Human Umbilical Cord-Derived Mesenchymal Stromal Cells Improve Left Ventricular Function, Perfusion, and Remodeling in a Porcine Model of Chronic Myocardial Ischemia

被引:89
作者
Liu, Chuan-Bin [1 ]
Huang, He [2 ]
Sun, Ping [3 ]
Ma, Shi-Ze [3 ]
Liu, An-Heng [1 ]
Xue, Jian [1 ]
Fu, Jin-Hui [1 ]
Liang, Yu-Qian [3 ]
Liu, Bing [4 ]
Wu, Dong-Ying [3 ]
Lu, Shuang-Hong [1 ]
Zhang, Xiao-Zhong [1 ]
机构
[1] Acad Mil Med Sci, Affiliated Hosp, Dept Cardiovasc Med, 8 Dongda St, Beijing 100071, Peoples R China
[2] Third Mil Med Univ, Xinqiao Hosp, Dept Anesthesia, Chongqing, Peoples R China
[3] Ivy Inst Stem Cells Co Ltd, Beijing, Peoples R China
[4] Acad Mil Med Sci, Affiliated Hosp, Lab Oncol, Ivy Translat Med Ctr 307, Beijing, Peoples R China
基金
中国国家自然科学基金;
关键词
Umbilical cord; Mesenchymal stromal cells; Chronic myocardial ischemia; Ischemic heart disease; Ventricular remodeling; STEM-CELLS; CARDIAC-FUNCTION; INTRACORONARY INFUSION; DIABETES-MELLITUS; MONONUCLEAR-CELLS; DOUBLE-BLIND; INFARCTION; CARDIOMYOPATHY; DELIVERY; DISEASE;
D O I
10.5966/sctm.2015-0298
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Stem cell therapy has emerged as a new strategy for treatment of ischemic heart disease. Although umbilical cord-derived mesenchymal stromal cells (UC-MSCs) have been used preferentially in the acute ischemia model, data for the chronic ischemia model are lacking. In this study, we investigated the effect of UC-MSCs originated from Wharton's jelly in the treatment of chronic myocardial ischemia in a porcine model induced by ameroid constrictor. Four weeks after ameroid constrictor placement, the surviving animals were divided randomly into two groups to undergo saline injection (n = 6) or UC-MSC transplantation (n = 6) through the left main coronary artery. Two additional intravenous administrations of UC-MSCs were performed in the following 2weeks to enhance therapeutic effect. Cardiac function and perfusion were examined just before and at 4 weeks after intracoronary transplantation. The results showed that pigs with UC-MSC transplantation exhibited significantly greater left ventricular ejection fraction compared with control animals (61.3% +/- 1.3% vs. 50.3% +/- 2.0%, p< .05). The systolic thickening fraction in the infarcted left ventricular wall was also improved (41.2% +/- 3.3% vs. 46.2% +/- 2.3%, p < .01). Additionally, the administration of UC-MSCs promoted collateral development and myocardial perfusion. The indices of fibrosis and apoptosis were also significantly reduced. Immunofluorescence staining showed clusters of CM-DiI-labeled cells in the border zone, some of which expressed von Willebrand factor. These results suggest that UC-MSC treatment improves left ventricular function, perfusion, and remodeling in a porcine model with chronic myocardial ischemia. SIGNIFICANCE Ischemic heart disease is the leading cause of death worldwide. Many patients with chronic myocardial ischemia are not suitable for surgery and have no effective drug treatment; they are called "nooption" patients. This study finds that umbilical cord-derived mesenchymal stromal cells transplanted by intracoronary delivery combined with two intravenous administrations was safe and could significantly improve left ventricular function, perfusion, and remodeling in a large-animal model of chronic myocardial ischemia, which provides a new choice for the no-option patients. In addition, this study used clinical-grade mesenchymal stem cells with delivery and assessment methods commonly used clinically to facilitate further clinical transformation.
引用
收藏
页码:1004 / 1013
页数:10
相关论文
共 32 条
[1]   Effect of diabetes mellitus on formation of coronary collateral vessels [J].
Abaci, A ;
Oguzhan, A ;
Kahraman, S ;
Eryol, NK ;
Ünal, S ;
Arinç, H ;
Ergin, A .
CIRCULATION, 1999, 99 (17) :2239-2242
[2]   Long-term clinical outcome after intracoronary application of bone marrow-derived mononuclear cells for acute myocardial infarction: migratory capacity of administered cells determines event-free survival [J].
Assmus, Birgit ;
Leistner, David M. ;
Schaechinger, Volker ;
Erbs, Sandra ;
Elsaesser, Albrecht ;
Haberbosch, Werner ;
Hambrecht, Rainer ;
Sedding, Daniel ;
Yu, Jiangtao ;
Corti, Roberto ;
Mathey, Detlef G. ;
Barth, Christine ;
Mayer-Wehrstein, Charlotte ;
Burck, Iris ;
Sueselbeck, Tim ;
Dill, Thorsten ;
Hamm, Christian W. ;
Tonn, Torsten ;
Dimmeler, Stefanie ;
Zeiher, Andreas M. .
