Preparation and Efficacy Evaluation of Antihyperuricemic Peptides from Marine Sources

高尿酸血症 黄嘌呤氧化酶 生物利用度 蛋白酵素 生物化学 无脊椎动物 生物 计算生物学 尿酸 化学 药理学 酶 渔业
作者
Kun Qiao,Qianhui Huang,Tongtong Sun,Bei Chen,Wenchuan Huang,Yongchang Su,Hetong Lin,Zhiyu Liu
出处
期刊:Nutrients [Multidisciplinary Digital Publishing Institute]
卷期号:16 (24): 4301-4301 被引量:3
标识
DOI:10.3390/nu16244301
摘要

Marine-derived foods, often called blue foods, are promising sustainable alternatives to conventional food sources owing to their abundant amino acids and high protein content. Current treatments for hyperuricemia, a chronic condition attributed to purine metabolism disorders, are associated with various side effects. Novel peptide xanthine oxidase inhibitors have been discovered in the hydrolyzed products of marine fish and invertebrate proteins, which have demonstrated promising therapeutic potential by reducing uric acid levels in vitro and in vivo. This review explores the potential therapeutic effects of xanthine oxidase inhibitors derived from marine fish and invertebrates, summarizes the methods for extracting bioactive peptides from marine organisms, and emphasizes the impact of different proteases on the structure-activity relationship of bioactive peptides. The hypouricemic effects of these bioactive peptides warrant further verification. There is consensus on the in vitro chemical methods used to verify the xanthine oxidase inhibitory effects of these peptides. Considering several cell and animal model development strategies, this review summarizes several highly recognized modeling methods, proposes strategies to improve the bioavailability of bioactive peptides, and advocates for a diversified evaluation system. Although the screening and evaluation methods for antihyperuricemic peptides have been shown to be feasible across numerous studies, they are not optimal. This review examines the deficiencies in bioavailability, synthesis efficiency, and evaluation mechanisms in terms of their future development and proposes potential solutions to address these issues. This review provides a novel perspective for the exploration and application of marine-derived hypouricemic bioactive peptides.
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