Reactivating endogenous mechanisms of cardiac regeneration via paracrine boosting using the human amniotic fluid stem cell secretome

被引:63
作者
Balbi, Carolina [1 ,2 ]
Lodder, Kirsten [3 ]
Costa, Ambra [1 ]
Moimas, Silvia [4 ]
Moccia, Francesco [5 ]
van Herwaarden, Tessa [3 ]
Rosti, Vittorio [6 ]
Campagnoli, Francesca [1 ]
Palmeri, Agnese [7 ]
De Biasio, Pierangela [7 ]
Santini, Francesco [8 ]
Giacca, Mauro [4 ]
Goumans, Marie-Jose [3 ]
Barile, Lucio [2 ]
Smits, Anke M. [3 ]
Bollini, Sveva [1 ]
机构
[1] Univ Genoa, Dept Expt Med, Regenerat Med Lab, Genoa, Italy
[2] CardioCtr Ticino, Mol & Cell Cardiol Lab, Lugano, Switzerland
[3] Leiden Univ, Dept Cell & Chem Biol, Med Ctr, Leiden, Netherlands
[4] ICGEB, Mol Med Lab, Trieste, Italy
[5] Univ Pavia, Dept Biol & Biotechnol Lazzaro Spallanzani, Gen Physiol Lab, Pavia, Italy
[6] IRCCS Osped Policlin San Matteo, Myelofibrosis Study Ctr, Lab Biochem Biotechnol & Adv Diagnost, Pavia, Italy
[7] IRCCS Osped Policlin San Martino, Dept Obstet & Gynecol, Genoa, Italy
[8] IRCCS Osped Policlin San Martino, Div Cardiac Surg, Genoa, Italy
关键词
MYOCARDIAL-INFARCTION; PROGENITOR CELLS; SOLUBLE FACTORS; HEART; ANGIOGENESIS; MEDIATE; ADULT; PROLIFERATION; OSCILLATIONS; EXOSOMES;
D O I
10.1016/j.ijcard.2019.04.011
中图分类号
R5 [内科学];
学科分类号
100201 [内科学];
摘要
Background: The adult mammalian heart retains residual regenerative capability via endogenous cardiac progenitor cell (CPC) activation and cardiomyocyte proliferation. We previously reported the paracrine cardioprotective capacity of human amniotic fluid-derived stem cells (hAFS) following ischemia or cardiotoxicity. Here we analyse the potential of hAFS secretome fractions for cardiac regeneration and future clinical translation. Methods: hAFS were isolated from amniotic fluid leftover samples from prenatal screening. hAFS conditioned medium (hAFS-CM) was obtained following hypoxic preconditioning. Anti-apoptotic, angiogenic and proliferative effects were evaluated on rodent neonatal cardiomyocytes (r/mNVCM), human endothelial colony forming cells (hECFC) and human CPC. Mice undergoing myocardial infarction (MI) were treated with hAFS-CM, hAFS-extracellular vesicles (hAFS-EV), or EV-depleted hAFS-CM(hAFS-DM) by single intra-myocardial administration and evaluated in the short and long term. Results: hAFS-CM improved mNVCM survival under oxidative and hypoxic damage, induced Ca2+-dependent angiogenesis in hECFC and triggered hCPC and rNVCM proliferation. hAFS-CM treatment after MI counteracted scarring, supported cardiac function, angiogenesis and cardiomyocyte cell cycle progression in the long term. hAFS-DM had no effect. hAFS-CM and hAFS-EV equally induced epicardium WT1+CPC reactivation. Although no CPC cardiovascular differentiation was observed, our data suggests contribution to local angiogenesis by paracrine modulation. hAFS-EV alone were able to recapitulate all the beneficial effects exerted by hAFS-CM, except for stimulation of vessel formation. Conclusions: hAFS-CM and hAFS-EV can improve cardiac repair and trigger cardiac regeneration via paracrine modulation of endogenous mechanisms. While both formulations are effective in sustaining myocardial renewal, hAFS-CM retains higher pro-angiogenic potential, while hAFS-EV particularly enhances cardiac function. (c) 2019 Elsevier B.V. All rights reserved.
引用
收藏
页码:87 / 95
页数:9
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