首页> 外文期刊>Toxicology and Applied Pharmacology >Dietary turmeric modulates DMBA-induced p21ras, MAP kinases and AP-1/NF-kappaB pathway to alter cellular responses during hamster buccal pouch carcinogenesis.
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Dietary turmeric modulates DMBA-induced p21ras, MAP kinases and AP-1/NF-kappaB pathway to alter cellular responses during hamster buccal pouch carcinogenesis.

机译:饮食性姜黄调节仓鼠颊囊癌变过程中DMBA诱导的p21ras,MAP激酶和AP-1 /NF-κB通路,从而改变细胞反应。

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The chemopreventive efficacy of turmeric has been established in experimental systems. However, its mechanism(s) of action are not fully elucidated in vivo. The present study investigates the mechanism of turmeric-mediated chemoprevention in 7,12-dimethylbenz(a)anthracene (DMBA)-induced hamster buccal pouch (HBP) carcinogenesis at 2, 4, 6, 10 and 12 weeks. Dietary turmeric (1%) led to decrease in DMBA-induced tumor burden and multiplicity, and enhanced the latency period in parallel, to its modulatory effects on oncogene products and various cellular responses during HBP tumorigenesis. DMBA-induced expression of ras oncogene product, p21 and downstream target, the mitogen-activated protein kinases were significantly decreased by turmeric during HBP carcinogenesis. Turmeric also diminished the DMBA-induced mRNA expression of proto-oncogenes (c-jun, c-fos) and NF-kappaB, leading to decreased protein levels and in further attenuation of DMBA-induced AP-1/NF-kappaB DNA-binding in the buccal pouch nuclear extracts. Besides, buccal pouch of hamsters receiving turmeric diet showed significant alterations in DMBA-induced effects: (a) decrease in cell proliferation (diminished PCNA and Bcl2 expression), (b) enhanced apoptosis (increased expression of Bax, caspase-3 and apoptotic index), (c) decrease in inflammation (levels of Cox-2, the downstream target of AP-1/NF-kappaB, and PGE2) and (d) aberrant expression of differentiation markers, the cytokeratins (1, 5, 8, and 18). Together, the protective effects of dietary turmeric converge on augmenting apoptosis of the initiated cells and decreasing cell proliferation in DMBA-treated animals, which in turn, is reflected in decreased tumor burden, multiplicity and enhanced latency period. Some of these biomarkers are likely to be helpful in monitoring clinical trials and evaluating drug effect measurements.
机译:姜黄的化学预防功效已在实验系统中确立。然而,其作用机理在体内尚未完全阐明。本研究调查了在2、4、6、10和12周时,姜黄介导的化学预防机制在7,12-二甲基苯并(a)蒽(DMBA)诱导的仓鼠颊囊(HBP)致癌作用中的作用。饮食性姜黄(1%)降低了DMBA诱导的肿瘤负担和多样性,并同时延长了潜伏期,这是由于其对HBP肿瘤发生过程中癌基因产物和各种细胞反应的调节作用。在HBP致癌过程中,姜黄显着降低了DMBA诱导的ras癌基因产物,p21和下游靶标,丝裂原激活的蛋白激酶的表达。姜黄还减少了DMBA诱导的原癌基因(c-jun,c-fos)和NF-kappaB的mRNA表达,从而导致蛋白质水平降低,并进一步减弱了DMBA诱导的AP-1 / NF-kappaB DNA结合在颊囊核提取物中。此外,接受姜黄饮食的仓鼠颊囊显示出DMBA诱导的作用发生了显着变化:(a)细胞增殖减少(PCNA和Bcl2表达减少),(b)凋亡增加(Bax,caspase-3表达和凋亡指数增加) ),(c)炎症减少(Cox-2,AP-1 / NF-kappaB和PGE2的下游靶标水平)和(d)分化标志物,细胞角蛋白(1、5、8和18)。总之,饮食性姜黄的保护作用在增加DMBA处理动物的初始细胞凋亡和减少细胞增殖方面收敛,这反过来反映在减少的肿瘤负担,多样性和潜伏期延长上。这些生物标记物中的某些可能有助于监测临床试验和评估药物效果测量结果。

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