6-Gingerol delays tumorigenesis in benzo[a]pyrene and dextran sulphate sodium-induced colorectal cancer in mice

dc.contributor.authorFarombi, E. O. || ||
dc.contributor.authorAjayi, B. O.
dc.contributor.authorAdedara, I. A.
dc.date.accessioned2026-02-10T12:14:00Z
dc.date.issued2020
dc.description.abstractColorectal cancer (CRC) has been linked to dietary consumption of benzo[a]pyrene (B[a]P). 6-Gingerol (6-G), a component of ginger has been reported to possess anti-inflammatory and antioxidant activities, but little is known regarding the mechanism of 6-G in CRC chemoprevention. We therefore investigated the effect of 6-G on B[a]P. and dextran sulphate sodium (DSS) induced CRC in mice. Mice in Group I and Group II received corn oil and 6-G orally at 2 ml/kg and 100 mg/kg, respectively for 126 days. Group III were administered 125 mg/kg of B [a]P for 5 days followed by 3 cycles of 4% dextran sulphate sodium (DSS). Group IV received 6-G for 7 days followed by co-administration with 125 mg/kg of B[a]P. for 5 days and 3 cycles of 4% DSS. Tumor formation was reduced and expression of Ki-67, WNT3a, DVL-2 and p-catenin following 6-G exposure. Also, 6-G increases expression of APC, P53, TUNEL positive nuclei and subsequently decreased the expression of TNF-a, IL-1p, INOS, COX-2 and cyclin D1. 6-G inhibited angiogenesis by decreasing the concentration of VEGF, Angiopoietin- 1, FGF and GDF-15 in the colon of B[a]P. and DSS exposed mice. Overall, 6-G attenuated B[a]P and DSS-induced CRC in mice via anti-inflammatory, anti-proliferative and apoptotic mechanisms.
dc.identifier.issn0278-6915
dc.identifier.otherui_art_farombi_6-gingerol_2020
dc.identifier.otherFood and Chemical Toxicology 142 (111483)
dc.identifier.urihttps://repository.ui.edu.ng/handle/123456789/12043
dc.language.isoen
dc.publisherElsevier Ltd.
dc.subjectColorectal cancer
dc.subject6-Gingerol
dc.subjectWnt/pCatenin signaling
dc.subjectInflammation
dc.subjectCell cycle
dc.subjectAngiogenesis
dc.title6-Gingerol delays tumorigenesis in benzo[a]pyrene and dextran sulphate sodium-induced colorectal cancer in mice
dc.typeArticle

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