Therapeutic angiogenesis of three-dimensionally cultured adipose-derived stem cells in rat infarcted hearts

Authors
Kim, Ji HyunPark, In SuPark, YongdooJung, YoungmeeKim, Soo HyunKim, Sang-Heon
Issue Date
2013-05
Publisher
ELSEVIER SCI LTD
Citation
CYTOTHERAPY, v.15, no.5, pp.542 - 556
Abstract
Background aims. To successfully treat myocardial infarction (MI), blood must be resupplied to the ischemic myocardium by inducing angiogenesis. Many studies report enhanced angiogenesis using stem cells; however, the therapeutic efficacy of cell transplant remains low because transplanted cells may not survive, be retained at the site of transplant, or develop into vascular tissue. In this study, we assessed the therapeutic potential of three-dimensional cell masses (3DCM) composed of human adipose-derived stem cells (hASC) in a rat MI model. Methods. For formation of 3DCM, hASC were cultured on a substrate with immobilized fibroblast growth factor 2. The morphology and phenotypes of 3DCM were analyzed 1 day after culture. The cells (hASC and 3DCM, 5 x 10(5) cells) were injected into ischemic regions after ligation of the left coronary artery (n = 6 in each group). Cell retention ratio, therapeutic efficacy and vascularization were evaluated 4 weeks after transplant. Results. A spheroid-type 3DCM, which included vascular cells (CD34(+)/CD31(+)/KDR+/alpha-SMA(+)) with high production of human vascular endothelial growth factor, was obtained. Infarct size and cardiomyocyte apoptosis were reduced in the 3DCM-injected group compared with the hASC-injected group. The retention ratio of hASC was 14-fold higher in the 3DCM-injected group. Many transplanted cells differentiated into endothelial and smooth muscle cells and formed vascular networks incorporated into host vessels. Conclusions. Transplant of 3DCM may be useful for angiogenic cell therapy to treat MI.
Keywords
STROMAL CELLS; MYOCARDIAL-INFARCTION; CARDIAC-FUNCTION; GROWTH; PROGENITOR; SPHEROIDS; DIFFERENTIATION; SECRETION; DELIVERY; TRANSPLANTATION; STROMAL CELLS; MYOCARDIAL-INFARCTION; CARDIAC-FUNCTION; GROWTH; PROGENITOR; SPHEROIDS; DIFFERENTIATION; SECRETION; DELIVERY; TRANSPLANTATION; angiogenesis; cell adhesion substrate; differentiation; human adipose-derived stem cells; myocardial infarction; stem cell transplant; three-dimensional cell mass; vascularization
ISSN
1465-3249
URI
https://pubs.kist.re.kr/handle/201004/128113
DOI
10.1016/j.jcyt.2012.11.016
Appears in Collections:
KIST Article > 2013
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