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The growing role of nanotechnology in combating infectious disease

机译:纳米技术在抵抗传染病中的作用日益增强

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The treatment and prevention of infectious diseases is a major part of both clinical and investigative medicine. As the use of conventional antibiotics rises, antimicrobial resistance patterns develop, necessitating the continuous need for newer and more effective therapies. Nanotechnology, defined as the production and application of materials in the nanoscale range (1-100nm), has been the focus of several investigations as a result of unique physical and chemical properties of nanomaterials. . Specifically, nanomaterials provide added benefits due to their small size; allowing for an increased ability to surpass most physiologic barriers and reach their intended targets, and high surface area-to-volume ratio, allowing for increased potential to interact with pathogen membranes and cell walls. This review focuses of the potential therapeutic and preventative applications of nanotechnology-based drug delivery systems in infectious disease.
机译:传染病的治疗和预防是临床和研究医学的重要组成部分。随着常规抗生素的使用的增加,抗菌素耐药性模式不断发展,因此不断需要更新和更有效的疗法。由于纳米材料独特的物理和化学特性,纳米技术被定义为纳米级(1-100nm)范围内材料的生产和应用,已经成为数项研究的重点。 。具体地说,由于纳米材料的小尺寸,它们提供了更多好处。可以提高克服大多数生理障碍并达到其预期目标的能力,并具有较高的表面积体积比,从而增加与病原体膜和细胞壁相互作用的潜力。这篇综述的重点是基于纳米技术的药物传递系统在传染病中的潜在治疗和预防应用。

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