食品科学 ›› 2026, Vol. 47 ›› Issue (15): 141-153.doi: 10.7506/spkx1002-6630-20260114-111

• 营养卫生 • 上一篇    下一篇

植物乳植杆菌发酵黄芪-葛根复方对HepG2细胞胰岛素抵抗的改善作用

赵艳,熊尧,吴宇箫,连丹虹,郭丽娜,邓世洲,陈涛,周爱梅   

  1. (1.华南农业大学食品学院,广东?广州 510640;2.广东南芯医疗科技有限公司,广东?广州 510535;3.广东省中医院临床营养科,广东?广州 510120)
  • 出版日期:2026-08-15 发布日期:2026-08-24
  • 基金资助:
    广东省省级科技计划项目(2023B0202010022)

Ameliorative Effect of Astragalus membranaceus and Pueraria lobata Co-fermented by Lactiplantibacillus plantarum on Insulin Resistance in HepG2 Cells

ZHAO Yan, XIONG Yao, WU Yuxiao, LIAN Danhong, GUO Lina, DENG Shizhou, CHEN Tao, ZHOU Aimei   

  1. (1. College of Food Science, South China Agricultural University, Guangzhou 510640, China; 2. Guangdong Longsee Biomedical Corporation, Guangzhou 510535, China; 3. Department of Clinical Nutrition, Guangdong Provincial Hospital of Chinese Medicine, Guangzhou 510120, China)
  • Online:2026-08-15 Published:2026-08-24

摘要: 为探究发酵对黄芪-葛根复方成分及功效的影响,以黄芪-葛根为原料进行菌株筛选及发酵工艺优化,并进一步对比发酵前后复方的理化性质、活性成分差异及抗氧化和胰岛素抵抗改善效果以评价其增效作用。结果表明,与未发酵黄芪-葛根复方相比,乳酸菌发酵显著改变其活性成分组成并增强其改善胰岛素抵抗的能力。工艺优化方面,发酵黄芪-葛根复方的最佳菌株为植物乳植杆菌NX-11,其最佳工艺参数为温度37 ℃、接菌量5.3%、发酵时间64 h、投料量2.4%、黄芪-葛根复配质量比2∶1;发酵后总酚、总黄酮含量显著提升(P<0.01、P<0.001),多糖、总皂苷含量显著下降(P<0.001、P<0.000 1);1,1-二苯基-2-三硝基苯肼自由基清除率和羟自由基清除率显著提高;非靶向代谢组学分析显示,8 种具有潜在降血糖活性的成分在发酵后显著增加,包括羟基苯乳酸、L-(-)-3-苯乳酸、山柰素、大豆皂苷βg、香豆雌酚、槲皮素、鹰嘴豆芽素A-7-O-(6”-丙二酰)葡萄糖苷、木犀草素-7-O-葡萄糖苷;细胞实验结果显示,与未发酵组相比,发酵黄芪-葛根复方高剂量组糖原含量增加36.55%、葡萄糖摄取量增加了44.05%、葡萄糖-6-磷酸酶活性降低了39.69%、高密度脂蛋白胆固醇水平上调了62.29%。综上,植物乳植杆菌NX-11发酵黄芪-葛根复方可有效提高其改善肝脏胰岛素抵抗和糖脂代谢紊乱的作用,本研究结果可为开发新一代功能性食品开辟新途径。

关键词: 黄芪;葛根;乳酸菌;发酵工艺;非靶向代谢组学;降血糖

Abstract: To investigate the effect of co-fermentation on Astragalus membranaceus and Pueraria lobata blends (AP), in terms of their chemical components and bioactivities, an appropriate starter was selected and the fermentation process was optimized. This study compared the differences in physicochemical properties and bioactive components before and after fermentation and evaluated the enhancing effect of fermentation on the antioxidant capacity of AP blends and their efficacy in ameliorating insulin resistance. The results showed that fermentation with lactic acid bacteria significantly altered the bioactive composition of AP blends and enhanced their ability to improve insulin resistance. Lactiplantibacillus plantarum NX-11 was identified as the optimal starter strain for fermenting AP blends, and the optimal process parameters were determined as follows: temperature 37 ℃, inoculum size 5.3%, fermentation time 64 h, material dosage 2.4%, and A. membranaceus/P. lobata ratio 2:1. After fermentation, the contents of total phenols and total flavonoids increased significantly (P < 0.01), whereas the contents of polysaccharides and total saponins decreased significantly (P < 0.01). The scavenging rates against 1,1-diphenyl-2-picrylhydrazyl (DPPH) and hydroxyl free radicals also significantly rose. Non-targeted metabolomics analysis revealed that the contents of eight potential hypoglycemic components including 4-hydroxyphenyllactic acid, L-(–)-3-phenyllactic acid, kaempferol, soyasaponin βg, coumestrol, quercetin, biochanin A-7-O-(6”-malonyl) glucoside, and luteolin-7-O-glucoside significantly increased after fermentation. Cell experiments showed that compared with the unfermented AP blend, the high-dose fermented AP blend increased the glycogen content by 36.55% and glucose uptake by 44.05%, decreased glucose-6-phosphatase (G-6-Pase) activity by 39.69%, and elevated high-density lipoprotein cholesterol (HDL-C) levels by 62.29%. In conclusion, fermentation with L. plantarum NX-11 can effectively enhance the efficacy of AP blends in ameliorating hepatic insulin resistance and glucose-lipid metabolic disorders. This finding opens up a new avenue for the development of a new generation of functional foods.

Key words: Astragalus membranaceus; Pueraria lobata; lactic acid bacteria; fermentation technology; non-targeted metabolomics; hypoglycemia

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