Layne Tiffany R, Nouwairi Renna L, Fleming Rachel, Blair Haley, Landers James P
Department of Chemistry, University of Virginia, Charlottesville, VA 22939, USA.
Institute of Environmental Science and Research Limited, Auckland 1025, New Zealand.
Micromachines (Basel). 2022 Oct 1;13(10):1657. doi: 10.3390/mi13101657.
Initial screening of criminal evidence often involves serological testing of stains of unknown composition and/or origin discovered at a crime scene to determine the tissue of origin. This testing is presumptive but critical for contextualizing the scene. Here, we describe a microfluidic approach for body fluid profiling via fluorescent electrophoretic separation of a published mRNA panel that provides unparalleled specificity and sensitivity. This centrifugal microfluidic approach expedites and automates the electrophoresis process by allowing for simple, rotationally driven flow and polymer loading through a 5 cm separation channel; with each disc containing three identical domains, multi-sample analysis is possible with a single disc and multi-sample detection per disc. The centrifugal platform enables a series of sequential unit operations (metering, mixing, aliquoting, heating, storage) to execute automated electrophoretic separation. Results show on-disc fluorescent detection and sizing of amplicons to perform comparably with a commercial 'gold standard' benchtop instrument and permitted sensitive, empirical discrimination between five distinct body fluids in less than 10 min. Notably, our microfluidic platform represents a faster, simpler method for separation of a transcriptomic panel to be used for forensically relevant body fluid identification.
对犯罪证据的初步筛查通常涉及对在犯罪现场发现的成分和/或来源不明的污渍进行血清学检测,以确定其来源组织。这种检测具有推测性,但对于构建现场背景至关重要。在此,我们描述了一种微流控方法,通过对已发表的mRNA面板进行荧光电泳分离来进行体液分析,该方法具有无与伦比的特异性和灵敏度。这种离心微流控方法通过允许简单的旋转驱动流动和通过5厘米分离通道加载聚合物,加快并自动化了电泳过程;每个圆盘包含三个相同的区域,使用单个圆盘即可进行多样本分析,并且每个圆盘可进行多样本检测。离心平台能够执行一系列连续的单元操作(计量、混合、分装、加热、存储)以实现自动电泳分离。结果表明,圆盘上的荧光检测和扩增子大小测定与商业“金标准”台式仪器相当,并且能够在不到10分钟的时间内对五种不同的体液进行灵敏的经验性区分。值得注意的是,我们的微流控平台代表了一种更快、更简单的方法,用于分离用于法医相关体液鉴定的转录组面板。