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降尿酸益生菌发酵苹果汁的生物转化特征及其通过调节肠道菌群和代谢途径改善高尿酸血症的潜在调控机制。

Biotransformation characteristics of urate-lowering probiotic fermented apple juice and potential regulatory mechanisms for ameliorating hyperuricemia via mediating gut microbiota and metabolic pathways.

机构信息

College of Food Science and Engineering, Northwest A&F University, 712100 Yangling, Shaanxi, People's Republic of China.

College of Food Science and Engineering, Northwest A&F University, 712100 Yangling, Shaanxi, People's Republic of China.

出版信息

Food Chem. 2024 Dec 1;460(Pt 1):140462. doi: 10.1016/j.foodchem.2024.140462. Epub 2024 Jul 16.

DOI:10.1016/j.foodchem.2024.140462
PMID:39032298
Abstract

Hyperuricemia has evolved into a global public health concern, and applying probiotics fermented apple juice holds promise for alleviating this condition. This study aimed to investigate the biotransformation and metabolic features of urate-lowering probiotics sequentially fermented dealcoholized apple juice (PSFA), and assess its ameliorative effects and potential mechanisms on hyperuricemia mice. Results showed that CICC 6074 and 20,292 possessed excellent purine, nucleotide and nucleoside degradation and acid and bile salt resistance; sequential fermentation decreased the fructose in apple juice, and viable counts reached 3.76 × 10 CFU/mL. Histopathological analysis showed that PSFA ameliorated kidney damage in hyperuricemia mice. Furthermore, PSFA significantly reduced Urea, Creatinine and Uric acid levels in hyperuricemia mice; and inhibited xanthine oxidase activity and the expression of pro-inflammatory factors. Importantly, PSFA reversed gut microbiota dysbiosis and raised the abundance of beneficial bacteria (Lactobacillush, Faecalibaculum and Lachnospiraceae_NK4A136_group). KEGG and COG functional prediction results revealed that the potential mechanism of PSFA to ameliorate hyperuricemia may be lipid metabolism and glycolysis pathways.

摘要

高尿酸血症已成为全球公共健康问题,应用益生菌发酵苹果汁有望缓解这一状况。本研究旨在探讨降尿酸益生菌顺序发酵脱醇苹果汁(PSFA)的生物转化和代谢特征,并评估其对高尿酸血症小鼠的改善作用及其潜在机制。结果表明,CICC 6074 和 20,292 具有出色的嘌呤、核苷酸和核苷降解以及酸和胆盐抗性;顺序发酵降低了苹果汁中的果糖含量,活菌数达到 3.76×10 CFU/mL。组织病理学分析表明,PSFA 改善了高尿酸血症小鼠的肾脏损伤。此外,PSFA 显著降低了高尿酸血症小鼠的尿素、肌酐和尿酸水平;并抑制黄嘌呤氧化酶活性和促炎因子的表达。重要的是,PSFA 逆转了肠道微生物失调,提高了有益菌(乳杆菌、粪杆菌和lachnospiraceae_NK4A136_group)的丰度。KEGG 和 COG 功能预测结果表明,PSFA 改善高尿酸血症的潜在机制可能是脂代谢和糖酵解途径。

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