifolium (Hemsl.) Yamazaki
  publication-title: Anal Bioanal
– volume: 48
  start-page: 1089
  year: 2015
  article-title: Determination of the pharmaceutically active components in peanut shells by micellar electrokinetic capillary chromatography
  publication-title: Anal Lett
– volume: 759
  start-page: 137
  year: 2015
  article-title: Electrochemical sensor for facile detection of trace luteolin based on thio‐β‐cyclodextrin functionalized graphene/gold nanoparticles hybrids
  publication-title: J Electroanal Chem
– volume: 29
  start-page: 17
  year: 2019
  article-title: Simultaneous quantification of six flavonoids in four Scutellaria taxa by HPLC‐DAD method
  publication-title: Rev Bras Farmacogn
– volume: 17
  start-page: 157
  year: 2015
  article-title: Development and validation of an high‐performance liquid chromatography‐diode array detector method for the simultaneous determination of six phenolic compounds in abnormal savda munziq decoction
  publication-title: Pharmacogn Mag
– volume: 1112
  start-page: 31
  year: 2006
  article-title: Analytical separation and detection methods for flavonoids
  publication-title: J Chromatogr A
– volume: 194
  start-page: 771
  year: 2019
  article-title: Fabrication of N,N‐dimethyldodecylamine functionalized magnetic adsorbent for efficient enrichment of flavonoids
  publication-title: Talanta
– volume: 79
  start-page: 1351
  year: 2016
  article-title: Development and validation of a green capillary electrophoretic method for determination of polyphenolic compounds in red wine samples
  publication-title: Chromatographia
– volume: 9
  start-page: 33607
  year: 2019
  article-title: Platinum nanoparticles decorating a biomass porous carbon nanocomposite‐modified electrode for the electrocatalytic sensing of luteolin and application
  publication-title: RSC Adv
– volume: 29
  start-page: 256
  issue: 4
  year: 2016
  article-title: Thin‐layer chromatography and chemometric analysis in the fingerprinting of selected Scutellaria species
  publication-title: J Planar Chromat
– volume: 31
  year: 2017
  article-title: LC‐MS/MS method for simultaneous determination of flavonoids and physalins in rat plasma: application to pharmacokinetic study after oral administration of var. franchetii (Chinese lantern) extract
  publication-title: Biomed Chromatogr
– volume: 54
  start-page: 1540
  year: 2016
  article-title: Simultaneous determination of 18 chemical constituents in traditional chinese medicine of antitussive by UPLC–MS‐MS
  publication-title: J Chromatogr Sci
– volume: 227
  start-page: 117542
  year: 2020
  article-title: Determination of cis‐diol‐containing flavonoids in real samples using boronate affinity quantum dots coated with imprinted silica based on controllable oriented surface imprinting approach
  publication-title: Spectrochim Acta A Mol Biomol Spectrosc
– volume: 27
  start-page: 222
  year: 2016
  article-title: Direct coupling of HPTLC with MALDI‐TOF MS for qualitative detection of flavonoids on phytochemical fingerprints
  publication-title: Phytochem Anal
– volume: 2019
  start-page: 1
  year: 2019
  article-title: Development of a HPLC‐MS/MS method to determine the 13 elements of semen cuscutae and application to a pharmacokinetic study in rats
  publication-title: Evid Based Complement Alternat Med
– volume: 281
  start-page: 730
  year: 2019
  article-title: An ultrasensitive luteolin sensor based on MOFs derived CuCo coated nitrogen‐doped porous carbon polyhedron
  publication-title: Sens Actuators B‐Chem
– volume: 204
  start-page: 700
  year: 2019
  article-title: Analytical chemistry assisted by multi‐way calibration: a contribution to green chemistry
  publication-title: Talanta
– volume: 62
  start-page: 554
  year: 1996
  article-title: Different mechanisms involved in the vasorelaxant effect of flavonoids isolated from satureja obovate
  publication-title: Planta Med
– volume: 203
  start-page: 655
  year: 2014
  article-title: Simultaneous electroanalytical determination of luteolin and rutinusing artificial neural networks
  publication-title: Sens Actuators B
– volume: 65
  start-page: 337
  year: 1999
  article-title: Flavonoids: old and new aspects of a class of natural therapeutic drugs
  publication-title: Life Sci
– volume: 208
  year: 2020
  article-title: Carboxyl hydrogel particle film as a local pH buffer for voltametric determination of luteolin and baicalein
  publication-title: Talanta
– volume: 203
  start-page: 655
  year: 2014
  article-title: Simultaneous electroanalytical determination of luteolin and rutin using artificial neural networks
  publication-title: Sens Actuat B‐Chem.
