Department of Food Science, Fu Jen Catholic University, New Taipei City 242 05, Taiwan.
Department of Food Science, Fu Jen Catholic University, New Taipei City 242 05, Taiwan.
Food Res Int. 2021 Sep;147:110468. doi: 10.1016/j.foodres.2021.110468. Epub 2021 May 31.
Marine peptides are one of the richest sources of structurally diverse bioactive compounds and a considerable attention has been drawn towards their production and bioactivity. However, there is a paucity in consolidation of emerging trends encompassing both production techniques and biological application. Herein, we intend to review the recent advancements on different production, purification and identification technologies used for marine peptides along with presenting their potential health benefits. Bibliometric analysis revealed a growing number of scientific publications on marine peptides (268 documents per year) with both Asia (37.2%) and Europe (33.1%) being the major contributors. Extraction and purification by ultrafiltration and enzymatic hydrolysis, followed by identification by chromatographic techniques coupled with an appropriate detector could yield a high content of peptides with improved bioactivity. Moreover, the multifunctional health benefits exerted by marine peptides including anti-microbial, antioxidant, anti-hypertension, anti-diabetes and anti-cancer along with their structure-activity relationship were presented. The future perspective on marine peptide research should focus on finding improved separation and purification technologies with enhanced selectivity and resolution for obtaining more novel peptides with high yield and low cost. In addition, by employing encapsulation strategies such as nanoemulsion and nanoliposome, oral bioavailability and bioactivity of peptides can be greatly enhanced. Also, the potential health benefits that are demonstrated by in vitro and in vivo models should be validated by conducting human clinical trials for a technology transfer from bench to bedside.
海洋肽是结构多样的生物活性化合物的最丰富来源之一,其生产和生物活性受到了相当大的关注。然而,对于涵盖生产技术和生物应用的新兴趋势的综合研究仍然较少。在此,我们旨在回顾不同生产、纯化和鉴定技术的最新进展,这些技术用于海洋肽,同时介绍其潜在的健康益处。文献计量分析显示,有关海洋肽的科学出版物数量不断增加(每年 268 篇),亚洲(37.2%)和欧洲(33.1%)是主要贡献者。通过超滤和酶解进行提取和纯化,然后通过与适当的检测器相结合的色谱技术进行鉴定,可以产生具有改善生物活性的高肽含量。此外,还介绍了海洋肽具有的多种健康益处,包括抗菌、抗氧化、抗高血压、抗糖尿病和抗癌,以及它们的结构-活性关系。海洋肽研究的未来展望应侧重于寻找改进的分离和纯化技术,提高选择性和分辨率,以获得更多具有高产率和低成本的新型肽。此外,通过采用纳米乳液和纳米脂质体等包封策略,可以大大提高肽的口服生物利用度和生物活性。同样,通过进行人体临床试验,从实验室到临床的技术转化,可以验证体外和体内模型所证明的潜在健康益处。