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1.
Stem Cell Reports ; 9(5): 1546-1559, 2017 11 14.
Artículo en Inglés | MEDLINE | ID: mdl-29107590

RESUMEN

High-purity cardiomyocytes (CMs) derived from human induced pluripotent stem cells (hiPSCs) are promising for drug development and myocardial regeneration. However, most hiPSC-derived CMs morphologically and functionally resemble immature rather than adult CMs, which could hamper their application. Here, we obtained high-quality cardiac tissue-like constructs (CTLCs) by cultivating hiPSC-CMs on low-thickness aligned nanofibers made of biodegradable poly(D,L-lactic-co-glycolic acid) polymer. We show that multilayered and elongated CMs could be organized at high density along aligned nanofibers in a simple one-step seeding process, resulting in upregulated cardiac biomarkers and enhanced cardiac functions. When used for drug assessment, CTLCs were much more robust than the 2D conventional control. We also demonstrated the potential of CTLCs for modeling engraftments in vitro and treating myocardial infarction in vivo. Thus, we established a handy framework for cardiac tissue engineering, which holds high potential for pharmaceutical and clinical applications.


Asunto(s)
Células Madre Pluripotentes Inducidas/citología , Infarto del Miocardio/terapia , Miocitos Cardíacos/citología , Trasplante de Células Madre/métodos , Ingeniería de Tejidos/métodos , Animales , Células Cultivadas , Humanos , Células Madre Pluripotentes Inducidas/trasplante , Masculino , Miocitos Cardíacos/trasplante , Nanofibras/química , Poliglactina 910/química , Ratas , Ratas Desnudas , Andamios del Tejido/química
2.
Adv Healthc Mater ; 5(22): 2951-2958, 2016 11.
Artículo en Inglés | MEDLINE | ID: mdl-27775225

RESUMEN

Human pluripotent stem cells hold great promise for applications in drug discovery and regenerative medicine. Microfluidic technology is a promising approach for creating artificial microenvironments; however, although a proper 3D microenvironment is required to achieve robust control of cellular phenotypes, most current microfluidic devices provide only 2D cell culture and do not allow tuning of physical and chemical environmental cues simultaneously. Here, the authors report a 3D cellular microenvironment plate (3D-CEP), which consists of a microfluidic device filled with thermoresponsive poly(N-isopropylacrylamide)-ß-poly(ethylene glycol) hydrogel (HG), which enables systematic tuning of both chemical and physical environmental cues as well as in situ cell monitoring. The authors show that H9 human embryonic stem cells (hESCs) and 253G1 human induced pluripotent stem cells in the HG/3D-CEP system maintain their pluripotent marker expression under HG/3D-CEP self-renewing conditions. Additionally, global gene expression analyses are used to elucidate small variations among different test environments. Interestingly, the authors find that treatment of H9 hESCs under HG/3D-CEP self-renewing conditions results in initiation of entry into the neural differentiation process by induction of PAX3 and OTX1 expression. The authors believe that this HG/3D-CEP system will serve as a versatile platform for developing targeted functional cell lines and facilitate advances in drug screening and regenerative medicine.


Asunto(s)
Células Madre Pluripotentes/citología , Resinas Acrílicas/administración & dosificación , Resinas Acrílicas/química , Biomarcadores/metabolismo , Técnicas de Cultivo de Célula/métodos , Diferenciación Celular/fisiología , Células Cultivadas , Microambiente Celular/fisiología , Células Madre Embrionarias Humanas/citología , Humanos , Hidrogel de Polietilenoglicol-Dimetacrilato/administración & dosificación , Hidrogel de Polietilenoglicol-Dimetacrilato/química , Dispositivos Laboratorio en un Chip , Células Madre Pluripotentes/metabolismo , Polietilenglicoles/administración & dosificación , Polietilenglicoles/química , Medicina Regenerativa/métodos , Transcripción Genética/fisiología
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