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Collection and expansion of single cells and colonies released from a micropallet array

机译:从微托盘阵列释放的单个细胞和集落的收集和扩增

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The ability to selectively grow out individual cells possessing unique characteristics from within a mixed population is of widespread importance for biomedical investigations. Generation of genetically engineered cell lines, transformation studies, cell-based assays, and stem cell studies are examples where single-cell cloning is of immense value. The vast majority of mammalian cells grow adherent to a surface; therefore, positive selection followed by cloning of cells while the cells remain adherent to their growth surface is an important goal. We recently demonstrated a microfabricated cell array combined with laser-based release of individual array elements for positive selection of single cells. In the current work, a strategy to collect single cells for clonal expansion is described. The system enabled cloning of individual cells with 80-90% efficiency. Single cells were selected and cloned from small populations of fewer than 10 000 cells. Strategies used by cells to migrate from the pallets to form colonies on the surface of the collection device were examined. Implementation of encoded array elements made it possible to follow specific cells throughout the selection, collection, and cloning procedure. Thus, a particular cell can be identified by any number of imaging techniques, isolated, and clonally expanded to generate a homogeneous cell line or a pure sample for genetic or biochemical analysis.
机译:从混合种群中选择性生长出具有独特特征的单个细胞的能力对于生物医学研究具有广泛的重要性。基因工程细胞系的产生,转化研究,基于细胞的测定和干细胞研究是单细胞克隆具有巨大价值的例子。绝大多数哺乳动物细胞会粘附在表面上。因此,在细胞保持粘附于其生长表面的同时进行克隆的阳性选择是重要的目标。我们最近展示了一种微细加工的细胞阵列,结合了基于激光的单个阵列元素释放,可以积极选择单个细胞。在当前的工作中,描述了收集单个细胞用于克隆扩增的策略。该系统能够以80-90%的效率克隆单个细胞。选择单细胞并从少于10,000个细胞的小群体中克隆。检查了细胞用于从托盘迁移以在收集装置表面形成菌落的策略。编码数组元素的实现使得可以在整个选择,收集和克隆过程中跟踪特定的单元格。因此,可以通过任何数量的成像技术来鉴定特定的细胞,将其分离并克隆扩展以生成均一的细胞系或纯样品,以进行遗传或生化分析。

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