生物相容性
心功能曲线
生物医学工程
氧化应激
再生(生物学)
血管生成
生物材料
细胞外基质
化学
心肌梗塞
免疫染色
外体
材料科学
微泡
病理
细胞生物学
医学
心脏病学
生物化学
免疫组织化学
癌症研究
生物
心力衰竭
小RNA
有机化学
基因
作者
Ankita Das,Aman Nikhil,Parvaiz Ahmad Shiekh,Babita Yadav,Kumaravelu Jagavelu,Ashok Kumar
标识
DOI:10.1016/j.bioactmat.2023.11.009
摘要
Myocardial infarction (MI) can be tackled by implanting cardiac patches which provide mechanical support to the heart. However, most tissue-engineered scaffolds face difficulty in attenuating oxidative stress, maintaining mechanical stability, and regenerating damaged cardiomyocytes. Here, we fabricated elastic cryogels using polyurethane modified with antioxidant gallic acid in its backbone (PUGA) and further coated them with decellularized extracellular matrix (dECM) to improve adhesiveness, biocompatibility and hemocompatibility. The scaffold was functionalized with exosomes (EXO) isolated from adipose-derived stem cells having regenerative potential. PUGA-dECM + EXO was tested in a rat model with induced MI where echocardiography after 8 weeks of implantation showed significant recovery in treatment group. Histological analysis revealed a decrease in fibrosis after application of patch and promotion of angiogenesis with reduced oxidative stress was shown by immunostaining. Expression of cardiac tissue contractile function marker was also observed in treatment groups. Thus, the proposed biomaterial has a promising application to be utilized as a patch for cardiac regeneration. More detailed studies with larger animal species are needed for using these observations for specific applications.
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