草莓昆布茶代谢物的自由基清除、α-淀粉酶、α-葡萄糖苷酶和脂肪酶抑制活性:分子对接和体外研究

A. Pramono, William Ben Gunawan, F. Nurkolis, Darmawan Alisaputra, Gilbert Ansell Limen, Muhammad Subhan Alfaqih, Martha Ardiaria
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引用次数: 0

摘要

肥胖是一个全球性问题,与心脏代谢综合征有关。饮食调节是控制心脏代谢综合征的推荐模式之一。草莓是一种功能性食品,昆布茶是一种发酵茶饮料,因其对健康的益处而备受关注。本研究调查了草莓昆布茶饮料(SKD)的生物活性成分及其对抗氧化活性和改善代谢紊乱指标的影响。通过体外实验确定了 SKD 对脂肪酶、α-葡萄糖苷酶和α-淀粉酶活性等酶参数的影响。此外,还采用 DPPH 法测量了抗氧化活性和自由基清除活性的定量。此外,还对 SKD 进行了非靶向代谢组学分析和分子对接模拟。研究结果表明,富含次生代谢物的 SKD 能抑制脂肪酶、α-葡萄糖苷酶和α-淀粉酶的活性。它在体外表现出抗肥胖、抗糖尿病和抗氧化特性,有可能减少代谢和炎症问题。因此,SKD 可以作为一种治疗饮料来改变与肥胖有关的代谢问题。不过,要确定 SKD 在体内的潜力,还需要进一步的临床前研究。
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Free radical scavenging, α-amylase, α-glucosidase, and lipase inhibitory activities of metabolites from strawberry kombucha: Molecular docking and in vitro studies
Obesity, a global issue, is linked to cardiometabolic syndrome. Dietary modification is one of the recommended modes for managing cardiometabolic syndrome. Strawberries, a functional food, and kombucha, a fermented tea beverage, have gained attention for their health benefits. This study investigated the bioactive components of strawberry kombucha drink (SKD) and their effects on antioxidant activities and improving metabolic disorder markers. An in vitro experiment was performed to determine the effect of SKD on enzymatic parameters: lipase, α-glucosidase, and α-amylase activities. In addition, antioxidant activity using the DPPH method and quantification of the radical scavenging activity were also measured. Furthermore, untargeted metabolomic profiling of SKD and molecular docking simulation were conducted. The findings suggest that SKD, rich in secondary metabolites, can inhibit lipase, α-glucosidase, and α-amylase activities. It demonstrated in vitro anti-obesity, anti-diabetic, and antioxidant properties, potentially reducing metabolic and inflammatory issues. Thus, SKD could be a therapeutic beverage to alter metabolic issues associated with obesity. Nevertheless, further preclinical study is warranted to determine SKD’s potential in vivo.
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