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Rapid and easy-to-use ES cell manipulation device with a small groove near culturing wells

机译:快速且易于使用的ES细胞操作装置,具有小凹槽,尤其是培养孔

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摘要

Abstract Objective Production of genetically modified mice including Knock-out (KO) or Knock-in (KI) mice is necessary for organism-level phenotype analysis. Embryonic stem cell (ESC)-based technologies can produce many genetically modified mice with less time without crossing. However, a complicated manual operation is required to increase the number of ESC colonies. Here, the objective of this study was to design and demonstrate a new device to easily find colonies and carry them to microwells. Results We developed a polydimethylsiloxane-based device for easy manipulation and isolation of ESC colonies. By introducing ESC colonies into the groove placed near culturing microwells, users can easily find, pick up and carry ESC colonies to microwells. By hydrophilic treatment using bovine serum albumin, 2-μL droplets including colonies reached the microwell bottom. Operation time using this device was shortened for both beginners (2.3-fold) and experts (1.5-fold) compared to the conventional colony picking operation. Isolated ESC colonies were confirmed to have maintained pluripotency. This device is expected to promote research by shortening the isolation procedure for ESC colonies or other large cells (e.g. eggs or embryos) and shortening training time for beginners as a simple sorter.
机译:摘要有机体水平表型分析所需的基因改性小鼠的客观生产包括敲除(KO)或敲入(KI)小鼠。基于胚胎干细胞(ESC)的技术可以生产许多遗传修饰的小鼠,时间较少而不交叉。但是,需要复杂的手动操作来增加ESC殖民地的数量。在这里,本研究的目的是设计和展示一种新设备,以便轻松找到殖民地并将其携带到微孔。结果我们开发了一种基于聚二甲基硅氧烷的装置,便于操纵和分离ESC菌落。通过将Esc殖民地介绍进入放置在培养微孔附近的凹槽中,用户可以容易地找到,接送并携带ESC殖民地到微孔。通过使用牛血清白蛋白的亲水处理,包括菌落的2μl液滴达到微孔底部。与传统的殖民地采摘操作相比,使用该设备的操作时间缩短了初学者(2.3倍)和专家(1.5倍)。确认孤立的ESC殖民地保持多能性。该设备预计通过缩短ESC菌落或其他大型细胞(例如鸡蛋或胚胎)和初学者作为简单分拣机的训练时间来促进研究。

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