Maessen MFH, Eijsvogels TMH, Stevens G, et al. Benefits of lifelong exercise training on left ventricular function after myocardial infarction. Eur J Prev Cardiol. 2017; 24: 1856–1866.
2.
De WaardMCDunckerDJ. Prior exercise improves survival, infarct healing, and left ventricular function after myocardial infarction. J Appl Physiol2009; 107: 928–936.
3.
GuizoniDMOliveira-JuniorSANoorSLet al.Effects of late exercise on cardiac remodeling and myocardial calcium handling proteins in rats with moderate and large size myocardial infarction. Int J Cardiol2016; 221: 406–412.
4.
HouJWangLJiangJet al.Cardiac stem cells and their roles in myocardial infarction. Stem Cell Rev2013; 9: 326–338.
5.
AwadaHKHwangMPWangY. Towards comprehensive cardiac repair and regeneration after myocardial infarction: Aspects to consider and proteins to deliver. Biomaterials2016; 82: 94–112.
6.
FrangogiannisNG. The extracellular matrix in myocardial injury, repair, and remodeling. J Clin Invest2017; 127: 1600–1612.
7.
BansalADaiQChiaoYA. Proteomic analysis reveals late exercise effects on cardiac remodeling following myocardial infarction. J Proteomics2010; 73: 2041–2049.
8.
WangYLiMDongFet al.Physical exercise-induced protection on ischemic cardiovascular and cerebrovascular diseases. Int J Clin Exp Med2015; 8: 19859–19866.
9.
ZimmerPBlochW. Physical exercise and epigenetic adaptations of the cardiovascular system. Herz2015; 40: 353–360.
10.
WestmanPCLipinskiMJLugerDet al.Inflammation as a driver of adverse left ventricular remodeling after acute myocardial infarction. J Am Coll Cardiol2016; 67: 2050–2060.
11.
SafdarASaleemATarnopolskyMA. The potential of endurance exercise-derived exosomes to treat metabolic diseases. Nat Rev Endocrinol2016; 12: 504–517.