Biofunctionalization of Endolysins with Oligosacharides: Formulation of Therapeutic Agents to Combat Multi-Resistant Bacteria and Potential Strategies for Their Application

C. Camacho-González, C. Cardona‐Félix, V. Zamora-Gasga, A. Pérez-Larios, J. Sánchez-Burgos
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Abstract

In the aquaculture sector, the biofunctionalization of biomaterials is discussed using materials from algae and analyzed as a possible potential strategy to overcome the challenges that hinder the future development of the application of endolysins in this field. Derived from years of analysis, endolysins have recently been considered as potential alternative therapeutic antibacterial agents, due to their attributes and ability to combat multi-resistant bacterial cells when applied externally. On the other hand, although the aquaculture sector has been characterized by its high production rates, serious infectious diseases have led to significant economic losses that persist to this day. Although there are currently interesting data from studies under in vitro conditions on the application of endolysins in this sector, there is little or no information on in vivo studies. This lack of analysis can be attributed to the relatively low stability of endolysins in marine conditions and to the complex gastrointestinal conditions of the organisms. This review provides updated information regarding the application of endolysins against multi-resistant bacteria of clinical and nutritional interest, previously addressing their important characteristics (structure, properties and stability). In addition, regarding the aquaculture sector, the biofunctionalization of biomaterials is discussed using materials from algae and analyzed as a possible potential strategy to overcome the challenges that hinder the future development of the application of endolysins in this field.
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寡糖内溶素的生物功能化:对抗多重耐药细菌的治疗剂配方及其应用的潜在策略
在水产养殖领域,使用藻类材料讨论了生物材料的生物功能化,并分析了作为克服阻碍内溶素在该领域应用的未来发展的挑战的可能潜在策略。经过多年的分析,内溶素最近被认为是潜在的替代治疗抗菌剂,因为它们的特性和在外部应用时对抗多重耐药细菌细胞的能力。另一方面,尽管水产养殖部门的特点是产量高,但严重的传染病造成的重大经济损失一直持续到今天。虽然目前有关于内溶素在这一领域应用的体外研究的有趣数据,但体内研究的信息很少或没有。这种分析的缺乏可归因于内毒素在海洋条件下相对较低的稳定性以及生物体复杂的胃肠道条件。这篇综述提供了关于内溶素在临床和营养方面对多重耐药细菌的应用的最新信息,之前讨论了它们的重要特征(结构,性质和稳定性)。此外,在水产养殖领域,利用藻类材料讨论了生物材料的生物功能化,并分析了作为克服阻碍内溶素在该领域应用的未来发展的挑战的可能的潜在策略。
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