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纳米脂肪颗粒——脂质纳米颗粒在抗菌治疗中的优势

Nano-fats for bugs: the benefits of lipid nanoparticles for antimicrobial therapy.

机构信息

Clinical and Health Science, University of South Australia, City East Campus, Adelaide, SA, 5000, Australia.

The Basil Hetzel Institute for Translational Health Research, Woodville, SA, 5011, Australia.

出版信息

Drug Deliv Transl Res. 2021 Aug;11(4):1598-1624. doi: 10.1007/s13346-021-00921-w. Epub 2021 Mar 5.

Abstract

Bacterial infections are an imminent global healthcare threat evolving from rapidly advancing bacterial defence mechanisms that antibiotics fail to overcome. Antibiotics have been designed for systemic administration to target planktonic bacteria, leading to difficulties in reaching the site of localized bacterial infection and an inability to overcome the biological, chemical and physical barriers of bacteria, including biofilms, intracellular infections and antimicrobial resistance. The amphiphilic, biomimetic and antimicrobial properties of lipids provide a promising toolbox to innovate and advance antimicrobial therapies, overcoming the barriers presented by bacteria in order to directly and effectively treat recalcitrant infections. Nanoparticulate lipid-based drug delivery systems can enhance antibiotic permeation through the chemical and physical barriers of bacterial infections, as well as fuse with bacterial cell membranes, release antibiotics in response to bacteria and act synergistically with loaded antibiotics to enhance the total antimicrobial efficacy. This review explores the barriers presented by bacterial infections that pose bio-pharmaceutical challenges to antibiotics and how different structural and functional mechanisms of lipids can enhance antimicrobial therapies. Different nanoparticulate lipid-based systems are presented as valuable drug delivery systems to advance the efficacy of antibiotics, including liposomes, liquid crystalline nanoparticles, solid lipid nanoparticles, nanostructured lipid carriers and lipid nanocarriers. In summary, liquid crystalline nanoparticles are emerging with the greatest potential for clinical applications and commercial success as an "all-rounder" advanced lipid-based antimicrobial therapy that overcomes the multiple biological, chemical and physical barriers of bacteria.

摘要

细菌感染是一种迫在眉睫的全球健康威胁,源于抗生素无法克服的快速进化的细菌防御机制。抗生素被设计用于全身给药以靶向浮游细菌,这导致难以到达局部细菌感染部位,并且无法克服细菌的生物、化学和物理屏障,包括生物膜、细胞内感染和抗微生物耐药性。脂质的两亲性、仿生和抗微生物特性为创新和推进抗微生物疗法提供了有前途的工具,克服了细菌带来的障碍,以便直接有效地治疗顽固性感染。基于纳米颗粒的脂质药物递送系统可以增强抗生素通过细菌感染的化学和物理屏障的渗透,并且可以与细菌细胞膜融合,响应细菌释放抗生素,并与负载的抗生素协同作用,增强总抗微生物功效。本文综述了细菌感染给抗生素带来的生物制药挑战,以及脂质的不同结构和功能机制如何增强抗微生物疗法。不同的基于纳米颗粒的脂质系统被提出作为有价值的药物递送系统,以提高抗生素的功效,包括脂质体、液晶纳米颗粒、固体脂质纳米颗粒、纳米结构脂质载体和脂质纳米载体。总之,液晶纳米颗粒作为一种“全能型”先进的基于脂质的抗微生物疗法,具有最大的临床应用和商业成功潜力,克服了细菌的多种生物、化学和物理屏障。

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