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首页> 外文期刊>Analytical chemistry >Array-Based Platform To Select, Release, and Capture Epstein-Barr Virus-Infected Cells Based on Intercellular Adhesion
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Array-Based Platform To Select, Release, and Capture Epstein-Barr Virus-Infected Cells Based on Intercellular Adhesion

机译:基于阵列的平台基于细胞间粘附来选择,释放和捕获被爱泼斯坦-巴尔病毒感染的细胞

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摘要

Microraft arrays were developed to select and separate cells based on a complex phenotype, weak intercellular adhesion, without knowledge of cell-surface markers or intracellular proteins. Since the cells were also not competent to bind to a culture surface, a method to encapsulate nonadherent cells within a gelatin plug on the concave microraft surface was developed, enabling release and collection of the cells without the need for cell attachment to the microraft surface. After microraft collection, the gelatin was liquified to release the cell(s) for culture or analysis. A semiautomated release and collection device for the microrafts demonstrated 100 +/- 0% collection efficiency of the microraft while increasing throughput 5-fold relative to that of manual release and collection. Using the microraft array platform along with the gelatin encapsulation method, single cells that were not surface-attached were isolated with a 100 +/- 0% efficiency and a 96 +/- 4% postsort single-cell cloning efficiency. As a demonstration, Epstein Barr virus-infected lymphoblastoid cell lines (EBV-LCL) were isolated based on their intercellular adhesive properties. The identified cell colonies were collected with a 100 +/- 0% sorting efficiency and a postsort viability of 87 +/- 3%. When gene expression analysis of the EBV latency-associated gene, EBNA-2, was performed, there was no difference in expression between blasting or weakly adhesive cells and nonblasting or nonadhesive cells. Microraft arrays are a versatile method enabling separation of cells based on complicated and as yet poorly understood cell phenotypes.
机译:开发了微型筏阵列,可根据复杂的表型,弱的细胞间粘附力选择和分离细胞,而无需了解细胞表面标记或细胞内蛋白质。由于细胞也不具有结合培养表面的能力,因此开发了一种将非粘附细胞封装在凹型微筏表面上的明胶塞内的方法,无需细胞附着在微筏表面即可释放和收集细胞。收集微筏后,将明胶液化以释放细胞进行培养或分析。用于微型筏的半自动释放和收集装置显示了微型筏的100 +/- 0%的收集效率,同时相对于手动释放和收集的吞吐量提高了5倍。使用微筏阵列平台和明胶封装方法,以100 +/- 0%的效率和96 +/- 4%的排序后单细胞克隆效率分离了未表面附着的单细胞。作为证明,根据爱泼斯坦巴尔病毒感染的淋巴母细胞样细胞系(EBV-LCL),根据其细胞间粘附特性进行分离。以100 +/- 0%的分选效率和87 +/- 3%的分选后生存力收集鉴定的细胞集落。进行与EBV潜伏期相关基因EBNA-2的基因表达分析时,爆炸或弱黏附细胞与非爆炸或非黏附细胞之间的表达没有差异。 Microraft阵列是一种通用的方法,能够根据复杂且尚未了解的细胞表型分离细胞。

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