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首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Multiphoton flow cytometry to assess intrinsic and extrinsic fluorescence in cellular aggregates: Applications to stem cells
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Multiphoton flow cytometry to assess intrinsic and extrinsic fluorescence in cellular aggregates: Applications to stem cells

机译:多光子流式细胞术评估细胞聚集体中的内在和外在荧光:在干细胞中的应用

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摘要

Detection and tracking of stem cell state are difficult due to insufficient means for rapidly screening cell state in a noninvasive manner. This challenge is compounded when stem cells are cultured in aggregates or three-dimensional (3D) constructs because living cells in this form are difficult to analyze without disrupting cellular contacts. Multiphoton laser scanning microscopy is uniquely suited to analyze 3D structures due to the broad tunability of excitation sources, deep sectioning capacity, and minimal phototoxicity but is throughput limited. A novel multiphoton fluorescence excitation flow cytometry (MPFC) instrument could be used to accurately probe cells in the interior of multicell aggregates or tissue constructs in an enhanced-throughput manner and measure corresponding fluorescent properties. By exciting endogenous fluorophores as intrinsic biomarkers or exciting extrinsic reporter molecules, the properties of cells in aggregates can be understood while the viable cellular aggregates are maintained. Here we introduce a first generation MPFC system and show appropriate speed and accuracy of image capture and measured fluorescence intensity, including intrinsic fluorescence intensity. Thus, this novel instrument enables rapid characterization of stem cells and corresponding aggregates in a noninvasive manner and could dramatically transform how stem cells are studied in the laboratory and utilized in the clinic.
机译:由于没有足够的手段以非侵入性方式快速筛查细胞状态,因此干细胞状态的检测和跟踪很困难。当干细胞以聚集体或三维(3D)构造进行培养时,这一挑战变得更加复杂,因为这种形式的活细胞很难在不破坏细胞接触的情况下进行分析。多光子激光扫描显微镜由于激发源的广泛可调性,较深的切片能力和最小的光毒性而特别适合分析3D结构,但产量受到限制。一种新型的多光子荧光激发流式细胞仪(MPFC)仪器可用于以增强的通量方式准确探测多细胞聚集体或组织构建体内部的细胞,并测量相应的荧光特性。通过激发作为内在生物标记的内源性荧光团或激发外部报告分子,可以在维持活细胞聚集体的同时了解聚集体中细胞的特性。在这里,我们介绍了第一代MPFC系统,并显示了图像捕获和测得的荧光强度(包括固有荧光强度)的适当速度和准确性。因此,这种新颖的仪器能够以无创方式快速表征干细胞和相应的聚集体,并可显着改变干细胞在实验室中的研究方式以及在临床中的利用方式。

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