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Screening of α-glucosidase inhibitors from natural flavonoids by an in-capillary assay combining PMMA and EMMA

机译:通过PMMA和EMMA的毛细管内分析从天然类黄酮中筛选α-葡萄糖苷酶抑制剂

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A capillary electrophoresis method combining pressure mediated microanalysis (PMMA) and electrophoretically mediated microanalysis (EMMA) was established and applied to the study of enzyme kinetics and inhibition kinetics of α-glucosidase, and the screening of α-glucosidase inhibitors from natural flavonoids. First, an incubation buffer, enzyme, substrate and incubation buffer were injected by pressure into a capillary as separate plugs for the enzyme kinetics study. While for the inhibition kinetics study and inhibitor screening, plugs of the incubation buffer, enzyme, inhibitor, substrate and incubation buffer were injected in sequence. Subsequently, the injected plugs were mixed and 2 min of incubation time was allowed for the enzymatic reaction. Afterwards, the resulting product p-nitrophenol (pNP) was separated from the reaction mixture by applying a constant voltage of 15 kV and detected at a wavelength of 405 nm. The Michaelis constant (Km) of α-glucosidase was calculated to be 0.83 mM. And the inhibition constant (Ki) and half-maximal inhibitory concentration (IC50) for acarbose were determined to be 200.4 and 320.1 μM, respectively. Finally, the developed method was applied to screen α-glucosidase inhibitors from 9 natural flavonoids. This method enables the injection and mixing of reagents, enzymatic reaction, separation and quantitation of the reaction product in the same capillary, thus simplifying the operation process, resulting in a higher degree of recognition of the product peak, and reducing the screening cost.
机译:建立了一种将压力介导的微分析(PMMA)和电泳介导的微分析(EMMA)相结合的毛细管电泳方法,并将其用于研究α-葡萄糖苷酶的酶动力学和抑制动力学,以及从天然类黄酮中筛选α-葡萄糖苷酶抑制剂。首先,通过压力将培养缓冲液,酶,底物和培养缓冲液作为单独的塞子注入毛细管中,以进行酶动力学研究。在进行抑制动力学研究和抑制剂筛选时,依次注入孵育缓冲液,酶,抑制剂,底物和孵育缓冲液的塞子。随后,将注入的塞子混合,并允许2分钟的孵育时间用于酶促反应。然后,通过施加15kV的恒定电压从反应混合物中分离出所得产物对硝基苯酚(pNP),并在405nm的波长下进行检测。 α-葡糖苷酶的米氏常数(Km)经计算为0.83mM。阿卡波糖的抑制常数(Ki)和半最大抑制浓度(IC50)分别确定为200.4和320.1μM。最后,将开发的方法用于从9种天然黄酮中筛选α-葡萄糖苷酶抑制剂。该方法可以在同一毛细管中进行试剂的注入和混合,酶促反应,反应产物的分离和定量,从而简化了操作过程,从而提高了产物峰的识别度,并降低了筛查成本。

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