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利用鱼类加工工业的副产物作为富含生物活性肽的蛋白质水解物的来源。

Exploiting of Secondary Raw Materials from Fish Processing Industry as a Source of Bioactive Peptide-Rich Protein Hydrolysates.

机构信息

Network for Fish Quality Management & Sustainable Fishing (NETFISH), The Marine Products Export Development Authority (MPEDA), Navi Mumbai 410206, Maharashtra, India.

Department of Post Harvest Management of Meat, Poultry and Fish, Post Graduate Institute of Post-Harvest Management, Dr. Balasaheb Sawant Konkan Krishi Vidyapeeth, Roha 402109, Maharashtra, India.

出版信息

Mar Drugs. 2021 Aug 25;19(9):480. doi: 10.3390/md19090480.

Abstract

Developing peptide-based drugs are very promising to address many of the lifestyle mediated diseases which are prevalent in a major portion of the global population. As an alternative to synthetic peptide-based drugs, derived peptides from natural sources have gained a greater attention in the last two decades. Aquatic organisms including plants, fish and shellfish are known as a rich reservoir of parent protein molecules which can offer novel sequences of amino acids in peptides, having unique bio-functional properties upon hydrolyzing with proteases from different sources. However, rather than exploiting fish and shellfish stocks which are already under pressure due to overexploitation, the processing discards, regarded as secondary raw material, could be a potential choice for peptide based therapeutic development strategies. In this connection, we have attempted to review the scientific reports in this area of research that deal with some of the well-established bioactive properties, such as antihypertensive, anti-oxidative, anti-coagulative, antibacterial and anticarcinogenic properties, with reference to the type of enzymes, substrate used, degree of particular bio-functionality, mechanism, and wherever possible, the active amino acid sequences in peptides. Many of the studies have been conducted on hydrolysate (crude mixture of peptides) enriched with low molecular bioactive peptides. In vitro and in vivo experiments on the potency of bioactive peptides to modulate the human physiological functions beneficially have demonstrated that these peptides can be used in the prevention and treatment of non-communicable lifestyle mediated diseases. The information synthesized under this review could serve as a point of reference to drive further research on and development of functionally active therapeutic natural peptides. Availability of such scientific information is expected to open up new zones of investigation for adding value to underutilized secondary raw materials, which in turn paves the way for sustainability in fish processing. However, there are significant challenges ahead in exploring the fish waste as a source of bioactive peptides, as it demands more studies on mechanisms and structure-function relationship understanding as well as clearance from regulatory and statutory bodies before reaching the end user in the form of supplement or therapeutics.

摘要

开发基于肽的药物对于解决许多在全球大部分人口中普遍存在的生活方式介导的疾病非常有前景。作为合成肽类药物的替代品,源自天然来源的衍生肽在过去二十年中受到了更多关注。水生生物,包括植物、鱼类和贝类,被认为是亲代蛋白质分子的丰富来源,可以提供肽中独特的氨基酸序列,具有独特的生物功能特性,在不同来源的蛋白酶水解后。然而,与其利用已经因过度捕捞而面临压力的鱼类和贝类资源,加工废弃物,被视为次要原料,可能是基于肽的治疗开发策略的潜在选择。在这方面,我们试图综述该研究领域的科学报告,这些报告涉及一些已确立的生物活性特性,如降压、抗氧化、抗凝血、抗菌和抗癌特性,参考酶的类型、使用的底物、特定生物功能的程度、机制,以及在可能的情况下,肽中的活性氨基酸序列。许多研究都是在富含低分子生物活性肽的水解物(肽的粗混合物)上进行的。生物活性肽调节人体生理功能的体外和体内实验表明,这些肽可用于预防和治疗非传染性生活方式介导的疾病。本综述综合的信息可以作为进一步研究和开发功能性活性治疗天然肽的参考点。这种科学信息的可用性有望为利用未充分利用的次要原料开辟新的研究领域,从而为鱼类加工的可持续性铺平道路。然而,在探索鱼类废弃物作为生物活性肽的来源方面,仍然面临着重大挑战,因为在将其作为补充剂或治疗剂形式到达最终用户之前,需要进行更多的关于机制和结构-功能关系的理解以及来自监管和法定机构的清除方面的研究。

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