Tao Jingwei, Zhou Jingya, Xu Lin, Yang Jizhou, Mu Xiaohong, Fan Xiao
Center for Orthopedic Surgery, Dongzhimen Hospital Beijing University of Chinese Medicine, Beijing, China; Beijing University of Chinese Medicine, Beijing, China.
Capital Medical University Affiliated Beijing Hospital of Traditional Chinese Medicine, Capital Medical University, Beijing, China.
Int J Biol Macromol. 2024 Dec;283(Pt 4):137887. doi: 10.1016/j.ijbiomac.2024.137887. Epub 2024 Nov 19.
Up to now, the clinical treatment of spinal cord injury (SCI) to recover the locomotion function, sensory function, and autonomic function of patients is a global medical challenge. In this study, based on the excellent effects of Tetramethylpyrazine (TMP) on regulating pathological micro-environment, we designed a new injectable conductive hydrogel consists of water-soluble polypyrrole (Ppy), agar, and TMP. The TMP@PA hydrogel has excellent physicochemical properties, bio-safety, and drug release ability, which can be injected into lesions in situ without secondary injury for SCI. Our in vivo and in vitro experiments have demonstrated that the TMP@PA hydrogel can not only fill the spinal cord cavity to reconstruct the electrical conduction pathway but also release TMP continuously to inhibit ferroptosis by regulating nuclear receptor coactivator 4 (NCOA4)-mediated ferritinophagy regulated by Yes-Associated Protein (YAP) to promote SCI repair. Collectively, TMP@PA hydrogel may be an effective tissue engineering scaffold to treat SCI with highly promising clinical applications.
到目前为止,脊髓损伤(SCI)患者运动功能、感觉功能和自主神经功能恢复的临床治疗是一项全球性的医学挑战。在本研究中,基于川芎嗪(TMP)对调节病理微环境的优异效果,我们设计了一种由水溶性聚吡咯(Ppy)、琼脂和TMP组成的新型可注射导电水凝胶。TMP@PA水凝胶具有优异的物理化学性质、生物安全性和药物释放能力,可原位注射到SCI损伤部位而无二次损伤。我们的体内和体外实验表明,TMP@PA水凝胶不仅可以填充脊髓腔以重建电传导通路,还可以持续释放TMP,通过调节Yes相关蛋白(YAP)介导的核受体辅激活因子4(NCOA4)介导的铁自噬来抑制铁死亡,从而促进SCI修复。总的来说,TMP@PA水凝胶可能是一种有效的组织工程支架,用于治疗SCI,具有高度的临床应用前景。