School of Biosciences and Bioengineering, Indian Institute of Technology Mandi, Kamand, Mandi, 175075 Himachal Pradesh, India.
ACS Appl Mater Interfaces. 2024 Nov 13;16(45):61503-61529. doi: 10.1021/acsami.4c07108. Epub 2024 Oct 31.
With a surge in the number of accidents and chronic wounds worldwide, there is a growing need for advanced hemostatic and wound care solutions. In this regard, in situ forming hydrogels have emerged as a revolutionary biomaterial due to their inherent properties, which include biocompatibility, biodegradability, porosity, and extracellular matrix (ECM)-like mechanical strength, that render them ideal for biomedical applications. This review demonstrates the advancements of forming hydrogels, tracing their evolution from injectable to more sophisticated forms, such as sprayable and 3-D printed hydrogels. These hydrogels are designed to modulate the pathophysiology of wounds, enhancing hemostasis and facilitating wound repair. The review presents different methodologies for in situ forming hydrogel synthesis, spanning a spectrum of physical and chemical cross-linking techniques. Furthermore, it showcases the adaptability of hydrogels to the dynamic requirements of wound healing processes. Through a detailed discussion, this article sheds light on the multifunctional capabilities of these hydrogels such as their antibacterial, anti-inflammatory, and antioxidant properties. This review aims to inform and inspire continued advancement in the field, ultimately contributing to the development of sophisticated wound care solutions that meet the complexity of clinical needs.
随着全球事故和慢性伤口数量的增加,人们对先进的止血和伤口护理解决方案的需求日益增长。在这方面,原位形成水凝胶因其固有特性,如生物相容性、可生物降解性、多孔性和细胞外基质 (ECM) 样机械强度,成为一种革命性的生物材料,非常适合生物医学应用。本综述展示了原位形成水凝胶的进展,追溯了它们从可注射形式到更复杂形式的演变,如喷雾和 3D 打印水凝胶。这些水凝胶旨在调节伤口的病理生理学,促进止血并促进伤口修复。该综述介绍了不同的原位形成水凝胶合成方法,涵盖了一系列物理和化学交联技术。此外,它还展示了水凝胶对伤口愈合过程动态要求的适应性。通过详细讨论,本文揭示了这些水凝胶的多功能特性,如其抗菌、抗炎和抗氧化特性。本文旨在为该领域的持续发展提供信息和启发,最终有助于开发满足临床需求复杂性的复杂伤口护理解决方案。