– volume: 37
  start-page: 2478
  year: 2016
  article-title: Metal‐organic framework MIL‐101 as sorbent based on double‐pumps controlled on‐line solid‐phase extraction coupled with high‐performance liquid chromatography for the determination of flavonoids in environmental water samples
  publication-title: Electrophoresis
– volume: 60
  start-page: 155
  year: 2017
  article-title: Determination of flavonoids from var. japonica seeds and their inhibitory effect on aldose reductase
  publication-title: Appl Biol Chem
– volume: 27
  start-page: 50
  year: 2016
  article-title: Simultaneous detection of flavonoids, phenolic acids and alkaloids in abri herba and abri mollis herba using liquid chromatography tandem mass spectrometry
  publication-title: Phytochem Anal
– volume: 145
  start-page: 899
  year: 2019
  article-title: A sensitive and selective electrochemical sensor based on graphene quantum dots/gold nanoparticles nanocomposite modified electrode for the determination of luteolin in peanut hulls
  publication-title: Microchem J
– volume: 824
  start-page: 153
  year: 2018
  article-title: High‐performance electrocatalyst based on metal‐organic framework/macroporous carbon composite for efficient detection of luteolin
  publication-title: J Electroanal Chem
– volume: 25
  start-page: 409
  year: 2020
  article-title: Antioxidant and compositional HPLC analysis of three common bamboo leaves
  publication-title: Molecules
– volume: 7
  start-page: 3855
  year: 2015
  article-title: The synthesis of novel Mn‐doped CdTe fluorescence probes and their application in the determination of luteolin
  publication-title: Anal Methods
– volume: 206
  start-page: 744
  year: 2015
  article-title: Novel sensor for sensitive electrochemical determination of luteolin based on In2O3 nanoparticles modified glassy carbon paste electrode
  publication-title: Sensor Actuat B‐Chem
– volume: 1060
  start-page: 173
  year: 2017
  article-title: Development of an ultra‐fast liquid chromatography–tandem mass spectrometry method for simultaneous determination of seven flavonoids in rat plasma: Application to a comparative harmacokinetic investigation of extract and single pure ginkgo flavonoids after oral administration
  publication-title: J Chromatogr B
– volume: 12
  start-page: 1133
  year: 2019
  article-title: Micro‐scaled quantitative method to analyze olive oil polyphenols
  publication-title: Food Anal Methods
– volume: 115
  start-page: 100
  year: 2014
  article-title: Development of an electrochemical sensor for the determination of the flavonoid luteolin in peanut hull samples
  publication-title: Microchem J
– volume: 5
  start-page: 23
  year: 2017
  article-title: Electrochemical biosensors for the determination of toxic substances related to food safety developed in South America: mycotoxins and herbicides
  publication-title: Chemosensors
– volume: 9
  start-page: 31
  year: 2009
  article-title: Distribution and biological activities of the flavonoid luteolin
  publication-title: Mini‐Rev Med Chem
– volume: 8
  start-page: 6347
  year: 2016
  article-title: Ultrasensitive‐electrochemical sensor for the detection of luteolin in chrysanthemums and peanut shells using an Au/Pd/reduced graphene oxide nanofilm
  publication-title: Anal Methods
– volume: 5
  start-page: 60775
  year: 2015
  article-title: Simultaneous determination of two flavonoids based on disulfide linked b‐cyclodextrin dimer and Pd cluster functionalized graphene‐modified electrode
  publication-title: RSC Adv
– volume: 1046
  start-page: 1
  year: 2017
  article-title: A UHPLC–MS/MS method for simultaneous determination of twelve constituents from Erigeron breviscapus extract in rat plasma: application to a pharmacokinetic study
  publication-title: J Chromatogr B
– volume: 159
  year: 2020
  article-title: Screen‐printed electrochemical‐based sensor for taxifolin determination in edible peanut oils
  publication-title: Microchem J
– volume: 2017
  start-page: 1
  year: 2017
  article-title: Simultaneous determination and pharmacokinetic study of quercetin, luteolin, and apigenin in rat plasma after oral administration of L extract by HPLC‐UV
  publication-title: Evid‐Based Compl Alt
– volume: 43
  start-page: 611
  issue: 6
  year: 2015
  article-title: Determination of luteolin and apigenin in herbs by capillary electrophoresis with diode array detection
  publication-title: Instrum Sci Technol
– volume: 1053
  start-page: 1
  year: 2017
  article-title: Flavone polyphenols dominate in Thymus schimperi Ronniger: LC–ESI–MS/MS characterization and study of anti‐proliferative effects of plant extract on AGS and HepG2 cancer cells
  publication-title: J Chromatogr B
– volume: 817
  start-page: 128
  year: 2018
  article-title: Square wave voltammetric quantitative determination of flavonoid luteolin in peanut hulls and Perilla based on Au NPs loaded boron nitride nanosheets
  publication-title: J Electroanal Chem
– volume: 204
  start-page: 334
  year: 2016
  article-title: Simultaneous determination of phenolic compounds in sesame oil using LC–MS/MS combined with magnetic carboxylated multi‐walled carbon nanotubes
  publication-title: Food Chem
– volume: 7
  start-page: 66
  year: 1996
  article-title: Flavonoids: chemistry, metabolism, cardioprotective effects, and dietary sources
  publication-title: J Nutr Biochem
– volume: 115
  start-page: 214
  year: 2015
  article-title: Simultaneous determination of thirteen flavonoids fromXiaobuxin‐Tang extract using high‐performance liquidchromatography coupled with electrospray ionization massspectrometry
  publication-title: J Pharm Biomed
– volume: 46
  start-page: 1
  year: 2020
  article-title: Neuroprotective effects of flavone luteolin in neuroinflammation and neurotrauma
  publication-title: Biofactors
– volume: 273
  start-page: 283
  year: 1124
  article-title: Preparation of novel molecularly imprinted magnetic graphene oxide and their application for quercetin determination
  publication-title: J Chromatogr B 2019
– article-title: Flavonoids: a complementary approach to conventional therapy of COVID‐19?
