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Bacteriocins: Limiting Factors to Optimum Activity

机译:细菌素:最佳活性的限制因素

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Bacteriocins are described as ribosomally synthesized antimicrobial peptides lethal to bacteria other than the producing strain. They are the most abundant of antimicrobial compounds produced by bacteria. These antimicrobial peptides offer an advantage over by targeting specific organisms and are generally regarded as safe for humans. The crude bacteriocins have been found to be affected by the presence of proteolytic enzymes like trypsin, temperature, pH, salts, and ions like copper or iron. These antimicrobial agents are gaining attention not only as alternative therapeutics in the pharmaceutical industry but also as a bio-preservative in food industries and in agriculture for control of bovine mastitis pathogens. These applications fundamentally depend on their antimicrobial effects and a vast understanding of their activity and factors inhibiting their mode of action. In this review factors perceived to be consequential to either activating, inactivating or maintaining the optimal activity of bacteriocins were identified and discussed. This comprehensive review delved into these factors with the aim of in-depth understanding of bacteriocins and their application for extensive exploitation. The remits of this detailed review include aspects of re-assuring public faith in bacteriocins and providing adequate information to users on their activity under the various condition in order to make informed choices before use. This review will help in restoring confidence in bacteriocins as a substitute to conventional antibiotics presents a considerable commercial challenge to the pharmaceutical industry. This indulgence will help develop innovative strategies towards the industrial application of bacteriocins.
机译:细菌素被描述为核糖体合成的抗菌肽,对生产菌株以外的细菌具有致命性。它们是细菌产生的最丰富的抗菌化合物。这些抗微生物肽相对于靶向特定生物体具有优势,通常被认为对人类安全。已发现粗制细菌素受蛋白水解酶(如胰蛋白酶),温度,pH,盐和离子(如铜或铁)的影响。这些抗微生物剂不仅在制药工业中作为替代疗法而受到关注,而且在食品工业和农业中作为控制牛乳腺炎病原体的生物防腐剂也受到关注。这些应用从根本上取决于它们的抗菌作用以及对其活性和抑制其作用方式的因素的广泛理解。在本综述中,鉴定并讨论了被认为与激活,灭活或维持细菌素最佳活性相关的因素。这篇全面的综述对这些因素进行了研究,目的是深入了解细菌素及其在广泛开发中的应用。这份详细评论的内容包括重新保证公众对细菌素的信心,并向使用者提供有关其在各种条件下的活动的足够信息,以便在使用前做出明智的选择。这篇综述将有助于恢复人们对细菌素替代传统抗生素的信心,这对制药业提出了巨大的商业挑战。放任自流将有助于开发创新策略,将其应用于细菌素的工业应用。

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