2020
DMD Pluripotent Stem Cell Derived Cardiac Cells Recapitulate in vitro Human Cardiac Pathophysiology
JELÍNKOVÁ, Šárka; Aleksandra VILOTIĆ; Jan PŘIBYL; Franck AIMOND; Anton SALYKIN et. al.Základní údaje
Originální název
DMD Pluripotent Stem Cell Derived Cardiac Cells Recapitulate in vitro Human Cardiac Pathophysiology
Autoři
JELÍNKOVÁ, Šárka; Aleksandra VILOTIĆ; Jan PŘIBYL ORCID; Franck AIMOND; Anton SALYKIN; Ivana AĆIMOVIĆ; Martin PEŠL; Guido CALUORI; Šimon KLIMOVIČ; Tomáš URBAN; Hana DOBROVOLNÁ; Vladimír SOŠKA; Petr SKLÁDAL; Alain LACAMPAGNE; Petr DVOŘÁK; Albano C. MELI a Vladimír ROTREKL
Vydání
Frontiers in bioengineering and biotechnology, Laussane, Frontiers Media S.A. 2020, 2296-4185
Další údaje
Jazyk
angličtina
Typ výsledku
Článek v odborném periodiku
Obor
30401 Health-related biotechnology
Stát vydavatele
Švýcarsko
Utajení
není předmětem státního či obchodního tajemství
Odkazy
Impakt faktor
Impact factor: 5.890
Kód RIV
RIV/00216224:14110/20:00116091
Organizační jednotka
Lékařská fakulta
UT WoS
000548398600001
EID Scopus
2-s2.0-85087507068
Klíčová slova anglicky
duchenne muscular dystrophy; DMD; human pluripotent stem cells; cardiomyocytes; intracellular calcium; excitation-contraction coupling; adrenergic response; cardiomyocyte death
Příznaky
Mezinárodní význam, Recenzováno
Změněno: 24. 10. 2024 14:10, Mgr. Adéla Pešková
Anotace
V originále
Duchenne muscular dystrophy (DMD) is a severe genetic disorder characterized by the lack of functional dystrophin. DMD is associated with progressive dilated cardiomyopathy, eventually leading to heart failure as the main cause of death in DMD patients. Although several molecular mechanisms leading to the DMD cardiomyocyte (DMD-CM) death were described, mostly in mouse model, no suitable human CM model was until recently available together with proper clarification of the DMD-CM phenotype and delay in cardiac symptoms manifestation. We obtained several independent dystrophin-deficient human pluripotent stem cell (hPSC) lines from DMD patients and CRISPR/Cas9-generated DMD gene mutation. We differentiated DMD-hPSC into cardiac cells (CC) creating a human DMD-CC disease model. We observed that mutation-carrying cells were less prone to differentiate into CCs. DMD-CCs demonstrated an enhanced cell death rate in time. Furthermore, ion channel expression was altered in terms of potassium (Kir2.1 overexpression) and calcium handling (dihydropyridine receptor overexpression). DMD-CCs exhibited increased time of calcium transient rising compared to aged-matched control, suggesting mishandling of calcium release. We observed mechanical impairment (hypocontractility), bradycardia, increased heart rate variability, and blunted beta-adrenergic response connected with remodeling of beta-adrenergic receptors expression in DMD-CCs. Overall, these results indicated that our DMD-CC models are functionally affected by dystrophin-deficiency associated and recapitulate functional defects and cardiac wasting observed in the disease. It offers an accurate tool to study human cardiomyopathy progression and test therapiesin vitro.
Návaznosti
| EF16_013/0001776, projekt VaV |
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| LM2018127, projekt VaV |
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| ROZV/28/LF12/2020, interní kód MU |
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| 2SGA2744, interní kód MU |
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| 7AMB13FR011, projekt VaV |
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