  publication-title: Phytochem Rev
– volume: 1430
  start-page: 16
  year: 2016
  article-title: Recent advances and trends in the liquid‐chromatography–mass spectrometry analysis of flavonoids
  publication-title: J Chromatogr A
– volume: 147
  start-page: 211
  year: 2018
  article-title: Recent advances on HPLC/MS in medicinal plant analysis—An update covering 2011–2016
  publication-title: J Pharmaceut Biomed
– volume: 223
  start-page: 121710
  year: 2021
  article-title: Novel trends and applications of multidimensional chromatography in the analysis of food, cosmetics and medicine bearing essential oils
  publication-title: Talanta
– volume: 34
  start-page: 2721
  year: 2018
  article-title: HPLC method of analysis for determination and standardization of luteolin and vanillic acid in dry extract of paronychia argentea Lam
  publication-title: Orient J Chem
– volume: 182
  start-page: 2299
  year: 2015
  article-title: A nanocomposite consisting of graphene oxide and Fe3O4 magnetic nanoparticles for the extraction of flavonoids from tea, wine and urine samples
  publication-title: Microchim Acta
– volume: 9
  start-page: 367
  year: 2019
  article-title: Ziziphora taurica subsp. taurica: analytical characterization and biological activities
  publication-title: Biomolecules
– volume: 258
  start-page: 1413
  year: 2017
  article-title: Electrochemical determination of luteolin using molecularly imprinted poly‐carbazole on MoS2/graphene‐carbon nanotubes nanocomposite modified electrode
  publication-title: Electrochim Acta
– year: 2001
– volume: 158
  year: 2020
  article-title: Review on the potential action mechanisms of Chinese medicines in treating Coronavirus Disease 2019 (COVID‐19)
  publication-title: Pharmacol Res
– volume: 91
  start-page: 62
  year: 2013
  article-title: Electrochemical oxidation of butein at glassy carbon electrodes
  publication-title: Bioelectrochemistry
– volume: 2015
  start-page: 1
  year: 2015
  article-title: Simultaneous determination of rutin, luteolin, quercetin, and betulinic acid in the extract of disporopsis pernyi (Hua) Diels by UPLC
  publication-title: J Anal Methods Chem.
– volume: 2020
  start-page: 1
  year: 2020
  article-title: Simultaneous determination of 5 components in the leaves of by quantitative analysis of multicomponents by single marker (QAMS) based on UPLC and HPLC
  publication-title: J Anal Methods Chem
– volume: 158
  start-page: 306
  year: 2016
  article-title: Square wave voltammetry with multivariate calibration tools for determination of eugenol, carvacrol and thymol in honey
  publication-title: Talanta
– volume: 47
  start-page: 47
  year: 2013
  article-title: Determination of flavonoids and their metabolites by chromatographic techniques
  publication-title: TRAC
– volume: 56
  start-page: 582
  issue: 7
  year: 2018
  article-title: Quantitative study of main compounds in Linn. by UHPLC–Q‐TOF‐MS‐MS and HPLC–ESI‐MS‐MS
  publication-title: J Chromatogr Sci
– volume: 19
  start-page: 494
  year: 2016
  article-title: Multiclass determination of phenolic compounds in different varieties of tomato and lettuce by ultra high performance liquid chromatography coupled to tandem mass spectrometry
  publication-title: Int J Food Prop
– volume: 54
  start-page: 500
  year: 2016
  article-title: Simultaneous determination of five components in by ultra performance liquid chromatography–tandem mass spectrometry
  publication-title: J Chromatogr Sci
– volume: 780
  start-page: 46
  year: 2016
  article-title: Poly(crystal violet) ‐multi‐walled carbon nanotubes modified electrode for electroanalytical determination of luteolin
  publication-title: J Electroanal Chem
– volume: 56
  start-page: 2321
  year: 2011
  article-title: Characterization of the surface redox process of adsorbed morin at glassycarbon electrodes
  publication-title: Electrochim Acta
– volume: 43
  start-page: 1167
  year: 1992
  article-title: Effects of flavonoids on immune and inflammatory cell functions
  publication-title: Biochem Pharmacol
– volume: 107
  start-page: 304
  year: 2015
  article-title: Simultaneous quantification of 16 bioactive constituents in common cnidium fruit by liquid chromatography–electrospray ionization‐mass spectrometry
  publication-title: J Pharm Biomed.
