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Selection and Separation of Viable Cells Based on a Cell-Lethal Assay

机译:基于细胞致死分析的活细胞的选择和分离

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A method to select and separate viable cells based on the results of a cell-lethal assay was developed. Cells were plated on an array of culture sites with each site composed of closely spaced, releasable micropallets. Clonal colonies spanning multiple micropallets on individual culture sites were established within 72 h of plating. Adjacent sites were widely spaced with 100percent of the colonies remaining sequestered on a single culture site during expansion. A laser-based method mechanically released a micropallet underlying a colony to segment the colony into two genetically identical colonies. One portion of the segmented colony was collected with 90percent efficiency while viability of both fractions was 100percent. The segmented colonies released from the array were fixed and subjected to immunofluorescence staining of intracellular phosphor-ERK kinase to identify colonies that were highly resistant or sensitive to phorbol ester-induced activation of ERK. These resistant and sensitive cells were then matched to the corresponding viable colonies on the array. Sensitive and resistant colonies on the array were released and cultured. When these cultured cells were reanalyzed for phorbol ester-induced ERK activity, the cells retained the sensitive or resistant phenotype of the originally screened subcolony. Thus, cells were separated and collected based using the result of a cell-lethal assay as selection criteria. These microarrays enabling clonal colony segmentation permitted sampling and manipulation of the colonies at very early times and at small cell numbers to reduce reagent, time, and manpower requirements.
机译:开发了一种基于细胞致死分析结果选择和分离活细胞的方法。将细胞铺在一系列培养位点上,每个位点由紧密间隔的可释放微托盘组成。在铺板72小时内建立跨越单个培养位点上多个微托盘的克隆菌落。相邻站点之间的间隔很大,在扩展过程中,100%的菌落被隔离在单个培养站点上。基于激光的方法机械释放集落下面的微托盘,以将集落分割成两个遗传上相同的集落。收集到的部分菌落的一部分效率为90%,而两个部分的生存力均为100%。固定从阵列中释放出的分段菌落,并对其进行细胞内磷-ERK激酶的免疫荧光染色,以鉴定对佛波酯诱导的ERK活化高度耐药或敏感的菌落。然后将这些抗性和敏感细胞与阵列上相应的活菌落匹配。释放并培养阵列上的敏感和抗性菌落。当重新分析这些培养的​​细胞的佛波酯诱导的ERK活性时,细胞保留了最初筛选的亚菌群的敏感或耐药表型。因此,基于细胞致死分析的结果作为选择标准,分离并收集细胞。这些能够进行克隆菌落分割的微阵列可在很短的时间内以较小的细胞数对菌落进行采样和操作,以减少试剂,时间和人力需求。

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