EUROPEAN HEART JOURNAL, 2014, 35 (19) :1275-1283
[3]   Intracoronary Delivery of Autologous Cardiac Stem Cells Improves Cardiac Function in a Porcine Model of Chronic Ischemic Cardiomyopathy [J].
Bolli, Roberto ;
Tang, Xian-Liang ;
Sanganalmath, Santosh K. ;
Rimoldi, Ornella ;
Mosna, Federico ;
Abdel-Latif, Ahmed ;
Jneid, Hani ;
Rota, Marcello ;
Leri, Annarosa ;
Kajstura, Jan .
CIRCULATION, 2013, 128 (02) :122-131
[4]   Islet-Like Clusters Derived from Mesenchymal Stem Cells in Wharton's Jelly of the Human Umbilical Cord for Transplantation to Control Type 1 Diabetes [J].
Chao, Kuo Ching ;
Chao, Kuo Fang ;
Fu, Yu Show ;
Liu, Shing Hwa .
PLOS ONE, 2008, 3 (01)
[5]   Mesenchymal Stem Cell Insights: Prospects in Cardiovascular Therapy [J].
Chou, Shiu-Huey ;
Lin, Shinn-Zong ;
Kuo, Wei-Wen ;
Pai, Peiying ;
Ling, Jing-Ying ;
Lai, Chao-Hung ;
Kuo, Chia-Hua ;
Lin, Kuan-Ho ;
Tsai, Fuu-Jen ;
Huang, Chih-Yang .
CELL TRANSPLANTATION, 2014, 23 (4-5) :513-529
[6]   Minimal criteria for defining multipotent mesenchymal stromal cells. The International Society for Cellular Therapy position statement [J].
Dominici, M. ;
Le Blanc, K. ;
Mueller, I. ;
Slaper-Cortenbach, I. ;
Marini, F. C. ;
Krause, D. S. ;
Deans, R. J. ;
Keating, A. ;
Prockop, D. J. ;
Horwitz, E. M. .
CYTOTHERAPY, 2006, 8 (04) :315-317
[7]   Circulating endothelial progenitor cells are reduced in peripheral vascular complications of type 2 diabetes mellitus [J].
Fadini, GP ;
Miorin, M ;
Facco, M ;
Bonamico, S ;
Baesso, I ;
Grego, F ;
Menegolo, M ;
de Kreutzenberg, SV ;
Tiengo, A ;
Agostini, C ;
Avogaro, A .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2005, 45 (09) :1449-1457
[8]   A quantitative, randomized study evaluating three methods of mesenchymal stem cell delivery following myocardial infarction [J].
Freyman, T ;
Polin, G ;
Osman, H ;
Crary, J ;
Lu, MM ;
Cheng, L ;
Palasis, M ;
Wilensky, RL .
EUROPEAN HEART JOURNAL, 2006, 27 (09) :1114-1122
[9]   Intracoronary infusion of Wharton's jelly-derived mesenchymal stem cells in acute myocardial infarction: double-blind, randomized controlled trial [J].
Gao, Lian R. ;
Chen, Yu ;
Zhang, Ning K. ;
Yang, Xi L. ;
Liu, Hui L. ;
Wang, Zhi G. ;
Yan, Xiao Y. ;
Wang, Yu ;
Zhu, Zhi M. ;
Li, Tian C. ;
Wang, Li H. ;
Chen, Hai Y. ;
Chen, Yun D. ;
Huang, Chao L. ;
Qu, Peng ;
Yao, Chen ;
Wang, Bin ;
Chen, Guang H. ;
Wang, Zhong M. ;
Xu, Zhao Y. ;
Bai, Jing ;
Lu, Di ;
Shen, Yan H. ;
Guo, Feng ;
Liu, Mu Y. ;
Yang, Yong ;
Ding, Yan C. ;
Yang, Ye ;
Tian, Hai T. ;
Ding, Qing A. ;
Li, Li N. ;
Yang, Xin C. ;
Hu, Xiang .
BMC MEDICINE, 2015, 13
[10]   High Doses of Vascular Endothelial Growth Factor 165 Safely, but Transiently, Improve Myocardial Perfusion in No-Option Ischemic Disease [J].
Giusti, Imarilde I. ;
Rodrigues, Clarissa G. ;
Salles, Felipe B. ;
Sant'Anna, Roberto T. ;
Eibel, Bruna ;
Han, Sang W. ;
Ludwig, Eduardo ;
Grossman, Gabriel ;
Prates, Paulo Roberto L. ;
Sant'Anna, Joao Ricardo M. ;
Teixeira Filho, Guaracy F. ;
Markoski, Melissa M. ;
Nesralla, Ivo A. ;
Nardi, Nance B. ;
Kalil, Renato A. K. .
HUMAN GENE THERAPY METHODS, 2013, 24 (05) :298-306