– volume: 97
  start-page: 141
  year: 2017
  article-title: Determination of the phenolic content, profile, and antioxidant activity of seeds from nine tree peony (Paeonia section Moutan DC.) species native to China
  publication-title: Food Res Int
– volume: 215
  year: 2020
  article-title: NiO@Ni‐MOF nanoarrays modified Ti mesh as ultrasensitive electrochemical sensing platform for luteolin detection
  publication-title: Talanta
– volume: 7
  start-page: 349
  year: 2017
  article-title: Application of HPLC and ESI‐MS techniques in the analysis of phenolic acids and flavonoids from green leafy vegetables (GLVs)
  publication-title: J Pharm Anal
– volume: 31
  start-page: 1095
  year: 2019
  article-title: Simultaneous anodic adsorptive stripping voltammetric determination of luteolin and 3‐hydroxyflavone in biological fluids using renewable pencil graphite electrodes
  publication-title: Electroanalysis
– volume: 54
  start-page: 625
  issue: 4
  year: 2016
  article-title: Simultaneous determination of 11 components in yinzhihuang preparations and their constituent herbs by high‐performance liquid chromatography with diode array detector
  publication-title: J Chromatogr Sci
– volume: 842
  start-page: 184
  year: 2019
  article-title: A novel electrochemical sensor based on electropolymerized molecularly imprinted polymer for determination of luteolin
  publication-title: J Electroanal Chem
– volume: 46
  start-page: 306
  year: 2020
  article-title: COVID‐19, pulmonary mast cells, cytokine storms and beneficial actions of luteolin
  publication-title: BioFactors
– volume: 10
  start-page: 3518
  year: 2015
  article-title: Poly (diallyldimethylammonium chloride) functionalized reduced graphene oxide based electrochemical sensing platform for luteolin determination
  publication-title: Int J Electrochem Sci
– volume: 754
  start-page: 94
  year: 2015
  article-title: Electrochemical sensor based on Nbim/CNT composite for selective determination of luteolin in the flavonoid
  publication-title: J Electroanal Chem
– volume: 2015
  start-page: 1
  year: 2015
  article-title: Qualitative and quantitative analysis of L. by LC/MS
  publication-title: Sci World J
– volume: 140
  start-page: 74
  year: 2018
  article-title: Flavonoid determination in onion, chili and leek by hard cap espresso extraction and liquid chromatography with diode array detection
  publication-title: Microchem J
– volume: 92
  start-page: 105
  year: 2002
  article-title: Iron and copper chelation by flavonoids: an electrospray mass spectrometry study
  publication-title: J Inorg Biochem
– volume: 328
  year: 2020
  article-title: Roles of flavonoids against coronavirus infection
  publication-title: Chem Biol Interact
– volume: 56
  year: 2020
  article-title: Determination of phenolic and triterpenic compounds in L by Ultra‐high performance liquid chromatography‐tandem mass spectrometric (UHPLC‐MS/MS). Braz
  publication-title: J Pharm Sci
– volume: 1609
  year: 2020
  article-title: Table olive polyphenols: a simultaneous determination by liquid chromatography–mass spectrometry
  publication-title: J Chromatogr A
– volume: 22
  start-page: 1267
  year: 2017
  article-title: Development of a UPLC‐MS/MS method for simultaneous determination of six flavonoids in rat plasma after administration of maydis stigma extract and its application to a comparative pharmacokinetic study in normal and diabetic rats
  publication-title: Molecules
– volume: 31
  start-page: 190
  issue: 3
  year: 2018
  article-title: Determining the contents of rupestonic acid, vitexicarpin, apigenin, and luteolin in L. in different growth stages by thin‐layer chromatographic scanning
  publication-title: J Planar Chromat
– volume: 1218
  start-page: 2676
  issue: 19
  year: 2011
  article-title: Thin‐layer chromatography with biological detection in phytochemistry
  publication-title: J Chromatogr A
– volume: 7
  start-page: 1425
  year: 2015
