Curcumin inhibits superoxide anion-induced pain-like behavior and leukocyte recruitment by increasing Nrf2 expression and reducing NF-κB activation

Objective This study aimed at evaluating the activity of curcumin in superoxide anion-induced pain-like behavior and leukocyte recruitment in mice. Treatment Administration of curcumin 10 mg/kg subcutaneously 1 h before stimulus. Methods KO 2 was used as superoxide anion donor. Overt pain-like behav...

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Published inInflammation research Vol. 64; no. 12; pp. 993 - 1003
Main Authors Fattori, Victor, Pinho-Ribeiro, Felipe A., Borghi, Sergio M., Alves-Filho, José C., Cunha, Thiago M., Cunha, Fernando Q., Casagrande, Rubia, Verri, Waldiceu A.
Format Journal Article
LanguageEnglish
Published Basel Springer Basel 01.12.2015
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Abstract Objective This study aimed at evaluating the activity of curcumin in superoxide anion-induced pain-like behavior and leukocyte recruitment in mice. Treatment Administration of curcumin 10 mg/kg subcutaneously 1 h before stimulus. Methods KO 2 was used as superoxide anion donor. Overt pain-like behaviors were determined by the number of abdominal writhings, paw flinches and time spent licking the paw. Mechanical and thermal hyperalgesia were determined using an electronic anesthesiometer and hot plate, respectively. Cytokine concentration and NF-κB activity were determined by ELISA, antioxidant effect by nitrobluetretrazolium assay and ABTS radical scavenging ability. Myeloperoxidase activity was measured by colorimetric assay. The Nrf2, heme oxygenase-1 (HO-1) and gp91 phox mRNA expression was determined by quantitative PCR. Data were analyzed by ANOVA followed by Tukey’s post hoc and considered significant when p  < 0.05. Results Curcumin inhibited superoxide anion-induced overt pain-like behaviors as well as mechanical and thermal hyperalgesia. Curcumin also inhibited superoxide anion-induced leukocyte recruitment in the peritoneal cavity and in the paw skin inhibited myeloperoxidase activity, oxidative stress, IL-1β and TNF-α production and NF-κB activation as well as enhanced IL-10 production, and HO-1 and Nrf2 mRNA expression. Conclusion Curcumin inhibits superoxide anion-induced inflammatory pain-like behaviors and leukocyte recruitment by targeting inflammatory molecules and oxidative stress; and inducing antioxidant and anti-inflammatory pathways.
AbstractList OBJECTIVEThis study aimed at evaluating the activity of curcumin in superoxide anion-induced pain-like behavior and leukocyte recruitment in mice.TREATMENTAdministration of curcumin 10 mg/kg subcutaneously 1 h before stimulus.METHODSKO2 was used as superoxide anion donor. Overt pain-like behaviors were determined by the number of abdominal writhings, paw flinches and time spent licking the paw. Mechanical and thermal hyperalgesia were determined using an electronic anesthesiometer and hot plate, respectively. Cytokine concentration and NF-κB activity were determined by ELISA, antioxidant effect by nitrobluetretrazolium assay and ABTS radical scavenging ability. Myeloperoxidase activity was measured by colorimetric assay. The Nrf2, heme oxygenase-1 (HO-1) and gp91phox mRNA expression was determined by quantitative PCR. Data were analyzed by ANOVA followed by Tukey's post hoc and considered significant when p<0.05.RESULTSCurcumin inhibited superoxide anion-induced overt pain-like behaviors as well as mechanical and thermal hyperalgesia. Curcumin also inhibited superoxide anion-induced leukocyte recruitment in the peritoneal cavity and in the paw skin inhibited myeloperoxidase activity, oxidative stress, IL-1β and TNF-α production and NF-κB activation as well as enhanced IL-10 production, and HO-1 and Nrf2 mRNA expression.CONCLUSIONCurcumin inhibits superoxide anion-induced inflammatory pain-like behaviors and leukocyte recruitment by targeting inflammatory molecules and oxidative stress; and inducing antioxidant and anti-inflammatory pathways.
