首页> 外文期刊>Analytical chemistry >cAST: Capillary-Based Platform for Real-Time Phenotypic Antimicrobial Susceptibility Testing
【24h】

cAST: Capillary-Based Platform for Real-Time Phenotypic Antimicrobial Susceptibility Testing

机译:铸造:基于毛细管的实时表型抗微生物易感测试平台

获取原文
获取原文并翻译 | 示例
           

摘要

Antimicrobial resistance is recognized as one of the greatest emerging threats to public health. Antimicrobial resistant (AMR) microorganisms affect nearly 2 million people a year in the United States alone and place an estimated $20 billion burden on the healthcare system. The rise of AMR microorganisms can be attributed to a combination of overprescription of antimicrobials and a lack of accessible diagnostic methods. Delayed diagnosis is one of the primary reasons for empiric therapy, and diagnostic methods that enable rapid and accurate results are highly desirable to facilitate evidence-based treatment. This is particularly true for clinical situations at the point-of-care where access to state-of-the-art diagnostic equipment is scarce. Here, we present a capillary-based antimicrobial susceptibility testing platform (cAST), a unique approach that offers accelerated assessment of antimicrobial susceptibility in a low-cost and simple testing format. cAST delivers an expedited time-to-readout by means of optical assessment of bacteria incubated in a small capillary form factor along with a resazurin dye. cAST was designed using a combination of off-the-shelf and custom 3D-printed parts, making it extremely suitable for use in resource-limited settings. We demonstrate that growth of bacteria in cAST is approximately 25% faster than in a conventional microplate, further validate the diagnostic performance with clinical isolates, and show that cAST can deliver accurate antimicrobial susceptibility test results within 4-8 h.
机译:抗微生物抗性被认为是对公共卫生的最大新兴威胁之一。抗菌抗性(AMR)微生物仅在美国每年近200万人影响近200万人,并在医疗保健系统中估计为200亿美元的负担。 AMR微生物的崛起可归因于抗微生物的过度教育和缺乏可接近的诊断方法的组合。延迟诊断是验证治疗的主要原因之一,并且非常希望能够快速和准确的结果实现诊断方法,以促进基于循证的治疗方法。对于临床的临床情况,这尤其如此,其中获得最先进的诊断设备是稀缺的。在这里,我们介绍了一种基于毛细管的抗微生物易感性测试平台(演员),一种独特的方法,以低成本和简单的测试格式提供加速评估抗微生物敏感性。通过在小毛细胞形式因子中孵育的细菌的光学评估以及转基氮蛋白染料,通过光学评估来提供快速的时间读出。铸造是使用现成的特写和自定义3D打印部件的组合设计的,使其非常适合用于资源限制的设置。我们证明,铸件中细菌的生长比常规微孔板更快地大约25%,进一步验证了临床分离株的诊断性能,并表明铸件可以在4-8小时内提供准确的抗微生物易感性测试结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号