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High-Throughput and Cost-Effective Characterization of Induced Pluripotent Stem Cells.

Stem cell reports · 2017 · Vol. 8 (4) · pp. 1101-1111

Abstract

Reprogramming somatic cells to induced pluripotent stem cells (iPSCs) offers the possibility of studying the molecular mechanisms underlying human diseases in cell types difficult to extract from living patients, such as neurons and cardiomyocytes. To date, studies have been published that use small panels of iPSC-derived cell lines to study monogenic diseases. However, to study complex diseases, where the genetic variation underlying the disorder is unknown, a sizable number of patient-specific iPSC lines and controls need to be generated. Currently the methods for deriving and characterizing iPSCs are time consuming, expensive, and, in some cases, descriptive but not quantitative. Here we set out to develop a set of simple methods that reduce cost and increase throughput in the characterization of iPSC lines. Specifically, we outline methods for high-throughput quantification of surface markers, gene expression analysis of in vitro differentiation potential, and evaluation of karyotype with markedly reduced cost.

Publication Types

["Journal Article", "Research Support, Non-U.S. Gov't", "Research Support, N.I.H., Extramural"]

Keywords

MeSH Terms

["Biomarkers", "Cell Differentiation", "Cell Line", "Cellular Reprogramming", "Cost-Benefit Analysis", "Genetic Variation", "Genotype", "High-Throughput Screening Assays", "Humans", "Induced Pluripotent Stem Cells", "Karyotyping", "Myocytes, Cardiac", "Neurons", "Phenotype"]

Funding

R01 HG004659 NHGRI NIH HHS (United States)
P30 CA023100 NCI NIH HHS (United States)
T32 GM008666 NIGMS NIH HHS (United States)
R01 NS075449 NINDS NIH HHS (United States)
U01 DK105541 NIDDK NIH HHS (United States)
R01 EY021237 NEI NIH HHS (United States)
DP3 DK112155 NIDDK NIH HHS (United States)
R41 HG008118 NHGRI NIH HHS (United States)
U01 HL107442 NHLBI NIH HHS (United States)
R44 HG008118 NHGRI NIH HHS (United States)

Potentially Related Datasets (1)

These accessions were text-mined from the PMC full text. They may be referenced for comparison, cited from other studies, or otherwise mentioned without being primary data for this paper.

E-MTAB-5587 E-MTAB ArrayExpress