Department of Biomedical Engineering, The University of Texas at Austin Austin, 78712, USA.
Adv Mater. 2009 Sep 4;21(32-33):3307-29. doi: 10.1002/adma.200802106.
Hydrogels, due to their unique biocompatibility, flexible methods of synthesis, range of constituents, and desirable physical characteristics, have been the material of choice for many applications in regenerative medicine. They can serve as scaffolds that provide structural integrity to tissue constructs, control drug and protein delivery to tissues and cultures, and serve as adhesives or barriers between tissue and material surfaces. In this work, the properties of hydrogels that are important for tissue engineering applications and the inherent material design constraints and challenges are discussed. Recent research involving several different hydrogels polymerized from a variety of synthetic and natural monomers using typical and novel synthetic methods are highlighted. Finally, special attention is given to the microfabrication techniques that are currently resulting in important advances in the field.
水凝胶由于其独特的生物相容性、灵活的合成方法、多样的组成成分和理想的物理特性,已成为再生医学中许多应用的首选材料。它们可以作为支架,为组织构建体提供结构完整性,可以控制药物和蛋白质向组织和培养物的输送,还可以作为组织和材料表面之间的粘合剂或屏障。在这项工作中,讨论了对组织工程应用很重要的水凝胶的特性,以及固有的材料设计限制和挑战。重点介绍了最近涉及使用各种典型和新型合成方法由多种合成和天然单体聚合而成的几种不同水凝胶的研究。最后,特别关注当前在该领域取得重要进展的微制造技术。