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利用集成荧光各向异性系统快速鉴定医源性感染。

Rapid identification of health care-associated infections with an integrated fluorescence anisotropy system.

机构信息

Center for Systems Biology, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114, USA.

Department of Radiology, Harvard Medical School, Boston, MA 02114, USA.

出版信息

Sci Adv. 2016 May 6;2(5):e1600300. doi: 10.1126/sciadv.1600300. eCollection 2016 May.

Abstract

Health care-associated infections (HAIs) and drug-resistant pathogens have become a major health care issue with millions of reported cases every year. Advanced diagnostics would allow clinicians to more quickly determine the most effective treatment, reduce the nonspecific use of broad-spectrum antimicrobials, and facilitate enrollment in new antibiotic treatments. We present a new integrated system, polarization anisotropy diagnostics (PAD), for rapid detection of HAI pathogens. The PAD uses changes of fluorescence anisotropy when detection probes recognize target bacterial nucleic acids. The technology is inherently robust against environmental noise and economically scalable for parallel measurements. The assay is fast (2 hours) and performed on-site in a single-tube format. When applied to clinical samples obtained from interventional procedures, the PAD determined the overall bacterial burden, differentiated HAI bacterial species, and identified drug resistance and virulence status. The PAD system holds promise as a powerful tool for near-patient, rapid HAI testing.

摘要

医疗保健相关感染 (HAI) 和耐药病原体每年报告的病例数以百万计,已成为一个主要的医疗保健问题。先进的诊断技术可以让临床医生更快地确定最有效的治疗方法,减少广谱抗生素的非特异性使用,并有助于接受新的抗生素治疗。我们提出了一种新的集成系统,即偏振各向异性诊断 (PAD),用于快速检测 HAI 病原体。PAD 利用检测探针识别目标细菌核酸时荧光各向异性的变化。该技术对环境噪声具有固有稳定性,并且可以经济高效地进行并行测量。该检测方法快速(2 小时),在单个试管中进行。当应用于从介入性程序中获得的临床样本时,PAD 确定了总的细菌负荷,区分了 HAI 细菌种类,并确定了耐药性和毒力状态。PAD 系统有望成为一种强大的即时、快速 HAI 检测工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e083/5565941/1eddeedd8c2a/1600300-F1.jpg

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