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Clonally amplified cardiac stem cells are regulated by Sca-1 signaling for efficient cardiovascular regeneration.

作者信息

Tateishi Kento, Ashihara Eishi, Takehara Naofumi, Nomura Tetsuya, Honsho Shoken, Nakagami Takuo, Morikawa Shigehiro, Takahashi Tomosaburo, Ueyama Tomomi, Matsubara Hiroaki, Oh Hidemasa

机构信息

Department of Experimental Therapeutics, Translational Research Center, Kyoto University Hospital, Kyoto 606-8507, Japan.

出版信息

J Cell Sci. 2007 May 15;120(Pt 10):1791-800. doi: 10.1242/jcs.006122.


DOI:10.1242/jcs.006122
PMID:17502484
Abstract

Recent studies have shown that cardiac stem cells (CSCs) from the adult mammalian heart can give rise to functional cardiomyocytes; however, the definite surface markers to identify a definitive single entity of CSCs and the molecular mechanisms regulating their growth are so far unknown. Here, we demonstrate a single-cell deposition analysis to isolate individually selected CSCs from adult murine hearts and investigate the signals required for their proliferation and survival. Clonally proliferated CSCs express stem cell antigen-1 (Sca-1) with embryonic stem (ES) cell-like and mesenchymal cell-like characteristics and are associated with telomerase reverse transcriptase (TERT). Using a transgene that expresses a GFP reporter under the control of the TERT promoter, we demonstrated that TERT(GFP)-positive fractions from the heart were enriched for cells expressing Sca-1. Knockdown of Sca-1 transcripts in CSCs led to retarded ex vivo expansion and apoptosis through Akt inactivation. We also show that ongoing CSC proliferation and survival after direct cell-grafting into ischemic myocardium require Sca-1 to upregulate the secreted paracrine effectors that augment neoangiogenesis and limit cardiac apoptosis. Thus, Sca-1 might be an essential component to promote CSC proliferation and survival to directly facilitate early engraftment, and might indirectly exert the effects on late cardiovascular differentiation after CSC transplantation.

摘要

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引用本文的文献

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Cells. 2022-12-14

[2]
Stem cell therapies in cardiac diseases: Current status and future possibilities.

World J Stem Cells. 2021-9-26

[3]
Cardioprotective effects of genetically engineered cardiac stem cells by spheroid formation on ischemic cardiomyocytes.

Mol Med. 2020-1-31

[4]
Conventional and Emerging Markers in Stem Cell Isolation and Characterization.

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[5]
Cardiac Progenitor Cells from Stem Cells: Learning from Genetics and Biomaterials.

Cells. 2019-11-28

[6]
Single-cell imaging and transcriptomic analyses of endogenous cardiomyocyte dedifferentiation and cycling.

Cell Discov. 2019-6-4

[7]
Cardiac Sca-1 Cells Are Not Intrinsic Stem Cells for Myocardial Development, Renewal, and Repair.

Circulation. 2018-12-18

[8]
Cardiac regenerative medicine: At the crossroad of microRNA function and biotechnology.

Noncoding RNA Res. 2017-3-15

[9]
ALDH1A3 Is the Key Isoform That Contributes to Aldehyde Dehydrogenase Activity and Affects Proliferation in Cardiac Atrial Appendage Progenitor Cells.

Front Cardiovasc Med. 2018-7-24

[10]
Cardiac stem cells: translation to human studies.

Biophys Rev. 2015-3

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