Advanced Feeder-Free Generation of Induced Pluripotent Stem Cells Directly From Blood Cells

Author:

Trokovic Ras1,Weltner Jere1,Nishimura Ken2,Ohtaka Manami2,Nakanishi Mahito2,Salomaa Veikko3,Jalanko Anu4,Otonkoski Timo15,Kyttälä Aija4

Affiliation:

1. Research Programs Unit, Molecular Neurology and Biomedicum Stem Cell Centre, University of Helsinki, Helsinki, Finland

2. Research Center for Stem Cell Engineering, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Ibaraki, Japan

3. Department of Chronic Disease Prevention, National Institute for Health and Welfare (THL), Helsinki, Finland

4. Public Health Genomics Unit, THL Biobank, National Institute for Health and Welfare (THL), Helsinki, Finland

5. Children's Hospital, University of Helsinki and Helsinki University Central Hospital, Helsinki, Finland

Abstract

Abstract Generation of validated human induced pluripotent stem cells (iPSCs) for biobanking is essential for exploring the full potential of iPSCs in disease modeling and drug discovery. Peripheral blood mononuclear cells (PBMCs) are attractive targets for reprogramming, because blood is collected by a routine clinical procedure and is a commonly stored material in biobanks. Generation of iPSCs from blood cells has previously been reported using integrative retroviruses, episomal Sendai viruses, and DNA plasmids. However, most of the published protocols require expansion and/or activation of a specific cell population from PBMCs. We have recently collected a PBMC cohort from the Finnish population containing more than 2,000 subjects. Here we report efficient generation of iPSCs directly from PBMCs in feeder-free conditions in approximately 2 weeks. The produced iPSC clones are pluripotent and transgene-free. Together, these properties make this novel method a powerful tool for large-scale reprogramming of PBMCs and for iPSC biobanking.

Funder

Academy of Finland

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,General Medicine

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