Bioprospecting Laboratory, Department of Botany, Bharathiar University, Coimbatore 641046, Tamil Nadu, India.
Computational Biology Laboratory, Department of Bioinformatics, Bharathiar University, Coimbatore 641046, Tamil Nadu, India.
Food Chem. 2024 Mar 1;435:137577. doi: 10.1016/j.foodchem.2023.137577. Epub 2023 Sep 29.
Inhibition of breakdown of dietary carbohydrates, by controlling the postprandial activity of diabetic enzymes through fruit polyphenolics can help downregulate the effects of Type 2 Diabetes Mellitus (T2DM). The study focuses on deciphering the induction of hyperglycaemic control by bio-accessed anti-oxidative polyphenols of Cucumic dipsaceus fruits. Chiefly, we examined the antioxidant activity of bio-accessed polyphenols of C. dipsaceus fruits (DPPH: ME (GDE)-66.26 %; ABTS: FE (IDE)-1963.83 µM TEAC/mg extract; Phosphomolybdenum reduction: FE (IDE)- 64.95 mg AAEAC/g extract). To add more significance, the anti-diabetic activity was predetermined by in silico docking analyses (Pseudojervine - -5.43; Squalene- -10.41) and was concurrently confirmed by in vitro studies (α amylase inhibition: ME (GDE) - 69.58 %; α glucosidase inhibition: FE (UDE)- 88.67 %). A higher bio-accessibility of rutin (37.92 mg/g ODE) and gallic acid (8.36 mg/g ODE) was observed after quantification by HPLC, which confirmed the correlation between anti-diabetic activity and C. dipsaceus fruit phenolic compounds.
通过控制糖尿病酶的餐后活性来抑制膳食碳水化合物的分解,可以帮助下调 2 型糖尿病(T2DM)的影响。本研究侧重于破译 Cucumic dipsaceus 水果中生物可及的抗氧化多酚对高血糖控制的诱导作用。主要是,我们检查了 C. dipsaceus 水果生物可及多酚的抗氧化活性(DPPH:ME(GDE)-66.26%;ABTS:FE(IDE)-1963.83µM TEAC/mg 提取物;磷钼还原:FE(IDE)-64.95mg AAEAC/g 提取物)。为了增加意义,通过计算机对接分析预先确定了抗糖尿病活性(伪杰尔文- -5.43;角鲨烯- -10.41),并通过体外研究同时得到证实(α-淀粉酶抑制:ME(GDE)-69.58%;α-葡萄糖苷酶抑制:FE(UDE)-88.67%)。通过 HPLC 定量后,观察到芦丁(37.92mg/g ODE)和没食子酸(8.36mg/g ODE)的生物可及性更高,这证实了抗糖尿病活性与 C. dipsaceus 水果酚类化合物之间的相关性。