首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Sorting and Expansion of Murine Embryonic Stem Cell Colonies Using Micropallet Arrays
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Sorting and Expansion of Murine Embryonic Stem Cell Colonies Using Micropallet Arrays

机译:使用微托盘阵列对小鼠胚胎干细胞集落的分选和扩增

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摘要

Isolation of cell colonies is an essential task in most stem cell studies. Conventional techniques for colony selection and isolation require significant time, labor, and consumption of expensive reagents. New microengineered technologies hold the promise for improving colony manipulation by reducing the required manpower and reagent consumption. Murine embryonic stem cells were cultured oil arrays composed of releasable elements termed micropallets created from a biocompatible photoresist. Micropallets containing undifferentiated colonies were released using a laser-based technique followed by cell collection and expansion in Culture. The micropallet arrays provided a biocompatible Substrate for maintaining undifferentiated murine stein cells ill culture. A surface coating of 0.025% gelatin was shown to be optimal for cell culture and collection. Arrays composed of surface-roughened micropallets provided further improvements in Culture and isolation. Colonies of viable stein cells were efficiently isolated and collected. Colonies sorted in this manner were shown to remain undifferentiated even after collection and further expansion in culture. Qualitative and quantitative analyses of sorting, collection efficiency, and cell viability after release and expansion of stem cell colonies demonstrated that the micropallet array technology is a promising alternative to conventional sorting methods for stein cell applications. (C) 2008 International Society for Advancement of Cytometry
机译:在大多数干细胞研究中,分离细胞集落是一项必不可少的任务。用于菌落选择和分离的常规技术需要大量的时间,劳动力和昂贵试剂的消耗。新的微工程技术有望通过减少所需的人力和试剂消耗来改善菌落操作。将小鼠胚胎干细胞培养成油阵列,该阵列由从生物相容性光致抗蚀剂产生的称为微托盘的可释放元件组成。使用基于激光的技术释放含有未分化菌落的微托盘,然后收集细胞并在培养物中扩增。微型托盘阵列提供了一种生物相容性底物,用于维持未分化的小鼠斯坦细胞进行不良培养。显示出0.025%明胶的表面涂层对于细胞培养和收集是最佳的。由表面粗糙的微托盘组成的阵列进一步改善了培养和分离。有效地分离和收集有活力的斯坦细胞集落。已显示以这种方式分选的菌落即使在收集和进一步培养后仍保持未分化状态。对干细胞集落释放和扩展后的分选,收集效率和细胞活力的定性和定量分析表明,微托盘阵列技术是用于斯坦细胞应用的常规分选方法的一种有前途的替代方法。 (C)2008国际细胞计数学会

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