心肌梗塞
纳米材料
纳米技术
组织工程
材料科学
心力衰竭
后遗症
生物医学工程
心脏病学
内科学
医学
外科
作者
Khadijeh Ashtari,Hojjatollah Nazari,Hyojin Ko,Peyton Tebon,Masoud Akhshik,Mohsen Akbari,Sanaz Naghavi Alhosseini,Masoud Mozafari,Bita Mehravi,Masoud Soleimani,Reza Ardehali,Majid Ebrahimi Warkiani,Samad Ahadian,Ali Khademhosseini
标识
DOI:10.1016/j.addr.2019.06.001
摘要
Patient deaths resulting from cardiovascular diseases are increasing across the globe, posing the greatest risk to patients in developed countries. Myocardial infarction, as a result of inadequate blood flow to the myocardium, results in irreversible loss of cardiomyocytes which can lead to heart failure. A sequela of myocardial infarction is scar formation that can alter the normal myocardial architecture and result in arrhythmias. Over the past decade, a myriad of tissue engineering approaches has been developed to fabricate engineered scaffolds for repairing cardiac tissue. This paper highlights the recent application of electrically conductive nanomaterials (carbon and gold-based nanomaterials, and electroactive polymers) to the development of scaffolds for cardiac tissue engineering. Moreover, this work summarizes the effects of these nanomaterials on cardiac cell behavior such as proliferation and migration, as well as cardiomyogenic differentiation in stem cells.
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