Li Xinlin, Xu Mengfei, Geng Zhaoli, Liu Yi
Department of Orthodontics, School and Hospital of Stomatology, Cheeloo College of Medicine, Shandong University and Shandong Key Laboratory of Oral Tissue Regeneration and Shandong Engineering Laboratory for Dental Materials and Oral Tissue Regeneration and Shandong Provincial Clinical Research Center for Oral Diseases, Jinan, China.
Front Bioeng Biotechnol. 2023 May 16;11:1190171. doi: 10.3389/fbioe.2023.1190171. eCollection 2023.
Tissue defects can be accompanied by functional impairments that affect the health and quality of life of patients. Hydrogels are three-dimensional (3D) hydrophilic polymer networks that can be used as bionic functional tissues to fill or repair damaged tissue as a promising therapeutic strategy in the field of tissue engineering and regenerative medicine. This paper summarises and discusses four outstanding advantages of hydrogels and their applications and advances in the repair and regeneration of tissue defects. First, hydrogels have physicochemical properties similar to the extracellular matrix of natural tissues, providing a good microenvironment for cell proliferation, migration and differentiation. Second, hydrogels have excellent shape adaptation and tissue adhesion properties, allowing them to be applied to a wide range of irregularly shaped tissue defects and to adhere well to the defect for sustained and efficient repair function. Third, the hydrogel is an intelligent delivery system capable of releasing therapeutic agents on demand. Hydrogels are capable of delivering therapeutic reagents and releasing therapeutic substances with temporal and spatial precision depending on the site and state of the defect. Fourth, hydrogels are self-healing and can maintain their integrity when damaged. We then describe the application and research progress of functional hydrogels in the repair and regeneration of defects in bone, cartilage, skin, muscle and nerve tissues. Finally, we discuss the challenges faced by hydrogels in the field of tissue regeneration and provide an outlook on their future trends.
组织缺损可能伴有功能障碍,影响患者的健康和生活质量。水凝胶是三维(3D)亲水性聚合物网络,可用作仿生功能组织来填充或修复受损组织,是组织工程和再生医学领域一种很有前景的治疗策略。本文总结并讨论了水凝胶的四个突出优点及其在组织缺损修复与再生中的应用和进展。首先,水凝胶具有与天然组织细胞外基质相似的物理化学性质,为细胞增殖、迁移和分化提供良好的微环境。其次,水凝胶具有优异的形状适应性和组织粘附性,使其能够应用于各种形状不规则的组织缺损,并能很好地粘附于缺损部位,以实现持续有效的修复功能。第三,水凝胶是一种智能递送系统,能够按需释放治疗剂。水凝胶能够根据缺损的部位和状态,精确地在时间和空间上递送治疗试剂并释放治疗物质。第四,水凝胶具有自我修复能力,受损时能保持其完整性。然后我们描述了功能性水凝胶在骨、软骨、皮肤、肌肉和神经组织缺损修复与再生中的应用及研究进展。最后,我们讨论了水凝胶在组织再生领域面临的挑战,并对其未来趋势进行了展望。