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March 21, 2026Chemistry & Biodiversity2 citations

Effects of Microwave Extraction Power on Physicochemical Properties, Structure, and Biological Activity of Polysaccharides From Ginseng

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TLTing LiuPHPeng HuMBMuhan Bi

Key Points

  • This research aims to determine how different microwave powers affect the structure and biological activity of ginseng polysaccharides.
  • Varied microwave power levels from 300 to 700 W
  • Used spectroscopy and chromatography for analysis
  • Evaluated antioxidant, antitumor, and immunomodulatory activities
  • Polysaccharide yield increased from 40.15% to 47.97% at 700 W
  • Content levels rose from 85.77% to 88.60%
  • IC50 values for ·OH scavenging ability decreased from 7.67 to 8.53 mg/mL
  • HeLa cell inhibition rates varied from 26.78% to 1.08% at 10 mg/mL polysaccharide concentration
  • Release of nitric oxide differed with values of 2.23 and 1.82 µmol/L at 250 µg/mL concentration

Abstract

Panax ginseng is a well-known medicinal and edible plant rich in polysaccharides. However, research on the impact of microwave power (MP) on ginseng polysaccharides (GPs) remains limited. This study investigated the effects of varying MP (300-700 W) on the structure and bioactivity of microwave-extracted polysaccharide (MEP) using spectroscopy, and chromatography, and by evaluating antioxidant, antitumor, and immunomodulatory activities. The results were determined under the extraction conditions of 300 and 700 W that showed the polysaccharide yield (40.15% vs. 47.97%), content (85.77% vs. 88.60%), and the IC50 values for ·OH scavenging ability (7.67 ± 0.25 mg/mL vs. 8.53 ± 0.18 mg/mL). The inhibition rates against HeLa cells at a polysaccharide concentration of 10 mg/mL were 26.78% and 1.08%, respectively. The release of nitric oxide (NO) at a polysaccharide concentration of 250 µg/mL was 2.23 and 1.82 µmol/L, respectively. Notably, the polysaccharides obtained at 700 W exhibited weak bioactivity, primarily due to severely damaged structure characterized by extensive O-glycosidic bond cleavage, a significant reduction in molecular weight, and the worst thermal stability. Overall, these findings emphasize how MP affects polysaccharide structure and function, offering critical insights for processing other plant-derived polysaccharides.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/69be372b6e48c4981c676a2ahttps://doi.org/10.1002/cbdv.202503344
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