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Label-free detection of HIV-1 infected cells via integration of optical tweezers and photoluminescence spectroscopy

机译:通过光镊和光致发光光谱仪的集成,无标记地检测HIV-1感染的细胞

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The human immunodeficiency virus-1 (HIV-1) is currently detected using conventional qualitative and quantitative tests to determine the presence or absence of HIV in blood samples. However, the approach of these tests detects the presence of either viral antibodies or viral RNA that require labelling which may be costly, sophisticated and time consuming. A label-free approach of detecting the presence of HIV is therefore desirable. Of note optical tweezers can be coupled with other technologies including spectroscopy. which also investigates light-matter interactions. For example, coupling of optical tweezers with luminescence spectroscopy techniques has emerged as a powerful tool in biology for micro-manipulation, detection and analysis of individual cells. Integration of optical techniques has enabled studying biological particles in a label-free manner, whilst detecting functional groups and other essential molecules within mixed populations of cells. In the current study, an optical trapping system coupled to luminescence spectroscopy was utilised to detect the presence of HIV infection in TZM-bl cells in vitro. This was performed by infecting TZM-bl cells with the ZM53 HIV-1 pseudovirus, and incubating them for 48 hours prior analysis. The differences between infected and uninfected cells were thereafter displayed as shown by the spectrographs obtained. Combination of these two techniques has a potential in the field of infectious disease diagnostics.
机译:当前,使用常规定性和定量测试来检测人类免疫缺陷病毒1(HIV-1),以确定血液样本中是否存在HIV。然而,这些测试的方法检测到需要标记的病毒抗体或病毒RNA的存在,这可能是昂贵,复杂和费时的。因此,需要一种无标记的方法来检测HIV的存在。值得注意的是,光镊可以与包括光谱学在内的其他技术结合使用。它也研究光与物质的相互作用。例如,光镊与发光光谱技术的结合已经成为生物学上用于单个细胞的微操作,检测和分析的强大工具。光学技术的集成使人们能够以无标记的方式研究生物颗粒,同时检测混合细胞群中的官能团和其他必需分子。在当前的研究中,光学捕获系统与发光光谱法相结合,用于检测TZM-bl细胞中HIV感染的存在。这是通过用ZM53 HIV-1伪病毒感染TZM-bl细胞,并在分析前将其孵育48小时来进行的。此后如获得的光谱仪所示显示感染的和未感染的细胞之间的差异。这两种技术的结合在传染病诊断领域具有潜力。

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