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PMID: 15579642 Published · ppublish English Journal Article

Insulin-like growth factor promotes engraftment, differentiation, and functional improvement after transfer of embryonic stem cells for myocardial restoration.

Stem cells (Dayton, Ohio) ·Vol. 22 ·No. 7 ·2004-00-00 ·Pages 1239-45

Kofidis T, de Bruin JL, Yamane T, Balsam LB, Lebl DR, Swijnenburg RJ, Tanaka M, Weissman IL, Robbins RC

Abstract

Insulin-like growth factor-1 (IGF-1) promotes myocyte proliferation and can reverse cardiac abnormalities when it is administered in the early fetal stage. Supplementation of a mouse embryonic stem cell (ESC) suspension with IGF-1 might enhance cellular engraftment and host organ-specific differentiation after injection in the area of acute myocardial injury. In the study reported here, we sought to enhance the restorative effect of ESCs in the injured heart by adding IGF-1 to the injected cell population. Green fluorescent protein (GFP)-labeled sv129 ESCs (2.5 x 10(5)) were injected into the ischemic area after left anterior descending (LAD) artery ligation in BalbC mice. Recombinant mouse IGF-1 (25 ng) was added to the cell suspension prior to the injection (n = 5). Echocardiography was performed before organ harvest 2 weeks later. The degree of restoration (ratio of GFP+ to infarct area), expression of cardiac markers by GFP+ cells, inflammatory response, and tumorigenicity were evaluated. Mice with LAD ligation only (n = 5) and ESC transfer without IGF-1 (n = 5) served as controls. ESCs formed viable grafts and improved cardiac function. Left ventricular wall thickness was higher in the IGF-1 group (p = .025). There was a trend toward higher fractional shortening in the IGF-treated group. Histological analysis demonstrated that IGF-1 promoted expression of alpha-sarcomeric actin (p = .015) and major histocompatibility complex class I (p = .01). IGF did not affect the cellular response to the donor cells or tumorigenicity. IGF-1 promotes expression of cardiomyocyte phenotype in ESCs in vivo. It should be considered as an adjuvant to cell transfer for myocardial restoration.

MeSH Terms
Actins/metabolism Animals Cell Culture Techniques/methods Cell Differentiation Cell Transplantation/methods Cells, Cultured Embryo, Mammalian/cytology Green Fluorescent Proteins/metabolism Inflammation Insulin-Like Growth Factor I/metabolism,physiology Mice Mice, Inbred BALB C Microscopy, Confocal Microscopy, Fluorescence Myocardial Ischemia/pathology Myocardium/pathology Myocytes, Cardiac/metabolism Phenotype Recombinant Proteins/metabolism Stem Cells/cytology Time Factors
Chemicals
Actins Recombinant Proteins Green Fluorescent Proteins Insulin-Like Growth Factor I
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Kofidis Theo
Cardiothoracic Surgery, Falk Research Center, Stanford University Medical School, Stanford, CA 94305, USA. [email protected]
de Bruin Jorg L
Yamane Toshiyuki
Balsam Leora B
Lebl Darren R
Swijnenburg Rutger-Jan
Tanaka Masashi
Weissman Irving L
Robbins Robert C
Article Info
Journal
Stem cells (Dayton, Ohio)
Abbr.
Stem Cells
ISSN
1066-5099
Published
2004-00-00
Pages
1239-45
Language
English
Region
United States
NLM ID
9304532
Subset
IM
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