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硫化氢释放纤维膜:在氧化应激下刺激人干细胞增殖和活力的潜在贴片。

Hydrogen Sulfide-Releasing Fibrous Membranes: Potential Patches for Stimulating Human Stem Cells Proliferation and Viability under Oxidative Stress.

机构信息

Department of Engineering, University of Rome "Niccolò Cusano", via Don Carlo Gnocchi 3, 00166 Rome, Italy.

Italian Interuniversity Consortium on Materials Science and Technology (INSTM), 50121 Florence, Italy.

出版信息

Int J Mol Sci. 2018 Aug 11;19(8):2368. doi: 10.3390/ijms19082368.

Abstract

The design of biomaterial platforms able to release bioactive molecules is mandatory in tissue repair and regenerative medicine. In this context, electrospinning is a user-friendly, versatile and low-cost technique, able to process different kinds of materials in micro- and nano-fibers with a large surface area-to-volume ratio for an optimal release of gaseous signaling molecules. Recently, the antioxidant and anti-inflammatory properties of the endogenous hydrogen sulfide (H₂S), as well as its ability to stimulate relevant biochemical processes on the growth of mesenchymal stem cells (MSC), have been investigated. Therefore, in this work, new poly(lactic) acid fibrous membranes (PFM), doped and functionalized with H₂S slow-releasing donors extracted from garlic, were synthetized. These innovative H₂S-releasing mats were characterized for their morphological, thermal, mechanical, and biological properties. Their antimicrobial activity and effects on the in vitro human cardiac MSC growth, either in the presence or in the absence of oxidative stress, were here assessed. On the basis of the results here presented, these new H₂S-releasing PFM could represent promising and low-cost scaffolds or patches for biomedical applications in tissue repair.

摘要

在组织修复和再生医学中,设计能够释放生物活性分子的生物材料平台是强制性的。在这方面,静电纺丝是一种用户友好、多功能且低成本的技术,能够将不同类型的材料加工成具有大表面积与体积比的微纳米纤维,从而实现气体信号分子的最佳释放。最近,内源性硫化氢(H₂S)的抗氧化和抗炎特性,以及其刺激间充质干细胞(MSC)生长的相关生化过程的能力,已经得到了研究。因此,在这项工作中,用从大蒜中提取的 H₂S 缓慢释放供体对新的聚乳酸纤维膜(PFM)进行了掺杂和功能化。这些创新性的 H₂S 释放垫的形态、热学、力学和生物学特性得到了表征。还评估了它们的抗菌活性以及对体外人心肌 MSC 生长的影响,无论是否存在氧化应激。根据本文提出的结果,这些新的 H₂S 释放 PFM 可能代表有前途且低成本的支架或贴片,可用于组织修复的生物医学应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f737/6121677/e36e69f62ccb/ijms-19-02368-g001.jpg

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