Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.
Analyst. 2020 Apr 7;145(7):2649-2660. doi: 10.1039/d0an00030b. Epub 2020 Feb 12.
The majority of bioassays are cell-lethal and thus cannot be used for cell assay and selection prior to live-cell sorting. A quad microraft array-based platform was developed to perform semi-automated cell sampling, bioassay, and banking on ultra-small sample sizes. The system biopsies and collects colony fragments, quantifies intracellular protein levels via immunostaining, and then retrieves the living mother colonies based on the fragments' immunoassay outcome. To accomplish this, a magnetic, microwell-based plate was developed to mate directly above the microraft array and capture colony fragments with a one-to-one spatial correspondence to their mother colonies. Using the Signal Transducer and Activator of Transcription 3 (STAT3) model pathway in basophilic leukemia cells, the system was used to sort cells based on the amount of intracellular STAT3 protein phosphorylation (pSTAT3). Colonies were detected on quad arrays using bright field microscopy with 96 ± 20% accuracy (true-positive rate), 49 ± 3% of the colonies were identified as originating from a single cell, and the majority (95 ± 3%) of biopsied clonal fragments were successfully collected into the microwell plate for immunostaining. After assay, biopsied fragments were matched back to their mother colonies and mother colonies with fragments possessing the greatest and least pSTAT3/STAT3 were resampled for expansion and downstream biological assays for pSTAT3/STAT3 and immune granule exocytosis. This approach has the potential to enable colony screening and sorting based on assays not compatible with cell viability, greatly expanding the cell selection criteria available to identify cells with unique phenotypes for subsequent biomedical research.
大多数生物测定法都是细胞致死的,因此不能用于活细胞分选之前的细胞测定和选择。开发了一种基于四微孔筏阵列的平台,用于在超小样本量上进行半自动细胞取样、生物测定和存储。该系统通过免疫染色对细胞内蛋白质水平进行定量分析,并根据片段的免疫测定结果回收活的母细胞。为此,开发了一种基于磁场的微孔板,使其与微孔筏阵列直接对接,并以与母细胞一一对应的空间对应关系捕获菌落片段。使用嗜碱性白血病细胞中的信号转导子和转录激活子 3 (STAT3) 模型途径,该系统用于根据细胞内 STAT3 蛋白磷酸化 (pSTAT3) 的量对细胞进行分选。使用明场显微镜在四微孔筏阵列上检测菌落,准确率为 96 ± 20%(真阳性率),其中 49 ± 3%的菌落被鉴定为来源于单个细胞,并且大多数(95 ± 3%)活检的克隆片段被成功收集到微孔板中进行免疫染色。测定后,将活检片段与母细胞匹配,并对具有最大和最小 pSTAT3/STAT3 的母细胞进行重新取样,用于进行 pSTAT3/STAT3 和免疫颗粒胞吐的下游生物学测定。这种方法有可能实现基于与细胞活力不兼容的测定法的菌落筛选和分选,大大扩展了可用于鉴定具有独特表型的细胞的细胞选择标准,以用于后续的生物医学研究。