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Long-Term Perfusion Culture of Monoclonal Embryonic Stem Cells in 3D Hydrogel Beads for Continuous Optical Analysis of Differentiation

机译:三维水凝胶珠粒中单克隆胚胎干细胞长期灌注培养,用于分化的连续光学分析

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摘要

Developmental cell biology requires technologies in which the fate of single cells is followed over extended time periods, to monitor and understand the processes of self-renewal, differentiation, and reprogramming. A workflow is presented, in which single cells are encapsulated into droplets (?: 80 μm, volume: ≈270 pL) and the droplet compartment is later converted to a hydrogel bead. After on-chip de-emulsification by electrocoalescence, these 3D scaffolds are subsequently arrayed on a chip for long-term perfusion culture to facilitate continuous cell imaging over 68 h. Here, the response of murine embryonic stem cells to different growth media, 2i and N2B27, is studied, showing that the exit from pluripotency can be monitored by fluorescence time-lapse microscopy, by immunostaining and by reverse-transcription and quantitative PCR (RT-qPCR). The defined 3D environment emulates the natural context of cell growth (e.g., in tissue) and enables the study of cell development in various matrices. The large scale of cell cultivation (in 2000 beads in parallel) may reveal infrequent events that remain undetected in lower throughput or ensemble studies. This platform will help to gain qualitative and quantitative mechanistic insight into the role of external factors on cell behavior.
机译:发展细胞生物学需要在延迟单个细胞的命运之后,在延伸和理解自我更新,分化和重新编程的过程中进行单个细胞的命运。提出了一种工作流程,其中单个细胞被封装成液滴(α:80μm,体积:≈270pl),并且后面将液滴隔室转化为水凝胶珠。通过电晕透过片上乳化后,随后将这些3D支架排列在芯片上以便长期灌注培养物,以促进连续的细胞成像超过68小时。这里研究了鼠胚胎干细胞对不同生长培养基,2I和N2B27的响应,表明可以通过荧光延时显微镜,通过免疫染色和通过逆转录和定量PCR来监测来自多能性的出口(RT- QPCR)。定义的3D环境旨在刺激细胞生长的天然背景(例如,在组织中),并能够在各种基质中研究细胞发育。大规模的细胞培养(平行于2000年珠子)可能会揭示在较低吞吐量或集合研究中仍未检测到的不频繁事件。该平台将有助于获得对外部因素对细胞行为的作用的定性和定量机制洞察。

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  • 来源
    《Small》 |2019年第5期|共11页
  • 作者单位

    Department of Biochemistry University of Cambridge 80 Tennis Court Road Cambridge CB2 1GA UK;

    Department of Biochemistry University of Cambridge 80 Tennis Court Road Cambridge CB2 1GA UK;

    Wellcome Trust/Medical Research Council Cambridge Stem Cell Institute University of Cambridge Tennis Court Road Cambridge CB2 1QR UK;

    Department of Biochemistry University of Cambridge 80 Tennis Court Road Cambridge CB2 1GA UK;

    Wellcome Trust/Medical Research Council Cambridge Stem Cell Institute University of Cambridge Tennis Court Road Cambridge CB2 1QR UK;

    Department of Biochemistry University of Cambridge 80 Tennis Court Road Cambridge CB2 1GA UK;

    Department of Biochemistry University of Cambridge 80 Tennis Court Road Cambridge CB2 1GA UK;

    Wellcome Trust/Medical Research Council Cambridge Stem Cell Institute University of Cambridge Tennis Court Road Cambridge CB2 1QR UK;

    Department of Biochemistry University of Cambridge 80 Tennis Court Road Cambridge CB2 1GA UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    hydrogels; microdroplets; pluripotency; single cell analysis; stem cells;

    机译:水凝胶;微型电池;多能性;单细胞分析;干细胞;

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