Mesenchymal stem cells overexpressing integrin-linked kinase attenuate left ventricular remodeling and improve cardiac function after myocardial infarction

被引:0
|
作者
Qing Mao
Chengxi Lin
Jianshu Gao
Xiulin Liang
Wei Gao
Li Shen
Lina Kang
Biao Xu
机构
[1] The Third Affiliated Hospital of Suzhou University,Department of Cardiology, The First People’s Hospital of Changzhou
[2] Nanjing University Medical School,Department of Cardiology, Drum Tower Hospital
[3] The Third Affiliated Hospital of Suzhou University,Department of Gerontology, The First People’s Hospital of Changzhou
[4] Nanjing University Medical School,Department of Respiratory Medicine, Jinling Hospital
[5] Jinling Hospital,Department of Cardiothoracic Surgery
[6] Nanjing University Medical School,undefined
来源
关键词
Mesenchymal stem cells; Integrin-linked kinase; Gene therapy; Myocardial infarction; Remodeling;
D O I
暂无
中图分类号
学科分类号
摘要
In the present study, we investigated whether mesenchymal stem cells (MSCs) overexpressing integrin-linked kinase (ILK) might regulate ventricular remodeling and cardiac function in a porcine myocardial infarction model. ILK-modified MSCs (ILK-MSCs) (n = 8), MSCs (n = 8) or placebo (n = 8) were injected into peri-infarct myocardium 7 days after ligation of the left anterior descending coronary artery. ILK expression was confirmed by immunofluorescence, real-time PCR, Western blot analysis, and flow cytometry. In vitro assays indicated increased proliferation and reduced apoptosis of MSCs due to overexpression of ILK. Echocardiographic, single-photon emission computed tomography and positron emission tomography analyses demonstrated preserved cardiac function and myocardial perfusion. Reduced fibrosis, increased cardiomyocyte proliferation, and enhanced angiogenesis were observed in the ILK-MSC group. Reduced apoptosis, as demonstrated by terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling analysis, was also noted. In conclusion, ILK promotes MSC proliferation and suppresses apoptosis. ILK-MSC transplantation improves ventricular remodeling and cardiac function in pigs after MI. It is associated with increased angiogenesis, reduced apoptosis, and increased cardiomyocyte proliferation. This may represent a new approach to the treatment of post-infarct remodeling and subsequent heart failure.
引用
收藏
页码:203 / 214
页数:11
相关论文
共 50 条
  • [31] Exosomes Derived From Cardiac Progenitor Cells Attenuate Left Ventricular Dysfunction and Remodeling After Myocardial Infarction via Epigenetic Modulations.
    Li, Qianhong
    Devadoss, Dinesh
    Nong, Yibing
    Khallaf, Ashraf
    Mohammed, Azam
    Kutmah, Huda
    Chen, Ning
    Guo, Yiru
    Bolli, Roberto
    CIRCULATION, 2018, 138
  • [32] Pluripotent stem cell-derived mesenchymal stromal cells improve cardiac function and vascularity after myocardial infarction
    Thavapalachandran, Sujitha
    Le, Thi Yen Loan
    Romanazzo, Sara
    Rashid, Fairooj N.
    Ogawa, Masahito
    Kilian, Kristopher A.
    Brown, Paula
    Pouliopoulos, Jim
    Barry, Anthony M.
    Fahmy, Peter
    Kelly, Kilian
    Kizana, Eddy
    Chong, James J. H.
    CYTOTHERAPY, 2021, 23 (12) : 1074 - 1084
  • [33] Diacerein Improves Left Ventricular Remodeling and Cardiac Function by Reducing the Inflammatory Response after Myocardial Infarction
    Torina, Anali Galluce
    Reichert, Karla
    Lima, Fany
    de Souza Vilarinho, Karlos Alexandre
    Martins de Oliveira, Pedro Paulo
    Pereira do Carmo, Helison Rafael
    de Carvalho, Daniela Diogenes
    Abdalla Saad, Mario Jose
    Sposito, Andrei Carvalho
    Petrucci, Orlando
    PLOS ONE, 2015, 10 (03):
  • [34] Colchicine Improves Survival, Left Ventricular Remodeling, and Chronic Cardiac Function After Acute Myocardial Infarction
    Fujisue, Koichiro
    Sugamura, Koichi
    Kurokawa, Hirofumi
    Matsubara, Junichi
    Ishii, Masanobu
    Izumiya, Yasuhiro
    Kaikita, Koichi
    Sugiyama, Seigo
    CIRCULATION JOURNAL, 2017, 81 (08) : 1174 - +
  • [35] Intramyocardial Delivery of Mesenchymal Stem Cell-Seeded Hydrogel Preserves Cardiac Function and Attenuates Ventricular Remodeling after Myocardial Infarction
    Mathieu, Eva
    Lamirault, Guillaume
    Toquet, Claire
    Lhommet, Pierre
    Rederstorff, Emilie
    Sourice, Sophie
    Biteau, Kevin
    Hulin, Philippe
    Forest, Virginie
    Weiss, Pierre
    Guicheux, Jerome
    Lemarchand, Patricia
    PLOS ONE, 2012, 7 (12):
  • [36] Integrin-Linked Kinase Is Required in Hypoxic Mesenchymal Stem Cells for Strengthening Cell Adhesion to Ischemic Myocardium
    Song, Suk-Won
    Chang, Woochul
    Song, Byeong-Wook
    Song, Heesang
    Lim, Soyeon
    Kim, Hye-Jung
    Cha, Min-Ji
    Choi, Eunju
    Im, Sin-Hyeog
    Chang, Byung-Chul
    Chung, Namsik
    Jang, Yangsoo
    Hwang, Ki-Chul
    STEM CELLS, 2009, 27 (06) : 1358 - 1365
  • [37] Intracoronary administration of cardiac stem cells improves left ventricular function after infarction
    Dawn, B
    Stein, AB
    Tang, XL
    Kajstura, J
    Rezazadeh, A
    Prabhu, SD
    Beltrami, A
    Urbanek, K
    Anversa, P
    Bolli, R
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2003, 35 (06) : A27 - A27
  • [38] Intracoronary Delivery of Allogeneic Mesenchymal Precursor Cells Directly after Acute Myocardial Infarction Improves Cardiac Function and Myocardial Perfusion and Decreases Adverse Left Ventricular Remodeling in Sheep
    Houtgraaf, Jaco
    de Jong, Renate
    de Groot, Daphne
    Hoeffer, Imo
    Pasterkamp, Gerard
    Duckers, Henricus
    CIRCULATION, 2010, 122 (21)
  • [39] Changes in left ventricular function and remodeling after myocardial infarction in hypothyroid rats
    Chen, Yue-Feng
    Redetzke, Rebecca A.
    Said, Suleman
    Beyer, April J.
    Gerdes, A. Martin
    AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2010, 298 (01): : H259 - H262
  • [40] RORγt-expressing cells attenuate cardiac remodeling after myocardial infarction
    Enomoto, Daichi
    Matsumoto, Kotaro
    Yamashita, Tomomi
    Kobayashi, Arisa
    Maeda, Makiko
    Nakayama, Hiroyuki
    Obana, Masanori
    Fujio, Yasushi
    PLOS ONE, 2017, 12 (08):