  article-title: Simultaneous determination of twenty‐six components of Flos Lonicerae Japonicae ‐ Fructus Forsythiae herb couple using UPLC‐ESI‐MS/MS, application to its preparations
  publication-title: Anal Methods
– volume: 38
  start-page: 4111
  year: 2015
  article-title: Solid‐phase extraction using bis(indolyl)methane‐modified silica reinforced with multiwalled carbon nanotubes for the simultaneous determination of flavonoids and aromatic organic acid preservatives
  publication-title: J Sep Sci
– volume: 849
  start-page: 113378
  year: 2019
  article-title: Fumarate‐based metal‐organic framework/mesoporous carbon as a novel electrochemical sensor for the detection of gallic acid and luteolin
  publication-title: J Electroanal Chem
– volume: 10
  start-page: 4579
  year: 2020
  article-title: Simultaneous quantification of five biomarkers in ethanolic extract of Linn. Stem using liquid chromatography tandem mass spectrometry: application to its pharmacokinetic studies
  publication-title: RSC Adv
– volume: 54
  start-page: 2135
  year: 2017
  article-title: Determination of anthocyanins and non‐anthocyanin polyphenols by ultra performance liquid chromatography/electrospray ionization mass spectrometry (UPLC/ESI–MS) in jussara (Euterpe edulis) extracts
  publication-title: J Food Sci Technol
– volume: 455
  start-page: 197
  year: 2006
  article-title: Bioavailable flavonoids to suppress the formation of 8‐OHdG in HepG2 cells
  publication-title: Arch Biochem Biophys
– volume: 44
  start-page: 1953
  year: 2020
  article-title: Electrochemical sensor for sensitive detection of luteolin based on multi‐walled carbon nanotubes/poly (3,4‐ethylenedioxythiophene)‐gold nanocomposites
  publication-title: New J Chem
– volume: 213
  year: 2020
  article-title: Fabrication of core‐shell magnetic covalent organic frameworks composites and their application for highly sensitive detection of luteolin
  publication-title: Talanta
– volume: 29
  start-page: 1
  year: 2017
  article-title: Determination of quercetin and luteolin in paprika samples by voltammetry and partial least squares calibration
  publication-title: Electroanal
– volume: 133
  year: 2020
  article-title: Overview of the three multicriteria approaches applied to a global assessment of analytical methods
  publication-title: TRAC
– start-page: 73
  year: 2015
– volume: 27
  start-page: 921
  year: 2016
  article-title: Alkaline phosphatase mediated synthesis of carbon nanotube–hydroxyapatite nanocomposite and its application for electrochemical determination of luteolin
  publication-title: Adv Powder Technol
– volume: 10
  start-page: 1640
  year: 2018
  article-title: Discrimination of cultivars and determination of Luteolin content of Ramat. using multispectral imaging system
  publication-title: Anal Methods
– volume: 173
  start-page: 120
  year: 2019
  article-title: Simultaneous determination of several flavonoids and phenolic compounds in nineteen different Cephalaria species by HPLC‐MS/MS
  publication-title: J Pharmaceut Biomed
– year: 2015
  article-title: Validated HPTLC method for quantification of luteolin and apigenin in premna mucronata Roxb., Verbenaceae
  publication-title: Adv Pharm Sci
– volume: 21
  start-page: 1609
  year: 2016
  article-title: Simultaneous ultra performance liquid chromatography determination and antioxidant activity of linarin, luteolin, chlorogenic acid and apigenin in different parts of compositae species
  publication-title: Molecules
– volume: 55
  start-page: 1065
  year: 2007
  article-title: A new chromone, 11‐hydroxy‐sec‐O‐glucosylhamaudol from Ostericum koreanum
  publication-title: Chem Pharm Bull
– volume: 192
  start-page: 467
  year: 2014
  article-title: Electrochemical ultra‐micro sensors for the determination of synthetic and natural antioxidants in edible vegetable oils
  publication-title: Sen Actuat B‐Chem
– volume: 941
  start-page: 994
  year: 2014
  article-title: Determination of luteolin by fluorescence spectrometry
  publication-title: Adv Mater Res
– ident: e_1_2_9_29_1
  doi: 10.1155/2015/682365
