Current Developments of Electroconductive Scaffolds for Cardiac Tissue Engineering
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-7119-0_55
Reference149 articles.
1. Abbasgholizadeh R, Islas JF, Navran S et al (2020) A highly conductive 3D cardiac patch fabricated using cardiac myocytes reprogrammed from human adipogenic mesenchymal stem cells. Cardiovasc Eng Technol 11:205–218. https://doi.org/10.1007/s13239-019-00451-0
2. Abdulghani S, Mitchell G (2019) Biomaterials for in situ tissue regeneration: a review. Biomol Ther 9:750. https://doi.org/10.3390/biom9110750
3. Adams E, McCloy R, Jordan A et al (2021) Direct reprogramming of cardiac fibroblasts to repair the injured heart. J Cardiovasc Dev Dis 8:72. https://doi.org/10.3390/JCDD8070072
4. Afzal Z, Haider KH, Ashraf M (2011) Induced pluripotent stem cell derived cKitlowSca1highFlkhigh progenitor cells undergo angiomyogenic differentiation in the infarcted heart and preserve global heart function. Circulation 2011-SS-A-16946-AHA
5. Ahmad FB, Anderson RN (2021) The leading causes of death in the US for 2020. JAMA 325:1829. https://doi.org/10.1001/jama.2021.5469
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