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Novel Applications of Lead Acetate and Flow Cytometry Methods for Detection of Sulfur-Containing Molecules

机译:铅醋酸铅和流式细胞术方法检测含硫分子的新应用

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Hydrogen sulfide (H2S) is the most recently established gaseous vasodilator, enzymatically produced from cysteine metabolism, involved in a number of pathophysiological processes. However, its accurate detection in vivo is critical due to its volatility and tendency to form sulfane sulfur derivatives, thus limiting the data interpretation of its biological roles. We developed new applications of the simple and rapid method to measure H2S release in cell culture systems, based on the lead acetate strip test. This test, previously prevalently used in microbiology, was compared with the agar trap method, applied, in parallel, on both cell cultures and cell-free samples. Sulfane sulfur represents the major species derived from intracellular H2S. Various fluorescent probes are available for quantitation of H2S derivatives intracellularly. We present here an alternative to the classic imaging method for sulfane sulfur evaluation, running on a flow cytometer, based on SSP4 probe labeling. Flow cytometry turned out to be more direct, fully quantitative and less time-consuming compared to microscopy and more precise with respect to the fluorescence multi-plate reader assay. The new application methods for H2S determination appear to be fully suitable for the analysis of H2S release and sulfane sulfur content in biological samples.
机译:硫化氢(H2S)是最近建立的气态血管扩张剂,由半胱氨酸代谢产生的酶促产生,参与了许多病理生理过程。然而,由于其挥发性和形成磺砜硫衍生物的挥发性和倾向,其在体内的准确检测至关重要,从而限制了其生物学作用的数据解释。我们基于铅醋酸铅条试验,开发了一种新的简单和快速方法来测量细胞培养系统中的H2S释放的方法。与微生物学前普遍用于微生物的该测试与琼脂捕集方法进行比较,并平行于细胞培养物和无细胞样品。磺胺硫代表衍生自细胞内H2S的主要物种。各种荧光探针可用于细胞内的H2S衍生物进行定量。我们在此替代于磺胺硫评价的经典成像方法,基于SSP4探针标记在流式细胞仪上运行。与显微镜检查相比,流式细胞术变为更直接,完全定量和较少耗时的耗时,并且相对于荧光多板读取器测定更精确。 H 2 S测定的新施用方法似乎完全适用于在生物样品中分析H2S释放和磺胺硫含量。

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