Suppr超能文献

可修复的交联海藻酸盐/明胶水凝胶,掺入纳米纤维,用于伤口修复和再生。

Remendable Cross-Linked Alginate/Gelatin Hydrogels Incorporating Nanofibers for Wound Repair and Regeneration.

机构信息

Department of Applied Bioengineering, Graduate School of Convergence Science and Technology, Seoul National University, Seoul 08826, Republic of Korea.

Program in Nanoscience and Technology, Graduate School of Convergence Science and Technology, Seoul National University, Seoul 08826, Republic of Korea.

出版信息

Biomacromolecules. 2024 Jul 8;25(7):4344-4357. doi: 10.1021/acs.biomac.4c00406. Epub 2024 Jun 25.

Abstract

Wound dressings made from natural-derived polymers are highly valued for their biocompatibility, biodegradability, and biofunctionality. However, natural polymer-based hydrogels can come with their own set of limitations, such as low mechanical strength, limited cell affinity, and the potential cytotoxicity of cross-linkers, which delineate the boundaries of their usage and hamper their practical application. To overcome the limitation of natural-derived polymers, this study utilized a mixture of oxidized alginate and gelatin with 5 mg/mL polycaprolactone (PCL):gelatin nanofiber fragments at a ratio of 7:3 (OGN-7) to develop a hydrogel composite wound dressing that can be injected and has the ability to be remended. The in situ formation of the remendable hydrogel is facilitated by dual cross-linking of oxidized alginate chains with gelatin and PCL/gelatin nanofibers through Schiff-base mechanisms, supported by the physical integration of nanofibers, thereby obviating the need for additional cross-linking agents. Furthermore, OGN-7 exhibits increased stiffness (γ = 79.4-316.3%), reduced gelation time (543 ± 5 to 475 ± 5 s), improved remendability of the hydrogel, and excellent biocompatibility. Notably, OGN-7 achieves full fusion within 1 h of incubation and maintains structural integrity under external stress, effectively overcoming the inherent mechanical weaknesses of natural polymer-based dressings and enhancing biofunctionality. The therapeutic efficacy of OGN-7 was validated through a full-thickness wound healing analysis, which demonstrated that OGN-7 significantly accelerates wound closure compared to alginate-based dressings and control groups. Histological analysis further revealed that re-epithelialization and collagen deposition were markedly enhanced in the regenerating skin of the OGN-7 group, confirming the superior therapeutic performance of OGN-7. In summary, OGN-7 optimized the synergistic effects of natural polymers, which enhances their collective functionality as a wound dressing and expands their utility across diverse biomedical applications.

摘要

由天然衍生聚合物制成的伤口敷料因其生物相容性、可生物降解性和生物功能性而备受重视。然而,基于天然聚合物的水凝胶可能会带来自身的一系列限制,例如机械强度低、细胞亲和性有限以及交联剂的潜在细胞毒性,这些限制限定了它们的使用范围并阻碍了它们的实际应用。为了克服天然衍生聚合物的限制,本研究利用氧化海藻酸钠和明胶的混合物,与 5mg/mL 的聚己内酯(PCL):明胶纳米纤维碎片以 7:3(OGN-7)的比例,开发了一种可注射且具有可再修复能力的水凝胶复合伤口敷料。氧化海藻酸钠链与明胶和 PCL/明胶纳米纤维通过席夫碱机制进行双重交联,促进了可再修复水凝胶的原位形成,这得益于纳米纤维的物理集成,从而无需额外的交联剂。此外,OGN-7 表现出增加的刚性(γ=79.4-316.3%)、降低的凝胶时间(543±5 至 475±5 s)、改善水凝胶的可再修复性和优异的生物相容性。值得注意的是,OGN-7 在孵育 1 小时内即可完全融合,并在外部应力下保持结构完整性,有效克服了天然聚合物基敷料固有的机械弱点并增强了生物功能性。通过全厚度伤口愈合分析验证了 OGN-7 的治疗效果,结果表明 OGN-7 与基于海藻酸盐的敷料和对照组相比,显著加速了伤口闭合。组织学分析进一步表明,在 OGN-7 组再生皮肤中,再上皮化和胶原蛋白沉积明显增强,证实了 OGN-7 的卓越治疗性能。综上所述,OGN-7 优化了天然聚合物的协同作用,增强了它们作为伤口敷料的集体功能,并扩展了它们在各种生物医学应用中的用途。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验