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PMID: 10504639 Published · ppublish English Comparative Study Journal Article

Fetal cell transplantation: a comparison of three cell types.

The Journal of thoracic and cardiovascular surgery ·Vol. 118 ·No. 4 ·1999-10-00 ·Pages 715-24

Sakai T, Li RK, Weisel RD, Mickle DA, Jia ZQ, Tomita S, Kim EJ, Yau TM

Abstract

We have previously reported that fetal cardiomyocyte transplantation into myocardial scar improves heart function. The mechanism by which this occurs, however, has not been elucidated. To investigate possible mechanisms by which cell transplantation may improve heart function, we compared cardiac function after transplantation of 3 different fetal cell types: cardiomyocytes, smooth muscle cells (nonstriated muscle cells), and fibroblasts (noncontractile cells). A left ventricular scar was created by cryoinjury in adult rats. Four weeks after injury, cultured fetal ventricular cardiomyocytes (n = 13), enteric smooth muscle cells (n = 10), skin fibroblasts (n = 10), or culture medium (control, n = 15 total) were injected into the myocardial scar. All rats received cyclosporine A (INN: ciclosporin). Four weeks after transplantation, left ventricular function was evaluated in a Langendorff preparation. The implanted cells were identified histologically. All transplanted cell types formed tissue within the myocardial scar. At an end-diastolic volume of 0.2 mL, developed pressures in cardiomyocytes group were significantly greater than smooth muscle cells and skin fibroblasts groups (cardiomyocytes, 134% +/- 22% of control; smooth muscle cells, 108% +/- 14% of control; skin fibroblasts, 106% +/- 17% of control; P =.0001), as were +dP/dt(max) (cardiomyocytes, 119% +/- 37% of control; smooth muscle cells, 98% +/- 18% of control; skin fibroblasts, 92% +/- 11% of control; P =. 0001) and -dP/dt(max) (cardiomyocytes, 126% +/- 29% of control; smooth muscle cells, 108% +/- 19% of control; skin fibroblasts, 99% +/- 16% control; P =.0001). Fetal cardiomyocytes transplanted into myocardial scar provided greater contractility and relaxation than fetal smooth muscle cells or fetal fibroblasts. The contractile and elastic properties of transplanted cells determine the degree of improvement in ventricular function achievable with cell transplantation.

MeSH Terms
Animals Cardiac Volume/physiology Cardiomyopathies/surgery Cell Transplantation/methods Cicatrix/surgery Cyclosporine/therapeutic use Diastole Fetal Tissue Transplantation/methods Fibroblasts/transplantation Heart/physiopathology Heart Ventricles/cytology Immunosuppressive Agents/therapeutic use Intestines/cytology Male Muscle, Smooth/cytology Myocardial Contraction/physiology Myocardium/cytology Rats Rats, Sprague-Dawley Skin/cytology Ventricular Function, Left/physiology Ventricular Pressure/physiology Ventricular Remodeling/physiology
Chemicals
Immunosuppressive Agents Cyclosporine
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Sakai T
Division of Cardiovascular Surgery, Center for Cardiovascular Research, Toronto General Hospital, Toronto, Ontario, Canada.
Li R K
Weisel R D
Mickle D A
Jia Z Q
Tomita S
Kim E J
Yau T M
Article Info
Journal
The Journal of thoracic and cardiovascular surgery
Abbr.
J Thorac Cardiovasc Surg
ISSN
0022-5223
Published
1999-10-00
Pages
715-24
Language
English
Region
United States
NLM ID
0376343
Subset
IM
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