– ident: e_1_2_9_77_1
  doi: 10.1080/10942912.2014.978010
– ident: e_1_2_9_79_1
  doi: 10.3390/molecules21111609
– ident: e_1_2_9_95_1
  doi: 10.1016/j.snb.2014.09.011
– volume: 56
  start-page: 17262
  year: 2020
  ident: e_1_2_9_76_1
  article-title: Determination of phenolic and triterpenic compounds in Jatropha gossypiifolia L by Ultra‐high performance liquid chromatography‐tandem mass spectrometric (UHPLC‐MS/MS). Braz
  publication-title: J Pharm Sci
– ident: e_1_2_9_57_1
  doi: 10.13005/ojc/340605
– ident: e_1_2_9_23_1
  doi: 10.1016/j.electacta.2010.11.037
– ident: e_1_2_9_12_1
  doi: 10.1016/j.cbi.2020.109211
– ident: e_1_2_9_86_1
  doi: 10.1007/s13197-017-2653-1
– ident: e_1_2_9_102_1
  doi: 10.1016/j.electacta.2017.12.004
– ident: e_1_2_9_115_1
  doi: 10.1016/j.saa.2019.117542
– ident: e_1_2_9_70_1
  doi: 10.1016/j.jpba.2015.01.007
– volume: 2019
  start-page: 1
  year: 2019
  ident: e_1_2_9_71_1
  article-title: Development of a HPLC‐MS/MS method to determine the 13 elements of semen cuscutae and application to a pharmacokinetic study in rats
  publication-title: Evid Based Complement Alternat Med
  doi: 10.1155/2019/6518528
– ident: e_1_2_9_53_1
  doi: 10.1002/pca.2598
– ident: e_1_2_9_33_1
  doi: 10.1556/1006.2016.29.4.3
– ident: e_1_2_9_69_1
  doi: 10.1016/j.jpba.2015.07.015
– ident: e_1_2_9_41_1
  doi: 10.1016/j.chroma.2019.460434
– ident: e_1_2_9_98_1
  doi: 10.1039/C4AY02531H
– ident: e_1_2_9_105_1
  doi: 10.1016/j.jelechem.2019.113378
– ident: e_1_2_9_108_1
  doi: 10.1002/elan.201900066
– ident: e_1_2_9_116_1
  doi: 10.1080/00032719.2014.971364
– ident: e_1_2_9_7_1
  doi: 10.1016/0955-2863(95)00168-9
– ident: e_1_2_9_64_1
  doi: 10.1007/s12161-019-01433-7
– ident: e_1_2_9_18_1
  doi: 10.1016/j.talanta.2019.06.022
– ident: e_1_2_9_99_1
  doi: 10.1016/j.apt.2016.02.016
– ident: e_1_2_9_96_1
  doi: 10.1016/j.jelechem.2015.07.014
– ident: e_1_2_9_9_1
  doi: 10.1248/cpb.55.1065
– ident: e_1_2_9_67_1
  doi: 10.1016/j.talanta.2018.10.061
– ident: e_1_2_9_68_1
  doi: 10.1007/s00604-015-1575-8
– ident: e_1_2_9_51_1
  doi: 10.1093/chromsci/bmv239
– volume: 17
  start-page: 157
  year: 2015
  ident: e_1_2_9_62_1
  article-title: Development and validation of an high‐performance liquid chromatography‐diode array detector method for the simultaneous determination of six phenolic compounds in abnormal savda munziq decoction
  publication-title: Pharmacogn Mag
– ident: e_1_2_9_32_1
  doi: 10.1002/pca.2621
– ident: e_1_2_9_15_1
  doi: 10.1002/biof.1633
– ident: e_1_2_9_55_1
  doi: 10.5740/jaoacint.17-0469
– ident: e_1_2_9_13_1
  doi: 10.1016/j.phrs.2020.104939
– ident: e_1_2_9_75_1
  doi: 10.1016/j.jchromb.2017.01.020
– ident: e_1_2_9_87_1
  doi: 10.1093/chromsci/bmw099
– ident: e_1_2_9_111_1
  doi: 10.1016/j.talanta.2019.120373
– ident: e_1_2_9_49_1
  doi: 10.1007/s00216-018-1529-1
– ident: e_1_2_9_106_1
  doi: 10.1039/C9RA06265C
– ident: e_1_2_9_103_1
  doi: 10.1016/j.jelechem.2018.07.049
– ident: e_1_2_9_101_1
  doi: 10.20964/110378
– ident: e_1_2_9_78_1
  doi: 10.1007/s12161-017-0904-4
– ident: e_1_2_9_10_1
  doi: 10.1016/j.abb.2006.09.003
– ident: e_1_2_9_73_1
  doi: 10.1155/2020/8271203
– ident: e_1_2_9_83_1
  doi: 10.1016/j.jchromb.2017.05.021
– volume: 10
  start-page: 3518
  year: 2015
  ident: e_1_2_9_94_1
  article-title: Poly (diallyldimethylammonium chloride) functionalized reduced graphene oxide based electrochemical sensing platform for luteolin determination
  publication-title: Int J Electrochem Sci
  doi: 10.1016/S1452-3981(23)06558-6
– ident: e_1_2_9_104_1
  doi: 10.1016/j.snb.2018.11.010
– ident: e_1_2_9_109_1
  doi: 10.1016/j.jelechem.2019.04.074
– ident: e_1_2_9_5_1
  doi: 10.1055/s-2006-957969
– ident: e_1_2_9_59_1
  doi: 10.1002/elps.201600118
– ident: e_1_2_9_3_1
  doi: 10.1201/9781439823057
– ident: e_1_2_9_100_1
  doi: 10.1016/j.jelechem.2016.08.037
– ident: e_1_2_9_34_1
  doi: 10.1016/j.foodchem.2016.02.086
– ident: e_1_2_9_8_1
  doi: 10.1016/S0162-0134(02)00511-1
– ident: e_1_2_9_19_1
  doi: 10.1016/j.talanta.2016.05.071
