Multifactorial approaches to enhance maturation of human iPSC-derived cardiomyocytes

被引:3
|
作者
Kistamas, Kornel [1 ]
Muller, Anna [1 ]
Muenthaisong, Suchitra [1 ]
Lamberto, Federica [1 ,2 ]
Zana, Melinda [1 ]
Dulac, Martin [3 ]
Leal, Filipa [4 ]
Maziz, Ali [5 ]
Costa, Pedro [4 ]
Bernotiene, Eiva [6 ]
Bergaud, Christian [5 ]
Dinnyes, Andras [1 ,7 ]
机构
[1] BioTalentum Ltd, Aulich Laj Str 26, H-2100 Godollo, Hungary
[2] Hungarian Univ Agr & Life Sci, Inst Physiol & Anim Nutr, Dept Physiol & Anim Hlth, Pater Karoly Str 1, H-2100 Godollo, Hungary
[3] OSPIN GmbH, Helmholtzstr 9, D-10587 Berlin, Germany
[4] Biofab Lda, Rua Alfredo Allen 455, P-4200135 Porto, Portugal
[5] French Natl Ctr Sci Res LAAS CNRS, Lab Anal & Architecture Syst, 7 Ave Colonel Roche, F-31400 Toulouse, France
[6] State Res Inst Ctr Innovat Med, Dept Regenerat Med, Santariskiu G 5, LT-08406 Vilnius, Lithuania
[7] Univ Szeged, Dept Cell Biol & Mol Med, Dugon Sq 13, H-6720 Szeged, Hungary
基金
欧盟地平线“2020”;
关键词
hiPSC-CM; Human induced pluripotent stem cells; Cardiomyocyte; Heart-on-a-chip; Electrospun scaffolds; Biocompatible materials; PLURIPOTENT STEM-CELLS; ENGINEERED HEART-TISSUE; ORAL D-SOTALOL; CARDIAC TISSUE; ELECTRICAL-STIMULATION; MYOCARDIAL-INFARCTION; ENDOTHELIAL-CELLS; ELECTROPHYSIOLOGICAL MATURATION; MECHANICAL STIMULATION; CYCLIC STRAIN;
D O I
10.1016/j.molliq.2023.122668
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
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.
引用
收藏
页数:21
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