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单细胞分辨率的群体转录组学:微流控技术开创的新领域:一种用于高通量转录计数和数据驱动的细胞类型定义的技术。

Population transcriptomics with single-cell resolution: a new field made possible by microfluidics: a technology for high throughput transcript counting and data-driven definition of cell types.

机构信息

RIKEN Omics Science Center, Suehiro-chô, Tsurumi-ku, Yokohama, Japan.

出版信息

Bioessays. 2013 Feb;35(2):131-40. doi: 10.1002/bies.201200093. Epub 2012 Dec 27.

Abstract

Tissues contain complex populations of cells. Like countries, which are comprised of mixed populations of people, tissues are not homogeneous. Gene expression studies that analyze entire populations of cells from tissues as a mixture are blind to this diversity. Thus, critical information is lost when studying samples rich in specialized but diverse cells such as tumors, iPS colonies, or brain tissue. High throughput methods are needed to address, model and understand the constitutive and stochastic differences between individual cells. Here, we describe microfluidics technologies that utilize a combination of molecular biology and miniaturized labs on chips to study gene expression at the single cell level. We discuss how the characterization of the transcriptome of each cell in a sample will open a new field in gene expression analysis, population transcriptomics, that will change the academic and biomedical analysis of complex samples by defining them as quantified populations of single cells.

摘要

组织包含复杂的细胞群体。就像国家由不同人群组成一样,组织也不是同质的。对组织中细胞混合物进行的全细胞基因表达研究对这种多样性是盲目的。因此,当研究富含专门化但多样化细胞的样本时,如肿瘤、iPS 细胞集落或脑组织,就会丢失关键信息。需要高通量方法来解决、模拟和理解单个细胞之间的组成和随机差异。在这里,我们描述了微流控技术,该技术结合了分子生物学和微型化芯片实验室,可在单细胞水平上研究基因表达。我们讨论了如何对样品中每个细胞的转录组进行特征化,这将在基因表达分析、群体转录组学领域开辟一个新的领域,通过将复杂样本定义为量化的单细胞群体,改变学术和生物医学对复杂样本的分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee07/3583089/f750e159660d/bies0035-0131-f1.jpg

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