– volume: 2020
  start-page: 1
  year: 2020
  ident: e_1_2_9_81_1
  article-title: Pharmacokinetic comparisons of different combinations of Yigan Jiangzhi formula in rrats: simultaneous determination of fourteen components by UPLC‐MS/MS
  publication-title: J Anal Methods Chem
  doi: 10.1155/2020/9353975
– ident: e_1_2_9_92_1
  doi: 10.1002/elan.201700403
– ident: e_1_2_9_45_1
  doi: 10.1016/j.chroma.2006.01.019
– ident: e_1_2_9_118_1
  doi: 10.1080/10739149.2015.1038560
– ident: e_1_2_9_88_1
  doi: 10.1016/j.jelechem.2018.04.009
– ident: e_1_2_9_97_1
  doi: 10.1039/C5RA12865J
– ident: e_1_2_9_22_1
  doi: 10.1016/j.snb.2013.11.023
– ident: e_1_2_9_40_1
  doi: 10.1002/bmc.3970
– volume: 56
  start-page: 582
  issue: 7
  year: 2018
  ident: e_1_2_9_54_1
  article-title: Quantitative study of main compounds in Commelina communis Linn. by UHPLC–Q‐TOF‐MS‐MS and HPLC–ESI‐MS‐MS
  publication-title: J Chromatogr Sci
– ident: e_1_2_9_52_1
  doi: 10.1016/j.jpba.2019.05.019
– volume: 273
  start-page: 283
  ident: e_1_2_9_60_1
  article-title: Preparation of novel molecularly imprinted magnetic graphene oxide and their application for quercetin determination
  publication-title: J Chromatogr B 2019
– ident: e_1_2_9_16_1
  doi: 10.1016/j.talanta.2020.121710
– ident: e_1_2_9_38_1
  doi: 10.1016/j.jchromb.2015.06.002
– ident: e_1_2_9_42_1
  doi: 10.1039/C9RA07482A
– ident: e_1_2_9_74_1
– ident: e_1_2_9_35_1
  doi: 10.3390/biom9080367
– ident: e_1_2_9_72_1
  doi: 10.1007/s13765-017-0260-5
– ident: e_1_2_9_50_1
  doi: 10.1016/j.foodres.2017.03.018
– ident: e_1_2_9_25_1
  doi: 10.1016/j.microc.2014.03.004
– ident: e_1_2_9_6_1
  doi: 10.1016/0006-2952(92)90489-6
– ident: e_1_2_9_61_1
  doi: 10.1016/j.bjp.2018.09.006
– ident: e_1_2_9_112_1
  doi: 10.1016/j.talanta.2020.120843
– ident: e_1_2_9_91_1
  doi: 10.1039/C6AY01752E
– volume: 2015
  start-page: 1
  year: 2015
  ident: e_1_2_9_80_1
  article-title: Simultaneous determination of rutin, luteolin, quercetin, and betulinic acid in the extract of disporopsis pernyi (Hua) Diels by UPLC
  publication-title: J Anal Methods Chem.
  doi: 10.1155/2015/130873
– ident: e_1_2_9_26_1
  doi: 10.1016/j.snb.2014.07.005
– ident: e_1_2_9_36_1
  doi: 10.1155/2015/980890
– ident: e_1_2_9_17_1
  doi: 10.1016/j.trac.2020.116065
– ident: e_1_2_9_84_1
  doi: 10.1039/C4AY01477D
– ident: e_1_2_9_31_1
  doi: 10.1556/1006.2018.31.3.2
– ident: e_1_2_9_110_1
  doi: 10.1039/C9NJ05241K
– ident: e_1_2_9_37_1
  doi: 10.1016/j.talanta.2016.01.041
– ident: e_1_2_9_47_1
  doi: 10.1016/j.jpha.2017.06.005
– ident: e_1_2_9_39_1
  doi: 10.1016/j.jchromb.2017.03.035
– ident: e_1_2_9_93_1
  doi: 10.1016/j.snb.2014.07.005
– ident: e_1_2_9_82_1
  doi: 10.3390/molecules22081267
– ident: e_1_2_9_63_1
  doi: 10.1155/2020/3950609
– ident: e_1_2_9_107_1
  doi: 10.1016/j.microc.2018.12.006
– ident: e_1_2_9_65_1
  doi: 10.1002/jssc.201500913
– ident: e_1_2_9_56_1
  doi: 10.1039/C7AY02721D
– ident: e_1_2_9_20_1
  doi: 10.3390/chemosensors5030023
– ident: e_1_2_9_90_1
  doi: 10.1016/j.talanta.2020.120891
– ident: e_1_2_9_114_1
  doi: 10.1039/C5AY00291E
– volume: 46
  start-page: 1
  year: 2020
  ident: e_1_2_9_11_1
  article-title: Neuroprotective effects of flavone luteolin in neuroinflammation and neurotrauma
  publication-title: Biofactors
– ident: e_1_2_9_66_1
  doi: 10.1016/j.microc.2018.04.014
– ident: e_1_2_9_21_1
  doi: 10.1016/j.microc.2020.105442
– volume: 2017
  start-page: 1
  year: 2017
  ident: e_1_2_9_58_1
  article-title: Simultaneous determination and pharmacokinetic study of quercetin, luteolin, and apigenin in rat plasma after oral administration of Matricaria chamomilla L extract by HPLC‐UV
  publication-title: Evid‐Based Compl Alt
  doi: 10.1155/2017/8370584
– ident: e_1_2_9_44_1
  doi: 10.1016/j.chroma.2015.11.077
– ident: e_1_2_9_85_1
  doi: 10.1093/chromsci/bmv171
– ident: e_1_2_9_113_1
  doi: 10.4028/www.scientific.net/AMR.941-944.994
– ident: e_1_2_9_14_1
  article-title: Flavonoids: a complementary approach to conventional therapy of COVID‐19?
