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Inhibitory effect of Artocarpus lakoocha Roxb and oxyresveratrol on α-glucosidase and sugar digestion in Caco-2 cells

机译:面包果木香和氧白藜芦醇对Caco-2细胞α-葡萄糖苷酶和糖消化的抑制作用

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摘要

Long-term diabetic complications are exacerbated by post-prandial hyperglycemia which could be ameliorated by α-glucosidase inhibitor including oxyresveratrol. Puag-Haad is an aqueous extract from Roxb. containing ~65% oxyresveratrol. Oxyresveratrol is an inhibitor of isolated yeast α-glucosidase enzyme but has not been tested on intact gut enterocytes where the enzyme is membrane-bound. Accordingly, differentiated Caco-2 cells that contain the native enzyme were used to test maltose hydrolysis in the present study. The results demonstrated that purified yeast α-glucosidase was non-competitively inhibited by oxyresveratrol ( i 54.4 ± 0.7 μg/mL) and Puag-Haad (2.7 ± 0.1 μg/mL) compared to 153.8 ± 4.3 μg/mL acarbose, an anti-diabetic drug. In differentiated Caco-2 cells, both oxyresveratrol and Puag-Haad inhibited maltose hydrolysis with lesser potency compared to acarbose. Thus, although weaker than acarbose, oxyresveratrol and Puag-Haad do not inhibit pancreatic amylase which might be a therapeutic asset in preventing fermentation of unabsorbed carbohydrate causes abdominal bloating, flatulence, or diarrhea. Oxyresveratrol and Puag-Haad may help control postprandial hyperglycemia with low risk of gastrointestinal side effects.
机译:餐后高血糖加剧了长期的糖尿病并发症,可通过α-葡萄糖苷酶抑制剂(包括氧白藜芦醇)缓解。 Puag-Haad是Roxb的水性提取物。含〜65%的白藜芦醇。 Oxyresveratrol是分离的酵母α-葡萄糖苷酶的抑制剂,但尚未在完整的肠道肠上皮细胞膜结合酶上进行过测试。因此,在本研究中,含有天然酶的分化的Caco-2细胞被用于测试麦芽糖的水解。结果表明,纯化的酵母α-葡萄糖苷酶非竞争性地被氧白藜芦醇(i 54.4±0.7μg/ mL)和Puag-Haad(2.7±0.1μg/ mL)抑制,而抗阿卡波糖为153.8±4.3μg/ mL。糖尿病药物。与阿卡波糖相比,在分化的Caco-2细胞中,氧白藜芦醇和Puag-Haad都抑制麦芽糖水解,但效力较低。因此,尽管比阿卡波糖弱,但氧白藜芦醇和Puag-Haad不能抑制胰淀粉酶,这可能是防止未吸收的碳水化合物发酵引起腹胀,肠胃气胀或腹泻的治疗资产。 Oxyresveratrol和Puag-Haad可能有助于控制餐后高血糖症,且胃肠道副作用的风险较低。

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