Teixeira Marta O, Antunes Joana C, Felgueiras Helena P
Centre for Textile Science and Technology (2C2T), Department of Textile Engineering, University of Minho, Campus of Azurém, 4800-058 Guimarães, Portugal.
Antibiotics (Basel). 2021 Mar 2;10(3):248. doi: 10.3390/antibiotics10030248.
In the last decades, much research has been done to fasten wound healing and target-direct drug delivery. Hydrogel-based scaffolds have been a recurrent solution in both cases, with some reaching already the market, even though their mechanical stability remains a challenge. To overcome this limitation, reinforcement of hydrogels with fibers has been explored. The structural resemblance of fiber-hydrogel composites to natural tissues has been a driving force for the optimization and exploration of these systems in biomedicine. Indeed, the combination of hydrogel-forming techniques and fiber spinning approaches has been crucial in the development of scaffolding systems with improved mechanical strength and medicinal properties. In this review, a comprehensive overview of the recently developed fiber-hydrogel composite strategies for wound healing and drug delivery is provided. The methodologies employed in fiber and hydrogel formation are also highlighted, together with the most compatible polymer combinations, as well as drug incorporation approaches creating stimuli-sensitive and triggered drug release towards an enhanced host response.
在过去几十年里,人们开展了大量研究以加速伤口愈合和实现靶向给药。基于水凝胶的支架在这两方面一直是反复被采用的解决方案,尽管其机械稳定性仍是一项挑战,但已有一些产品进入市场。为克服这一局限性,人们探索了用纤维增强水凝胶的方法。纤维-水凝胶复合材料与天然组织在结构上的相似性一直是推动这些系统在生物医学领域进行优化和探索的动力。事实上,水凝胶形成技术与纤维纺丝方法的结合对于开发具有更高机械强度和药用性能的支架系统至关重要。在本综述中,我们对最近开发的用于伤口愈合和药物递送的纤维-水凝胶复合策略进行了全面概述。还重点介绍了纤维和水凝胶形成过程中所采用的方法,以及最具相容性的聚合物组合,以及实现刺激响应和触发药物释放以增强宿主反应的药物掺入方法。