  publication-title: Phytochem Rev
– ident: e_1_2_9_24_1
  doi: 10.1016/j.bioelechem.2013.01.002
– ident: e_1_2_9_89_1
  doi: 10.1016/j.jelechem.2015.11.005
– start-page: 73
  volume-title: Electroanalytical determinations of luteolin in luteolin natural occurrences, therapeutic applications and health effects
  year: 2015
  ident: e_1_2_9_27_1
– ident: e_1_2_9_28_1
  doi: 10.1016/j.chroma.2010.12.068
– ident: e_1_2_9_4_1
  doi: 10.2174/138955709787001712
– ident: e_1_2_9_43_1
  doi: 10.1016/j.trac.2013.02.008
– ident: e_1_2_9_46_1
  doi: 10.1016/j.jpba.2017.07.038
– ident: e_1_2_9_2_1
  doi: 10.1016/S0024-3205(99)00120-4
– ident: e_1_2_9_30_1
  doi: 10.1556/1006.2018.31.6.3
– ident: e_1_2_9_48_1
  doi: 10.3390/molecules25020409
– ident: e_1_2_9_117_1
  doi: 10.1007/s10337-016-3147-4
SSID ssj0013048
Score 2.418166
SecondaryResourceType review_article
Snippet Plants, through the photosynthesis process, produce the substances necessary for all the life cycles of nature, which are called "primary metabolites."...
SourceID proquest
pubmed
crossref
wiley
SourceType Aggregation Database
Index Database
Enrichment Source
Publisher
StartPage 141
SubjectTerms antioxidant
chromatography
electroanalytical chemistry
flavonoid
luteolin
Title Analytical determinations of luteolin
URI https://onlinelibrary.wiley.com/doi/abs/10.1002%2Fbiof.1720
https://www.ncbi.nlm.nih.gov/pubmed/33660395
https://www.proquest.com/docview/2497100119
Volume 47
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV3dT9swED915WF7mRjso2xD2QTTpCld7MRO8khhFeMBHigSe4ri2JYqsQZBO2389TvbcdKqILG9RFVsOc3d5T58598B7KUVNVaChXmkWJjolIdC8ThM41LHmUYDVNlqi1N-fJGcXLLLXu9kqWppMRfD6u7ecyX_w1W8h3w1p2T_gbPtongDfyN_8YocxuujeGwRRdxmtPRlLW1lGz5YmY48K2nbaT1uGuwYmNHfrrK93QuYqNtpc-zlV3lTf_kx7PIx4kpJO3au0PJZvXA6XN4zoEtFU06frxflrFVeGtcrRHfFaR_ltGOWovqMXI8Vrz4dYGYjJnRJFxKHaNWYVeLAytc0tkOAFdNaD9GXijqz5FPx7ST24DRrjkffz8Zm6AlsUAwZaB82DkZHo3GXU4psL7X2xTzOVES_tuuueidrIcdqBGNdkMkmPG9ih-DACcIL6KnZFmyjEMzrn3-CT4Gt5rVpki14eug7-W3DficnwaqcBLUOvJy8hIvxt8nhcdi0xwirGN3UMBEiFgmVkvMo0dI4i0SKvMy5IExWac4YjrMKQ2JSop_JSBYJlmqphRQUFe8r6M_qmXoDQYZLaZFyyVSZcFaKhGdRhZGkaf-jiBzAZ0-Womqw400Lk6vCoV7TwlCwMBQcwMd26rUDTLlv0gdP2wJpYXJU5UzVi9uCJrnBmyIkH8BrR_R2mTjGN41zhv_GcuHh9QsvDDuPn_oWnnWfyjvoz28W6j06nHOx20jSX2w_eZQ
linkProvider EBSCOhost
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=Analytical+determinations+of+luteolin&rft.jtitle=BioFactors+%28Oxford%29&rft.au=Tesio%2C+Alvaro+Y.&rft.au=Robledo%2C+Sebastian+N.&rft.date=2021-03-01&rft.pub=John+Wiley+%26+Sons%2C+Inc&rft.issn=0951-6433&rft.eissn=1872-8081&rft.volume=47&rft.issue=2&rft.spage=141&rft.epage=164&rft_id=info:doi/10.1002%2Fbiof.1720&rft.externalDBID=10.1002%252Fbiof.1720&rft.externalDocID=BIOF1720
thumbnail_l http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=0951-6433&client=summon
thumbnail_m http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=0951-6433&client=summon
thumbnail_s http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=0951-6433&client=summon