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铜-胱氨酸生物杂交嵌入纳米纤维气凝胶具有抗菌和促血管生成特性。

Copper-Cystine Biohybrid-Embedded Nanofiber Aerogels Show Antibacterial and Angiogenic Properties.

作者信息

Karan Anik, Sharma Navatha Shree, Darder Margarita, Su Yajuan, Andrabi Syed Muntazir, Shahriar S M Shatil, John Johnson V, Luo Zeyu, DeCoster Mark A, Zhang Yu Shrike, Xie Jingwei

机构信息

Department of Surgery-Transplant and Holland Regenerative Medicine Program, University of Nebraska Medical Center, Omaha, Nebraska 68198, United States.

Instituto de Ciencia de Materiales de Madrid (ICMM), CSIC, Madrid 28049, Spain.

出版信息

ACS Omega. 2024 Feb 16;9(8):9765-9781. doi: 10.1021/acsomega.3c10012. eCollection 2024 Feb 27.

Abstract

Copper-cystine-based high aspect ratio structures (CuHARS) possess exceptional physical and chemical properties and exhibit remarkable biodegradability in human physiological conditions. Extensive testing has confirmed the biocompatibility and biodegradability of CuHARS under diverse biological conditions, making them a viable source of essential Cu. These ions are vital for catalyzing the production of nitric oxide (NO) from the decomposition of S-nitrosothiols (RSNOs) found in human blood. The ability of CuHARS to act as a Cu donor under specific concentrations has been demonstrated in this study, resulting in the generation of elevated levels of NO. Consequently, this dual function makes CuHARS effective as both a bactericidal agent and a promoter of angiogenesis. experiments have shown that CuHARS actively promotes the migration and formation of complete lumens by redirecting microvascular endothelial cells. To maximize the benefits of CuHARS, they have been incorporated into biomimetic electrospun poly(ε-caprolactone)/gelatin nanofiber aerogels. Through the regulated release of Cu and NO production, these channeled aerogels not only provide antibacterial support but also promote angiogenesis. Taken together, the inclusion of CuHARS in biomimetic scaffolds could hold great promise in revolutionizing tissue regeneration and wound healing.

摘要

基于铜胱氨酸的高纵横比结构(CuHARS)具有优异的物理和化学性质,并且在人体生理条件下表现出显著的生物降解性。广泛的测试已证实CuHARS在多种生物学条件下的生物相容性和生物降解性,使其成为必需铜的可行来源。这些离子对于催化人体血液中发现的S-亚硝基硫醇(RSNOs)分解产生一氧化氮(NO)至关重要。本研究已证明CuHARS在特定浓度下作为铜供体的能力,从而导致产生更高水平的NO。因此,这种双重功能使CuHARS既作为杀菌剂又作为血管生成促进剂发挥作用。实验表明,CuHARS通过引导微血管内皮细胞,积极促进其迁移和完整管腔的形成。为了最大限度地发挥CuHARS的益处,它们已被纳入仿生电纺聚(ε-己内酯)/明胶纳米纤维气凝胶中。通过铜的可控释放和NO的产生,这些有通道的气凝胶不仅提供抗菌支持,还促进血管生成。综上所述,在仿生支架中加入CuHARS在革新组织再生和伤口愈合方面可能具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ea2/10905775/14f8a064b712/ao3c10012_0001.jpg

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