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Chemo-Preventive Potential of Falcarindiol-Enriched Fraction from Oplopanax elatus on Colorectal Cancer Interfered by Human Gut Microbiota

机译:来自Oplopanax Elatus对人肠微生物干扰的oplopanax Elatus从Oplopanax Elatus的化学预防潜力

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摘要

Oplopanax elatus (Nakai) Nakai is an oriental herb, the polyyne-enriched fraction of which (PEFO) showed anticolorectal cancer (anti-CRC) effects. Other concomitant components, which are inevitably bio-transformed by gut microbiota after oral administration, might be interfere with the pharmacodynamics of polyynes. However, the influence of human gut microbiota on molecules from O. elatus possessing anticancer activity are yet unknown. In this study, the compounds in PEFO and PEFO incubated with human gut microbiota were analyzed and tentatively identified by HPLC-DAD-QTOF-MS. Two main polyynes ((3S, 8S)-falcarindiol and oplopandiol) were not significantly decomposed, but some new unknown molecules were discovered during incubation. However, the anti-proliferative effects of PEFO incubated with human gut microbiota for 72 h (PEFO I) were much lower than that of PEFO on HCT-116, SW-480, and HT-29 cells. Furthermore, PEFO possessed better anti-CRC activity in vivo, and significantly induced apoptosis of the CRC cells, which was associated with activation of caspase-3 according to the Western-blot results (P < 0.05). These results suggest anticolorectal cancer activity of polyynes might be antagonized by some bio-converted metabolites after incubation with human gut microbiota. Therefore, it might be better for CRC prevention if the polyynes could be orally administrated as purified compounds.
机译:Oplopanax Elatus(Nakai)Nakai是一个东方草药,其中富含亚锰的富含部分(PEFO)显示抗肠癌(抗CRC)的影响。在口服给药后,通过肠道微生物肠道不可避免地生物转化的其他伴随组分可能会干扰多炔的药效动力学。然而,人体肠道微生物对具有抗癌活动的O.elatus的分子的影响尚不清楚。在该研究中,通过HPLC-DAD-QTOF-MS分析并暂时鉴定PEFO和PEFO中的化合物和PEFO。两个主要的多褐色((3S,8S)-Falcarindiol和Oplopandiol)没有显着分解,但在孵育期间发现了一些新的未知分子。然而,与人体肠道微生物孵育72h(PEFO I)孵育的PEFO的抗增殖效果远低于HCT-116,SW-480和HT-29细胞的PEFO。此外,PEFO在体内具有更好的抗CRC活性,并且显着诱导了CRC细胞的凋亡,根据西印迹结果(P <0.05),与Caspase-3的激活相关。这些结果表明,在与人体肠道微生物植物孵育后,一些生物转化的代谢产物可能会拮抗聚母的抗听性癌症活性。因此,如果多炔可以作为纯化的化合物口服给予,则可以更好地预防CRC。

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