This study aimed at evaluating the activity of curcumin in superoxide anion-induced pain-like behavior and leukocyte recruitment in mice. Administration of curcumin 10 mg/kg subcutaneously 1 h before stimulus. KO sub(2) was used as superoxide anion donor. Overt pain-like behaviors were determined by the number of abdominal writhings, paw flinches and time spent licking the paw. Mechanical and thermal hyperalgesia were determined using an electronic anesthesiometer and hot plate, respectively. Cytokine concentration and NF- Kappa B activity were determined by ELISA, antioxidant effect by nitrobluetretrazolium assay and ABTS radical scavenging ability. Myeloperoxidase activity was measured by colorimetric assay. The Nrf2, heme oxygenase-1 (HO-1) and gp91 super(phox) mRNA expression was determined by quantitative PCR. Data were analyzed by ANOVA followed by Tukey's post hoc and considered significant when p < 0.05. Curcumin inhibited superoxide anion-induced overt pain-like behaviors as well as mechanical and thermal hyperalgesia. Curcumin also inhibited superoxide anion-induced leukocyte recruitment in the peritoneal cavity and in the paw skin inhibited myeloperoxidase activity, oxidative stress, IL-1 beta and TNF- alpha production and NF- Kappa B activation as well as enhanced IL-10 production, and HO-1 and Nrf2 mRNA expression. Curcumin inhibits superoxide anion-induced inflammatory pain-like behaviors and leukocyte recruitment by targeting inflammatory molecules and oxidative stress; and inducing antioxidant and anti-inflammatory pathways.
This study aimed at evaluating the activity of curcumin in superoxide anion-induced pain-like behavior and leukocyte recruitment in mice. Administration of curcumin 10 mg/kg subcutaneously 1 h before stimulus. KO2 was used as superoxide anion donor. Overt pain-like behaviors were determined by the number of abdominal writhings, paw flinches and time spent licking the paw. Mechanical and thermal hyperalgesia were determined using an electronic anesthesiometer and hot plate, respectively. Cytokine concentration and NF-κB activity were determined by ELISA, antioxidant effect by nitrobluetretrazolium assay and ABTS radical scavenging ability. Myeloperoxidase activity was measured by colorimetric assay. The Nrf2, heme oxygenase-1 (HO-1) and gp91phox mRNA expression was determined by quantitative PCR. Data were analyzed by ANOVA followed by Tukey's post hoc and considered significant when p<0.05. Curcumin inhibited superoxide anion-induced overt pain-like behaviors as well as mechanical and thermal hyperalgesia. Curcumin also inhibited superoxide anion-induced leukocyte recruitment in the peritoneal cavity and in the paw skin inhibited myeloperoxidase activity, oxidative stress, IL-1β and TNF-α production and NF-κB activation as well as enhanced IL-10 production, and HO-1 and Nrf2 mRNA expression. Curcumin inhibits superoxide anion-induced inflammatory pain-like behaviors and leukocyte recruitment by targeting inflammatory molecules and oxidative stress; and inducing antioxidant and anti-inflammatory pathways.
Objective This study aimed at evaluating the activity of curcumin in superoxide anion-induced pain-like behavior and leukocyte recruitment in mice. Treatment Administration of curcumin 10 mg/kg subcutaneously 1 h before stimulus. Methods KO 2 was used as superoxide anion donor. Overt pain-like behaviors were determined by the number of abdominal writhings, paw flinches and time spent licking the paw. Mechanical and thermal hyperalgesia were determined using an electronic anesthesiometer and hot plate, respectively. Cytokine concentration and NF-κB activity were determined by ELISA, antioxidant effect by nitrobluetretrazolium assay and ABTS radical scavenging ability. Myeloperoxidase activity was measured by colorimetric assay. The Nrf2, heme oxygenase-1 (HO-1) and gp91 phox mRNA expression was determined by quantitative PCR. Data were analyzed by ANOVA followed by Tukey’s post hoc and considered significant when p  < 0.05. Results Curcumin inhibited superoxide anion-induced overt pain-like behaviors as well as mechanical and thermal hyperalgesia. Curcumin also inhibited superoxide anion-induced leukocyte recruitment in the peritoneal cavity and in the paw skin inhibited myeloperoxidase activity, oxidative stress, IL-1β and TNF-α production and NF-κB activation as well as enhanced IL-10 production, and HO-1 and Nrf2 mRNA expression. Conclusion Curcumin inhibits superoxide anion-induced inflammatory pain-like behaviors and leukocyte recruitment by targeting inflammatory molecules and oxidative stress; and inducing antioxidant and anti-inflammatory pathways.
