首页> 外文期刊>Advanced functional materials >Gelatin-Lysozyme Nanofibrils Electrospun Patches with Improved Mechanical, Antioxidant, and Bioresorbability Properties for Myocardial Regeneration Applications
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Gelatin-Lysozyme Nanofibrils Electrospun Patches with Improved Mechanical, Antioxidant, and Bioresorbability Properties for Myocardial Regeneration Applications

机译:明胶溶菌酶纳米纤维静电纺丝贴片,具有改进的机械、抗氧化和生物可吸收性,适用于心肌再生应用

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摘要

Biopolymeric patches show enormous potential for the regeneration of infarcted myocardium tissues. However, most of them usually lack appropriate mechanical performance, stability in water, and important functionalities; for instance, antioxidant activity. Protein nanofibrils, such as lysozyme nanofibrils (LNFs), are biocompatible nanostructures with excellent mechanical performance, water insolubility, and antioxidant activity exploited to fabricate materials for different biomedical applications. In this study, LNFs are used to produce gelatin electrospun nanocomposite cardiac patches with improved properties. The addition of the LNFs to the gelatin electrospun patches enhance their mechanical properties, increasing the patches Young's modulus from 3 to 6 MPa, in their wet state, which agrees with the requirements of myocardial contractility. Additionally, it is observed an increment of the antioxidant activity to 80, by adding only 5 (w/w) of LNFs, and the bioresorbability rate is shortened to 30-35 d, compared to 45 d for the gelatin-only patches, while maintaining their morphology, and biocompatibility toward cardiomyoblasts and fibroblasts. Furthermore, 15 of a model drug is burst released from the patches and preserved for 21 d. Overall, these results demonstrate that LNFs have a great potential as functional reinforcements to fabricate biopolymeric electrospun patches for myocardial infarcted tissue regeneration.
机译:生物聚合物贴片在梗死心肌组织再生方面显示出巨大的潜力。然而,它们中的大多数通常缺乏适当的机械性能、水中稳定性和重要功能;例如,抗氧化活性。蛋白质纳米纤维,如溶菌酶纳米纤维 (LNF),是具有生物相容性的纳米结构,具有优异的机械性能、水不溶性和抗氧化活性,可用于制造用于不同生物医学应用的材料。在这项研究中,LNFs被用于生产具有改进性能的明胶静电纺丝纳米复合心脏贴片。在明胶静电纺丝贴片中添加LNFs可增强其机械性能,使贴片在湿态下的杨氏模量从3 MPa提高到6 MPa,这与心肌收缩力的要求一致。此外,通过仅添加 5% (w/w) 的 LNF,观察到抗氧化活性增加到 80%,并且生物可吸收率缩短至 30-35 d,而仅含明胶的贴片为 45 d,同时保持其形态和对心肌母细胞和成纤维细胞的生物相容性。此外,15%的模型药物从贴片中爆裂释放并保存21天。总体而言,这些结果表明,LNFs作为功能增强剂具有巨大的潜力,可以制造用于心肌梗死组织再生的生物聚合物静电纺丝贴片。

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