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Multifactorial approaches to enhance maturation of human iPSC-derived cardiomyocytes

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Date
2023
Author
Kistamás, Kornél
Müller, Anna
Muenthaisong, Suchitra
Lamberto, Federica
Zana, Melinda
Dulac, Martin
Leal, Filipa
Maziz, Ali
Costa, Pedro
Bernotienė, Eiva
Bergaud, Christian
Dinnyés, András
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Abstract
Cardiovascular diseases are the leading cause of death worldwide. Several strategies – small molecules, gene therapy, surgeries, cardiac rehabilitation – have been developed to treat patients with cardiac disorders or to prevent the disease. A novel promising tool is the application of induced pluripotent stem cell-derived human cardiomyocytes; however, their clinical application is hampered by their fundamentally immature characteristics. Although several approaches were recently proven to support certain aspects of cardiac maturation, it has been discovered that any kind of stimulus itself is insufficient to induce proper maturation of these cardiomyocytes. Therefore, researchers have developed multifactorial approaches linking biotechnology, life sciences and material sciences toolsets. In this review, we summarise the current state-of-the-art methodologies in cardiac differentiation and maturation with the application of biocompatible materials and automated cell culture systems combined with various electrical, mechanical, topological, and biochemical stimuli.
Issue date (year)
2023
URI
https://etalpykla.vilniustech.lt/xmlui/handle/123456789/153658
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  • Straipsniai Web of Science ir/ar Scopus referuojamuose leidiniuose / Articles in Web of Science and/or Scopus indexed sources [7946]

 

 

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