Author Verri, Waldiceu A.
Borghi, Sergio M.
Cunha, Fernando Q.
Alves-Filho, José C.
Casagrande, Rubia
Cunha, Thiago M.
Fattori, Victor
Pinho-Ribeiro, Felipe A.
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  surname: Pinho-Ribeiro
  fullname: Pinho-Ribeiro, Felipe A.
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  organization: Departamento de Ciências Patológicas, Centro de Ciências Biológicas, Universidade Estadual de Londrina
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  givenname: José C.
  surname: Alves-Filho
  fullname: Alves-Filho, José C.
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  givenname: Fernando Q.
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  surname: Verri
  fullname: Verri, Waldiceu A.
  email: waldiceujr@yahoo.com.br, waverri@uel.br
  organization: Departamento de Ciências Patológicas, Centro de Ciências Biológicas, Universidade Estadual de Londrina
BackLink https://www.ncbi.nlm.nih.gov/pubmed/26456836$$D View this record in MEDLINE/PubMed
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Issue 12
Keywords NF-κB
Superoxide anion
Curcumin
Pain
Nrf2
IL-10
Language English
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PublicationSubtitle Official Journal of: The International Association of Inflammation Societies + The European Histamine Research Society
PublicationTitle Inflammation research
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Snippet Objective This study aimed at evaluating the activity of curcumin in superoxide anion-induced pain-like behavior and leukocyte recruitment in mice. Treatment...
This study aimed at evaluating the activity of curcumin in superoxide anion-induced pain-like behavior and leukocyte recruitment in mice. Administration of...
OBJECTIVEThis study aimed at evaluating the activity of curcumin in superoxide anion-induced pain-like behavior and leukocyte recruitment in...
This study aimed at evaluating the activity of curcumin in superoxide anion-induced pain-like behavior and leukocyte recruitment in mice. Administration of...
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springer
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StartPage 993
SubjectTerms Allergology
Animals
Antioxidants - administration & dosage
Antioxidants - pharmacology
Biomedical and Life Sciences
Biomedicine
Curcumin - administration & dosage
Curcumin - pharmacology
Cytokines - biosynthesis
Dermatology
Heme Oxygenase-1 - biosynthesis
Hyperalgesia - chemically induced
Hyperalgesia - prevention & control
Immunology
Injections, Subcutaneous
Leukocytes - drug effects
Male
Membrane Glycoproteins - biosynthesis
Membrane Glycoproteins - genetics
Mice
NADPH Oxidase 2
NADPH Oxidases - biosynthesis
NADPH Oxidases - genetics
Neurology
NF-E2-Related Factor 2 - biosynthesis
NF-E2-Related Factor 2 - drug effects
NF-E2-Related Factor 2 - genetics
NF-kappa B - antagonists & inhibitors
Original Research Paper
Oxidants - toxicity
Oxidative Stress - drug effects
Oxides - chemistry
Pain - chemically induced
Pain - psychology
Pharmacology/Toxicology
Potassium Compounds - chemistry
Rheumatology
RNA, Messenger - biosynthesis
RNA, Messenger - genetics
Superoxides - antagonists & inhibitors
Superoxides - toxicity
Title Curcumin inhibits superoxide anion-induced pain-like behavior and leukocyte recruitment by increasing Nrf2 expression and reducing NF-κB activation
URI https://link.springer.com/article/10.1007/s00011-015-0885-y
https://www.ncbi.nlm.nih.gov/pubmed/26456836
https://search.proquest.com/docview/1728671570
https://search.proquest.com/docview/1735922235
Volume 64
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