Three New Phenolic Compounds from a Manipulated Plant Cell Culture, Mirabilis jalapa

Bioassay-guided fractionation of an organic extract of the cell mass from a manipulated plant cell culture of Mirabilis jalapa led to the isolation and subsequent identification of three new phenolic compounds, 1, 2, and 3. The isoflavone 1 and dehydrorotenoid 2 were identified as the principal anti...

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Published inJournal of natural products (Washington, D.C.) Vol. 64; no. 3; pp. 313 - 317
Main Authors YANG, Shu-Wei, UBILLAS, Rosa, MCALPINE, James, STAFFORD, Angela, ECKER, Dawn M., TALBOT, M. Kelly, ROGERS, Bruce
Format Journal Article
LanguageEnglish
Published WASHINGTON American Chemical Society 01.03.2001
Amer Chemical Soc
American Society of Pharmacognosy
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Abstract Bioassay-guided fractionation of an organic extract of the cell mass from a manipulated plant cell culture of Mirabilis jalapa led to the isolation and subsequent identification of three new phenolic compounds, 1, 2, and 3. The isoflavone 1 and dehydrorotenoid 2 were identified as the principal antifungal principles from this plant cell culture with IC50's of 25 and 48 mug/mL, respectively, against the test organism, Candida albicans DSY1024. The rotenoid 3 was inactive at 200 mug/mL in this assay.
AbstractList Bioassay-guided fractionation of an organic extract of the cell mass from a manipulated plant cell culture of Mirabilis jalapa led to the isolation and subsequent identification of three new phenolic compounds, 1, 2, and 3. The isoflavone 1 and dehydrorotenoid 2 were identified as the principal antifungal principles from this plant cell culture with IC50's of 25 and 48 mug/mL, respectively, against the test organism, Candida albicans DSY1024. The rotenoid 3 was inactive at 200 mug/mL in this assay.
Bioassay-guided fractionation of an organic extract of the cell mass from a manipulated plant cell culture of Mirabilis jalapa led to the isolation and subsequent identification of three new phenolic compounds, 1, 2, and 3. The isoflavone 1 and dehydrorotenoid 2 were identified as the principal antifungal principles from this plant cell culture with IC(50)'s of 25 and 48 microg/mL, respectively, against the test organism, Candida albicans DSY1024. The rotenoid 3 was inactive at 200 microg/mL in this assay.
Author MCALPINE, James
ECKER, Dawn M.
ROGERS, Bruce
YANG, Shu-Wei
UBILLAS, Rosa
STAFFORD, Angela
TALBOT, M. Kelly
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Issue 3
Keywords ROOTS
BOERHAAVIA-DIFFUSA L
CONSTITUENTS
Candida albicans
Cell culture
Pharmacognosy
Tetracyclic compound
Nyctaginaceae
Oxygen heterocycle
Flavonoid
In vitro
Biological activity
Medicinal plant
Fungi
Antifungal agent
Polyphenol
Dicotyledones
Angiospermae
Plant origin
Bicyclic compound
Isolation
Spermatophyta
Aromatic compound
Fungi Imperfecti
Genetically modified organism
Thallophyta
Structural analysis
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American Society of Pharmacognosy
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References PIATTELLI, M. (BCI:BCI19664700048907) 1965; 4
GAMBORG OL (WOS:000167725600008.2) 1968; 50
MESHULAM, T (WOS:A1995RW06200043) 1995; 172
WOLLENWEBER E (WOS:000167725600008.9) 1993; 3
LAMI, N (WOS:A1990DN30100020) 1990; 38
TAGUCHI, H (WOS:A1977DJ71500027) 1977; 25
KADOTA, S (WOS:A1989CJ86300009) 1989; 37
STAFFORD AM (WOS:000167725600008.7) 1998
DEWICK PM (WOS:000167725600008.1) 1993
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  publication-title: PHYTOCHEM ISTRY
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  publication-title: JOURNAL OF INFECTIOUS DISEASES
  contributor:
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  publication-title: ADV DRUG DISCOVERY T
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Snippet Bioassay-guided fractionation of an organic extract of the cell mass from a manipulated plant cell culture of Mirabilis jalapa led to the isolation and...
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SubjectTerms Antifungal Agents - chemistry
Antifungal Agents - isolation & purification
Biological and medical sciences
Biotechnology
Candida albicans - drug effects
Cells, Cultured
Chemistry, Medicinal
Eukaryotic cell cultures
Fundamental and applied biological sciences. Psychology
General pharmacology
Life Sciences & Biomedicine
Magnetic Resonance Spectroscopy
Magnoliopsida - chemistry
Medical sciences
Methods. Procedures. Technologies
Microbial Sensitivity Tests
Miscellaneous
Pharmacognosy. Homeopathy. Health food
Pharmacology & Pharmacy
Pharmacology. Drug treatments
Phenols - chemistry
Phenols - isolation & purification
Plant cells and fungal cells
Plant Sciences
Science & Technology
Title Three New Phenolic Compounds from a Manipulated Plant Cell Culture, Mirabilis jalapa
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