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Microfluidics for Antibiotic Susceptibility and Toxicity Testing

机译:抗生素敏感性和毒性测试的微流控

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The recent emergence of antimicrobial resistance has become a major concern for worldwide policy makers as very few new antibiotics have been developed in the last twenty-five years. To prevent the death of millions of people worldwide, there is an urgent need for a cheap, fast and accurate set of tools and techniques that can help to discover and develop new antimicrobial drugs. In the past decade, microfluidic platforms have emerged as potential systems for conducting pharmacological studies. Recent studies have demonstrated that microfluidic platforms can perform rapid antibiotic susceptibility tests to evaluate antimicrobial drugs’ efficacy. In addition, the development of cell-on-a-chip and organ-on-a-chip platforms have enabled the early drug testing, providing more accurate insights into conventional cell cultures on the drug pharmacokinetics and toxicity, at the early and cheaper stage of drug development, i.e., prior to animal and human testing. In this review, we focus on the recent developments of microfluidic platforms for rapid antibiotics susceptibility testing, investigating bacterial persistence and non-growing but metabolically active (NGMA) bacteria, evaluating antibiotic effectiveness on biofilms and combinatorial effect of antibiotics, as well as microfluidic platforms that can be used for in vitro antibiotic toxicity testing.
机译:由于最近二十五年中很少开发出新的抗生素,因此最近出现的抗菌素耐药性已成为全球决策者关注的主要问题。为了防止全世界数百万人的死亡,迫切需要一套廉价,快速,准确的工具和技术,以帮助发现和开发新的抗微生物药物。在过去的十年中,微流体平台已经成为进行药理研究的潜在系统。最近的研究表明,微流控平台可以执行快速的抗生素敏感性测试,以评估抗菌药物的功效。此外,片上细胞和片上器官平台的开发使早期药物测试成为可能,从而在早期和廉价阶段提供了对常规细胞培养物有关药物药代动力学和毒性的更准确的见解。药物研发,即在动物和人类测试之前。在这篇综述中,我们关注于快速抗生素敏感性测试的微流体平台的最新发展,研究细菌的持久性和非生长但代谢活跃的(NGMA)细菌,评估抗生素对生物膜的有效性和抗生素的组合作用,以及微流体平台可用于体外抗生素毒性测试。

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