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Titlebook: Cardiac Regeneration; Masaki Ieda,Wolfram-Hubertus Zimmermann Book 2017 Springer International Publishing AG 2017 fibroblast.heart repair.

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Normalization and MCDM Rank Model,en a bottleneck for the progress of cell therapy for heart diseases. The adherent cell culture platforms have been well developed for hPSC maintenance and cardiac differentiation. However, the two-dimensional culture system is limited by its scalability, hindering its application for scale-up cell p
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Normally Hyperbolic Invariant Manifoldscells types and may be used as cell sources for regenerative medicine in the context of various diseases, including severe heart failure. However, one of the biggest hurdles in the use of human PSCs for clinical applications is tumor formation due to contamination with residual tumor-forming cells,
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Atlantis Studies in Dynamical Systemsaction (e.g., by promoting angiogenesis or attenuating adverse ventricular remodeling), cardiomyocyte transplantation aims to repopulate the infarct scar with functionally integrated new myocardium that will directly contribute to contractile function. Early proof of concept for this “direct remuscu
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Miscellaneous Properties and Results, have been obtained in animal models. First clinical trials are on the way to explore the therapeutic utility of cell-free and non-contractile cell-containing grafts. Engineering of contractile patches according to current good manufacturing practice (cGMP) for bona fide myocardial re-muscularizatio
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Foliations of Unstable Manifolds,erapeutic mechanisms and efficacy. In this chapter, we summarize the roles of various imaging modalities in assessing cell fate and cardiac function following stem cell therapy. The advancement of these imaging technologies is crucial for the full clinical translation of cardiac stem cell therapy.
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Cardiac Regeneration978-3-319-56106-6Series ISSN 2509-7830 Series E-ISSN 2509-7849
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Foliations of Unstable Manifolds,erapeutic mechanisms and efficacy. In this chapter, we summarize the roles of various imaging modalities in assessing cell fate and cardiac function following stem cell therapy. The advancement of these imaging technologies is crucial for the full clinical translation of cardiac stem cell therapy.
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