College of Food Science and Technology, Yunnan Agricultural University, Kunming 650201, China.
National Research and Development Professional Center for Moringa Processing Technology, Yunnan Agricultural University, Kunming 650201, China.
Int J Mol Sci. 2022 Oct 17;23(20):12405. doi: 10.3390/ijms232012405.
leaves (MOL) are a new food resource, rich in functional factors. MOL polysaccharides are important active macromolecules within MOL. However, there are problems, such as low extraction rates and lack of evidence for functional activity. Therefore, in this experiment, single-factor experiments were carried out using MOL powder as the raw material, and the Plackett-Burman test was used to screen the significantly influential test factors. The extraction process of MOL polysaccharide was optimized by response surface methodology. The insulin resistance alleviating activity of MOLP polysaccharides was initially explored. The results showed that the extraction of leaves crude polysaccharides (MOLP) by ultrasonic assisted cellulase enzymatic digestion was (17.03 ± 1.03)%, and the obtained MOLP was a crude polysaccharide with an average molecular weight (Mw) of 279.48 kDa, consisting of fucose, rhamnose, arabinose, galactose, glucose, xylose, mannose, galacturonic acid, and glucuronic acid. MOLP had an IC50 value of 8.02 mg/mL for α-glucosidase and scavenging activity against free radicals such as ABTS, DPPH, hydroxyl radicals, and superoxide anion with an IC50 value of 0.21 mg/mL 0.31 mg/mL 0.97 mg/mL 0.49 mg/mL. At the same time, MOLP significantly enhanced the glucose consumption, glycogen synthesis, CAT, SOD, GSH-Px activity, and reduced the MDA and ROS content in high glucose-induced insulin-resistant HepG2 (IR-HepG2) cells. This experiment improved the extraction rate of MOLP and demonstrated that MOLP has antioxidant activity and α-glucosidase inhibitory activity, which can alleviate the insulin resistance of high glucose-induced HepG2 cells. It provides partial data support for the possible hypoglycemic effect of MOLP by alleviating oxidative stress, and also provides new ideas for the in-depth study of basic research and industrial application of MOLP.
叶片是一种新的食物资源,富含功能性因子。多糖是叶片中重要的活性大分子。然而,存在提取率低、功能活性证据不足等问题。因此,本实验以叶片粉末为原料,采用单因素实验,利用 Plackett-Burman 试验筛选出显著影响的试验因素,采用响应面法优化多糖的提取工艺,初步探讨多糖的缓解胰岛素抵抗活性。结果表明,超声辅助纤维素酶酶解提取叶片粗多糖(MOLP)的得率为(17.03±1.03)%,得到的 MOLP 是一种平均分子量(Mw)为 279.48 kDa 的粗多糖,由岩藻糖、鼠李糖、阿拉伯糖、半乳糖、葡萄糖、木糖、甘露糖、半乳糖醛酸和葡萄糖醛酸组成。MOLP 对α-葡萄糖苷酶的 IC50 值为 8.02 mg/mL,对 ABTS、DPPH、羟自由基和超氧阴离子自由基的清除活性的 IC50 值分别为 0.21、0.31、0.97 和 0.49 mg/mL。同时,MOLP 能显著提高高糖诱导胰岛素抵抗 HepG2(IR-HepG2)细胞的葡萄糖消耗、糖原合成、CAT、SOD、GSH-Px 活性,降低 MDA 和 ROS 含量。本实验提高了 MOLP 的提取率,表明 MOLP 具有抗氧化活性和α-葡萄糖苷酶抑制活性,可缓解高糖诱导的 HepG2 细胞胰岛素抵抗,为 MOLP 通过缓解氧化应激可能具有的降血糖作用提供了部分数据支持,也为 MOLP 的基础研究和工业应用的深入研究提供了新的思路。