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Optical Investigation of Action Potential and Calcium Handling Maturation of hiPSC-Cardiomyocytes on Biomimetic Substrates

Authors :
Corrado Poggesi
Chiara Tesi
Sara Landi
Cecilia Ferrantini
Camilla Parmeggiani
Marianna Langione
Bruno Grandinetti
Michael Regnier
Chiara Palandri
Laura Sartiani
Josè Manuel Pioner
Patrizia Benzoni
Andrea Barbuti
Flavia Lupi
David L. Mack
Raffaele Coppini
Luca Boarino
Daniele Martella
Elisabetta Cerbai
Federico Ferrarese Lupi
Valentina Balducci
Silvia Querceto
Lorenzo Santini
Source :
International Journal of Molecular Sciences, International journal of molecular sciences, 20 (2019): 3799–3799. doi:10.3390/ijms20153799, info:cnr-pdr/source/autori:Pioner, Jose Manuel; Santini, Lorenzo; Palandri, Chiara; Martella, Daniele; Lupi, Flavia; Langione, Marianna; Querceto, Silvia; Grandinetti, Bruno; Balducci, Valentina; Benzoni, Patrizia; Landi, Sara; Barbuti, Andrea; Lupi, Federico Ferrarese; Boarino, Luca; Sartiani, Laura; Tesi, Chiara; Mack, David L.; Regnier, Michael; Cerbai, Elisabetta; Parmeggiani, Camilla; Poggesi, Corrado; Ferrantini, Cecilia; Coppini, Raffaele/titolo:Optical Investigation of Action Potential and Calcium Handling Maturation of hiPSC-Cardiomyocytes on Biomimetic Substrates/doi:10.3390%2Fijms20153799/rivista:International journal of molecular sciences (Print)/anno:2019/pagina_da:3799/pagina_a:3799/intervallo_pagine:3799–3799/volume:20, International Journal of Molecular Sciences, Vol 20, Iss 15, p 3799 (2019), Volume 20, Issue 15
Publication Year :
2019
Publisher :
MDPI AG, 2019.

Abstract

Cardiomyocytes from human induced pluripotent stem cells (hiPSC-CMs) are the most promising human source with preserved genetic background of healthy individuals or patients. This study aimed to establish a systematic procedure for exploring development of hiPSC-CM functional output to predict genetic cardiomyopathy outcomes and identify molecular targets for therapy. Biomimetic substrates with microtopography and physiological stiffness can overcome the immaturity of hiPSC-CM function. We have developed a custom-made apparatus for simultaneous optical measurements of hiPSC-CM action potential and calcium transients to correlate these parameters at specific time points (day 60, 75 and 90 post differentiation) and under inotropic interventions. In later-stages, single hiPSC-CMs revealed prolonged action potential duration, increased calcium transient amplitude and shorter duration that closely resembled those of human adult cardiomyocytes from fresh ventricular tissue of patients. Thus, the major contribution of sarcoplasmic reticulum and positive inotropic response to &beta<br />adrenergic stimulation are time-dependent events underlying excitation contraction coupling (ECC) maturation of hiPSC-CM<br />biomimetic substrates can promote calcium-handling regulation towards adult-like kinetics. Simultaneous optical recordings of long-term cultured hiPSC-CMs on biomimetic substrates favor high-throughput electrophysiological analysis aimed at testing (mechanistic hypothesis on) disease progression and pharmacological interventions in patient-derived hiPSC-CMs.

Details

ISSN :
14220067
Volume :
20
Database :
OpenAIRE
Journal :
International Journal of Molecular Sciences
Accession number :
edsair.doi.dedup.....5aa3cce4ca0bd1ed78c912dab895a96e
Full Text :
https://doi.org/10.3390/ijms20153799