Zhang Yixin, Xu Yanteng, Kong Huimin, Zhang Jiabin, Chan Hon Fai, Wang Jiasi, Shao Dan, Tao Yu, Li Mingqiang
Laboratory of Biomaterials and Translational Medicine Center for Nanomedicine The Third Affiliated Hospital Sun Yat-sen University Guangzhou China.
Institute for Tissue Engineering and Regenerative Medicine School of Biomedical Science The Chinese University of Hong Kong Hong Kong China.
Exploration (Beijing). 2023 Jan 21;3(1):20210170. doi: 10.1002/EXP.20210170. eCollection 2023 Feb.
Global increasing demand for high life quality and length facilitates the development of tissue engineering and regenerative medicine, which apply multidisciplinary theories and techniques to achieve the structural reconstruction and functional recovery of disordered or damaged tissues and organs. However, the clinical performances of adopted drugs, materials, and powerful cells in the laboratory are inescapably limited by the currently available technologies. To tackle the problems, versatile microneedles are developed as the new platform for local delivery of diverse cargos with minimal invasion. The efficient delivery, as well as painless and convenient procedure endow microneedles with good patient compliance in clinic. In this review, we first categorize different microneedle systems and delivery models, and then summarize their applications in tissue engineering and regenerative medicine mainly involving maintenance and rehabilitation of damaged tissues and organs. In the end, we discuss the advantages, challenges, and prospects of microneedles in depth for future clinical translations.
全球对高生活质量和寿命的需求不断增加,推动了组织工程和再生医学的发展,这些领域应用多学科理论和技术来实现紊乱或受损组织及器官的结构重建和功能恢复。然而,实验室中所采用的药物、材料和强大细胞的临床性能不可避免地受到现有技术的限制。为解决这些问题,多功能微针作为一种新平台被开发出来,用于以最小的侵入性实现多种物质的局部递送。高效递送以及无痛且便捷的操作流程使微针在临床上具有良好的患者依从性。在本综述中,我们首先对不同的微针系统和递送模式进行分类,然后总结它们在组织工程和再生医学中的应用,主要涉及受损组织和器官的维持与修复。最后,我们深入讨论微针在未来临床转化中的优势、挑战和前景。