来自海洋生物的生物活性肽

Peixin Wang, Yi Zhang, Jiamiao Hu, Bee Kang Tan
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引用次数: 0

摘要

海洋生物是前景广阔的生物活性肽资源,具有抗氧化、抗菌、降血压、抗疲劳和免疫调节等多种生物活性。尽管有关海洋生物活性肽的研究很多,但有关海洋生物活性肽的生产技术和生物应用等新兴趋势的综合性综述文章却非常缺乏。在这篇综述中,我们总结了与海洋生物活性肽有关的主要研究和发现,包括其生产、纯化、生物活性、基于纳米技术的策略及其潜在应用等方面。目前,酶水解是生产海洋生物活性肽最常用的方法;下游纯化过程通常包括多种纯化技术的组合。由于具有多种生物特性,海洋肽作为食品、制药和化妆品行业的活性成分,在工业应用方面引起了极大的兴趣。此外,纳米乳液、纳米脂质体和微乳液等封装策略有望显著提高海洋肽的生物利用率和生物活性。未来的研究还应优先考虑通过体外和体内动物模型对海洋肽的潜在健康益处进行系统鉴定和验证,同时开展人体临床试验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioactive Peptides from Marine Organisms
Marine organisms represent promising bioactive peptide resources with diverse biological activities such as antioxidant, antimicrobial, antihypertensive, anti-fatigue, and immunoregulatory activities. Despite many studies on marine bioactive peptides, there is a dearth of comprehensive review articles on the emerging trends that encompass the production techniques and the biological applications of marine bioactive peptides. In this review, we summarize the major research and findings related to marine bioactive peptides, encompassing aspects of their production, purification, biological activities, nanotechnology-based strategies, and their potential applications. Enzymatic hydrolysis currently stands out as the most commonly used method for producing marine bioactive peptides; the downstream purification process often includes a combination of multiple purification techniques. Due to their diverse biological properties, marine peptides have garnered considerable interest for industrial applications as active ingredients in the food, pharmaceutical, and cosmetics industries. Additionally, the incorporation of encapsulation strategies such as nano emulsion, nanoliposome, and microemulsions holds promise for significantly enhancing the bioavailability and bioactivity of marine peptides. Future research should also prioritize the systematic identification and validation of the potential health benefits of marine peptides by both in vitro and in vivo animal models, along with the conduct of human clinical trials.
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