College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China.
The Supervision, Inspection and Testing Center of Genetically Modified Organisms, Ministry of Agriculture, Beijing 100083, China.
Toxins (Basel). 2022 Nov 16;14(11):795. doi: 10.3390/toxins14110795.
Mycotoxins pose significant risks to humans and livestock. In addition, contaminated food- and feedstuffs can only be discarded, leading to increased economic losses and potential ecological pollution. Mycotoxin removal and real-time toxin level monitoring are effective approaches to solve this problem. As a hot research hotspot, small peptides derived from phage display peptide libraries, combinatorial peptide libraries, and rational design approaches can act as coating antigens, competitive antigens, and anti-immune complexes in immunoassays for the detection of mycotoxins. Furthermore, as a potential approach to mycotoxin degradation, small peptides can mimic the natural enzyme catalytic site to construct artificial enzymes containing oxidoreductases, hydrolase, and lyase activities. In summary, with the advantages of mature synthesis protocols, diverse structures, and excellent biocompatibility, also sharing their chemical structure with natural proteins, small peptides are widely used for mycotoxin detection and artificial enzyme construction, which have promising applications in mycotoxin degradation. This paper mainly reviews the advances of small peptides in the detection of mycotoxins, the construction of peptide-based artificial enzymes, and their potential applications in mycotoxin control.
真菌毒素对人类和牲畜构成重大风险。此外,受污染的食品和饲料只能被丢弃,导致经济损失增加和潜在的生态污染。真菌毒素去除和实时毒素水平监测是解决这一问题的有效方法。作为一个热门的研究热点,噬菌体展示肽库、组合肽库和合理设计方法衍生的小肽可以作为免疫分析中的包被抗原、竞争抗原和抗免疫复合物,用于检测真菌毒素。此外,作为真菌毒素降解的一种潜在方法,小肽可以模拟天然酶的催化位点,构建含有氧化还原酶、水解酶和裂合酶活性的人工酶。总之,小肽具有成熟的合成方案、多样的结构和优异的生物相容性等优点,而且与天然蛋白质具有相似的化学结构,因此被广泛用于真菌毒素检测和人工酶构建,在真菌毒素降解方面具有广阔的应用前景。本文主要综述了小肽在真菌毒素检测、基于肽的人工酶构建及其在真菌毒素控制中的潜在应用方面的研究进展。