首页> 外文会议>Society of Photo-Optical Instrumentation Engineers;International Conference on Label-free Biomedical Imaging and Sensing >Multispectral characterisation of Mesenchymal Stem/ Stromal Cells: Age, Cell cycle, Senescence, and Pluripotency
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Multispectral characterisation of Mesenchymal Stem/ Stromal Cells: Age, Cell cycle, Senescence, and Pluripotency

机译:间充质干细胞/基质细胞的多光谱表征:年龄,细胞周期,衰老和多能性

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Multispectral assessment of cell autofluorescence gives a direct window into the molecular processes occurring withinthose cells. This can be used to non-invasively characterise and classify various cellular properties without requiringfixation, dyes or transformation. Human mesenchymal stem/ stromal cells (MSCs) have great potential to contributeto regenerative medicine, especially with regards to autologous transplantation. However, this capacity is oftenlimited by inherent properties of cell lines, which prevent their being sufficiently expanded after derivation foreffective clinical application. The investigation of these properties requires numerous, time and labour-intensiveassays. In this study we have used correlative microscopy based on multispectral images of cell autofluorescencethen correlated to functional assays in order to construct multispectral signatures of numerous inherent cellcharacteristics. These included cell cycle status (indicating the proportion of cells undergoing cell division at agiven time), cell ‘age’ (number of passages undergone, indicating capacity for further expansion), and β-galactosidase (a marker of senescence, indicating cells which can no longer divide). This study has established asingle protocol, in place of multi-functional assays, to characterize the growth and differentiation capacity of hMSClines using a non-invasive approach.
机译:细胞自发荧光的多光谱评估为进入内部发生的分子过程提供了直接的窗口 这些细胞。这可用于无创地对各种细胞特性进行表征和分类,而无需 固色,染料或转化。人间质干/基质细胞(MSC)具有巨大的潜力 再生医学,尤其是自体移植方面。但是,这种能力通常 受细胞系固有特性的限制,这会阻止它们在衍生后充分扩展 有效的临床应用。对这些特性的研究需要大量的时间和劳动强度 分析。在这项研究中,我们基于细胞自发荧光的多光谱图像使用了相关显微镜 然后与功能分析相关联,以构建众多固有细胞的多光谱特征 特征。这些包括细胞周期状态(指示在 给定的时间),细胞的“年龄”(经历的传代次数,表明进一步扩展的能力)和β- 半乳糖苷酶(衰老的标志,表明细胞不再分裂)。这项研究建立了 单一协议代替多功能测定,以表征hMSC的生长和分化能力 线使用非侵入性方法。

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