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Bio- and Nanotechnology as the Key for Clinical Application of Salivary Peptide Histatin: A Necessary Advance

机译:生物和纳米技术作为唾液肽组织蛋白临床应用的关键:必要的进展

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摘要

is a common microorganism of human’s microbiota and can be easily found in both respiratory and gastrointestinal tracts as well as in the genitourinary tract. Approximately 30% of people will be infected by during their lifetime. Due to its easy adaptation, this microorganism started to present high resistance to antifungal agents which is associated with their indiscriminate use. There are several reports of adaptive mechanisms that this species can present. Some of them are intrinsic alteration in drug targets, secretion of extracellular enzymes to promote host protein degradation and efflux receptors that lead to a diminished action of common antifungal and host’s innate immune response. The current review aims to bring promising alternatives for the treatment of candidiasis caused mainly by . One of these alternatives is the use of antifungal peptides (AFPs) from the Histatin family, like histatin-5. Besides that, our focus is to show how nanotechnology can allow the application of these peptides for treatment of this microorganism. In addition, our intention is to show the importance of nanoparticles (NPs) for this purpose, which may be essential in the near future.
机译:是人类微生物群的常见微生物,可以在呼吸系统和胃肠道以及泌尿生殖道中容易地发现。在终生期间,大约30%的人将被感染。由于其易于适应,该微生物开始对抗真菌剂的高抗性呈现出与其不分体使用的抗真菌剂。有几个关于这种物种可以存在的自适应机制的报告。其中一些是药物靶标的内在改变,细胞外酶的分泌,以促进宿主蛋白质降解和流出受体,导致常见的抗真菌和宿主的先天免疫反应的减少。目前的审查旨在为主要由此造成候选人的候选症来带来有希望的替代品。其中一种替代方案是使用来自组织素家族的抗真菌肽(AFP),如组织素-5。除此之外,我们的重点是展示纳米技术如何允许这些肽的应用以治疗这种微生物。此外,我们的目的是展示纳米颗粒(NPS)为此目的的重要性,这可能在不久的将来是必不可少的。

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