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Potential Novel Food-Related and Biomedical Applications of Nanomaterials Combined with Bacteriocins

机译:纳米材料与细菌杂菌联合的潜在新型食品相关和生物医学应用

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摘要

Bacteriocins are antimicrobial peptides or proteinaceous materials produced by bacteria against pathogens. These molecules have high efficiency and specificity and are equipped with many properties useful in food-related applications, such as food preservatives and additives, as well as biomedical applications, such as serving as alternatives to current antibacterial, antiviral, anticancer, and antibiofilm agents. Despite their advantages as alternative therapeutics over existing strategies, several limitations of bacteriocins, such as the high cost of isolation and purification, narrow spectrum of activity, low stability and solubility, and easy enzymatic degradation, need to be improved. Nanomaterials are promising agents in many biological applications. They are widely used in the conjugation or decoration of bacteriocins to augment the activity of bacteriocins or reduce problems related to their use in biomedical applications. Therefore, bacteriocins combined with nanomaterials have emerged as promising molecules that can be used in various biomedical applications. This review highlights the features of bacteriocins and their limitations in biomedical applications and provides a detailed overview of the uses of different nanomaterials in improving the limitations. Our review focuses on the potential applications of nanomaterials combined with bacteriocins as new designer molecules for use in future therapeutic strategies.
机译:菌丝是通过细菌对病原体产生的抗微生物肽或蛋白质材料。这些分子具有高效率和特异性,并配备了许多可用于食物相关的应用的性质,例如食品防腐剂和添加剂,以及生物医学应用,例如用作目前抗菌,抗病毒,抗癌和抗抗体剂的替代品。尽管其优势作为现有策略的替代治疗方法,但含有含有的几个局限性,例如高成本的分离和纯化,窄的活性光谱,低稳定性和溶解性,并且易于酶促降解,需要改善。纳米材料是许多生物学应用中的承诺药剂。它们被广泛用于菌丝素的缀合或装饰中,以增加菌丝病的活性或减少与其在生物医学应用中使用相关的问题。因此,与纳米材料结合的菌丝素已成为可用于各种生物医学应用的有前途的分子。本综述突出了细菌素的特征及其在生物医学应用中的局限性,并提供了不同纳米材料在提高限制方面的用途的详细概述。我们的评论重点介绍纳米材料的潜在应用与菌丝群相结合,作为新的设计者分子,用于未来的治疗策略。

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