4.7 Article

Ultrasonic-Cellulase Synergistic Extraction of Crude Polysaccharides from Moringa oleifera Leaves and Alleviation of Insulin Resistance in HepG2 Cells

Journal

Publisher

MDPI
DOI: 10.3390/ijms232012405

Keywords

Moringa oleifera leaves crude polysaccharides; ultrasonic-cellulase extraction; response surface methodology; antioxidant; insulin resistance

Funding

  1. Major Project of Science and Technology Department of Yunnan Province [202002AA100005, 202102AE090027-2]
  2. Cassava Industrial Technology System of China [CARS-11-YNTY]
  3. Yunnan Province Ten Thousand Plan Industrial Technology Talents project [YNWR-CYJS-2020-010]
  4. R&D and application of key technologies for specialty new functional and nutritional health foods [2019ZG00905]

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This study demonstrated that Moringa oleifera leaf polysaccharides (MOLP) have antioxidant activity and α-glucosidase inhibitory activity, and can alleviate high glucose-induced insulin resistance. The results provide new ideas for the in-depth study of MOLP in basic research and industrial application.
Moringa oleifera 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 Moringa oleifera 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 alpha-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 alpha-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.

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