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AuthorAbou-Saleh, Haissam
AuthorZouein, Fouad A
AuthorEl-Yazbi, Ahmed
AuthorSanoudou, Despina
AuthorRaynaud, Christophe
AuthorRao, Christopher
AuthorPintus, Gianfranco
AuthorDehaini, Hassan
AuthorEid, Ali H
Available date2018-09-06T08:53:54Z
Publication Date2018-07-01
Publication NameStem Cell Research and Therapy
Identifierhttp://dx.doi.org/10.1186/s13287-018-0947-5
CitationAbou-Saleh et al. The march of pluripotent stem cells in cardiovascular regenerative medicine. aStem Cell Research & Therapy (2018) 9:201 https://doi.org/10.1186/s13287-018-0947-5
URIhttp://hdl.handle.net/10576/11022
AbstractCardiovascular disease (CVD) continues to be the leading cause of global morbidity and mortality. Heart failure remains a major contributor to this mortality. Despite major therapeutic advances over the past decades, a better understanding of molecular and cellular mechanisms of CVD as well as improved therapeutic strategies for the management or treatment of heart failure are increasingly needed. Loss of myocardium is a major driver of heart failure. An attractive approach that appears to provide promising results in reducing cardiac degeneration is stem cell therapy (SCT). In this review, we describe different types of stem cells, including embryonic and adult stem cells, and we provide a detailed discussion of the properties of induced pluripotent stem cells (iPSCs). We also present and critically discuss the key methods used for converting somatic cells to pluripotent cells and iPSCs to cardiomyocytes (CMs), along with their advantages and limitations. Integrating and non-integrating reprogramming methods as well as characterization of iPSCs and iPSC-derived CMs are discussed. Furthermore, we critically present various methods of differentiating iPSCs to CMs. The value of iPSC-CMs in regenerative medicine as well as myocardial disease modeling and cardiac regeneration are emphasized.
Languageen
PublisherBMC
SubjectCardiomyocytes
Cardiovascular disease
Heart failure
Regenerative medicine
Stem cell therapy
iPSCs
TitleThe march of pluripotent stem cells in cardiovascular regenerative medicine.
TypeArticle Review
Volume Number9
ESSN1757-6512


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