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首页> 外文期刊>Sensors and Actuators >Application of an optically induced dielectrophoresis (ODEP)-based microfluidic system for the detection and isolation of bacteria with heterogeneity of antibiotic susceptibility
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Application of an optically induced dielectrophoresis (ODEP)-based microfluidic system for the detection and isolation of bacteria with heterogeneity of antibiotic susceptibility

机译:基于光诱导介电电泳(ODEP)的微流体系统在检测和分离具有抗生素敏感性异质性的细菌中的应用

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摘要

Different levels of antibiotic resistance reside in a bacterial clone (heteroresistance) is regarded as an important cause leading to development of superbugs and treatment failure of infectious diseases. However, phenotypical detection of bacterial heteroresistance is not available in current clinical practice or by present analytical tools. To address this issue, we developed an optically induced dielectrophoresis (ODEP)-based microfluidic system capable of detecting bacterial heteroresistance and isolating minor resistant strain within a bacterial clone. The working principle is based on the different levels of ODEP force exerted on the bacteria with different degrees of viability, which was resulted from different degrees of antibiotic resistance. We designed and fabricated an ODEP-based microfluidic system, and used standard bacterial strains, namely E. coli ATCC 35218 (antibiotic resistant strain) and E. coli ATCC 25922 (antibiotic susceptible strain) to prove the proposed concept. After treated with ampicillin for 1 h, we demonstrated that both bacterial strains could be isolated with high recovery rate up to 98.07 %. Moreover, we mixed E. coli ATCC 35218 and £. coli ATCC 25922 with a variety of heterogeneous ratios to simulate heteroresistance. The ratio of the resistant strain could be significantly elevated from the original 1 % to approximately 67 % after manipulated by the proposed system. Overall, in the proof-of-concept study we demonstrated that the ODEP-based microfluidic system could effectively detect and isolate high resistant bacterial strain from a clone with heteroresistance. The ability of detecting phenotypic heteroresistance renders it a promising tool for further clinical applications or fundamental studies.
机译:细菌克隆中存在不同水平的抗生素抗性(异抗性)被认为是导致超级细菌发展和传染病治疗失败的重要原因。然而,在当前的临床实践中或通过当前的分析工具尚无细菌异抗性的表型检测。为了解决这个问题,我们开发了一种基于光诱导介电电泳(ODEP)的微流体系统,该系统能够检测细菌异抗性并分离出细菌克隆中的次要抗性菌株。工作原理是基于不同程度的ODEP力作用于具有不同生存能力的细菌,这是由于不同程度的抗生素抗性导致的。我们设计并制造了基于ODEP的微流体系统,并使用标准细菌菌株,即大肠杆菌ATCC 35218(抗生素抗性菌株)和大肠杆菌ATCC 25922(抗生素敏感菌株)来证明所提出的概念。用氨苄西林处理1小时后,我们证明可以分离出两个细菌菌株,回收率高达98.07%。此外,我们混合了大肠杆菌ATCC 35218和£。大肠埃希氏ATCC 25922,具有多种异质比率,可模拟异抗性。在所提出的系统操纵之后,抗性菌株的比例可以从最初的1%显着提高到大约67%。总体而言,在概念验证研究中,我们证明了基于ODEP的微流体系统可以有效地从具有异抗性的克隆中检测和分离高抗性细菌菌株。检测表型异抗性的能力使其成为用于进一步临床应用或基础研究的有前途的工具。

著录项

  • 来源
    《Sensors and Actuators 》 |2020年第3期| 127540.1-127540.12| 共12页
  • 作者单位

    Department of Laboratory Medicine Chang Gung Memorial Hospital at Linkou Taoyuan City Taiwan ROC Biomedical Engineering Chang Gung University Taoyuan City Taiwan ROC;

    Department of Laboratory Medicine Chang Gung Memorial Hospital at Linkou Taoyuan City Taiwan ROC;

    Biomedical Engineering Chang Gung University Taoyuan City Taiwan ROC;

    Graduate Institute of Biomedical Engineering Chang Gung University Taoyuan City Taiwan ROC;

    Division of Haematology/Oncology Department of Internal Medicine Chang Gung Memorial Hospital at Linkou Taoyuan City Taiwan ROC;

    Department of Laboratory Medicine Chang Gung Memorial Hospital at Linkou Taoyuan City Taiwan ROC School of Medicine Chang Gung University Taoyuan City Taiwan ROC Department of Medical Biotechnology and Laboratory Science Chang Gung University Taoyuan City Taiwan ROC;

    Graduate Institute of Biomedical Engineering Chang Gung University Taoyuan City Taiwan ROC Division of Haematology/Oncology Department of Internal Medicine Chang Gung Memorial Hospital at Linkou Taoyuan City Taiwan ROC;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bacteria; Heteroresistance; Optically induced dielectrophoresis (ODEP); Microfluidic system; Cell detection;

    机译:菌;异质电阻光诱导介电电泳(ODEP);微流体系统;细胞检测;

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