Department of Neurosurgery, Xiangya Hospital, Central South University, Changsha, Hunan Province, 410008, China.
Key Laboratory of Organ Injury, Aging and Regenerative Medicine of Hunan Province, Changsha, Hunan Province, 410008, China.
Adv Healthc Mater. 2021 May;10(10):e2100089. doi: 10.1002/adhm.202100089. Epub 2021 Mar 19.
Complete transection spinal cord injury (SCI) severely disrupts the integrity of both neural circuits and the microvasculature system. Hence, fabricating a functional bio-scaffold that could coordinate axonal regeneration and vascular reconstruction in the lesion area may emerge as a new paradigm for complete SCI repair. In this study, a photosensitive hydrogel scaffold loaded with collagen-binding stromal cell-derived factor-1a and Taxol liposomes is capable of inducing migration of endothelial cells and promoting neurite outgrowth of neurons in vitro. In addition, when implanted into a rat T8 complete transection SCI model, the above dual-cues laden scaffold exhibits a synergistic effect on facilitating axon and vessel regeneration in the lesion area within 10 days after injury. Moreover, long-term therapeutic effects are also observed after dual-cues laden scaffold implantation, including revascularization, descending and propriospinal axonal regeneration, fibrotic scar reduction, electrophysiological recovery, and motor function improvement. In summary, the dual-cues laden scaffold has good clinical application potential for patients with severe SCI.
完全性脊髓损伤(SCI)严重破坏了神经回路和微血管系统的完整性。因此,制造一种功能性的生物支架,能够协调损伤区域内的轴突再生和血管重建,可能成为完全性 SCI 修复的新范例。在这项研究中,一种负载有胶原蛋白结合基质细胞衍生因子-1a 和紫杉醇脂质体的光敏感水凝胶支架能够在体外诱导内皮细胞迁移和促进神经元的轴突生长。此外,当植入大鼠 T8 完全性横断 SCI 模型中时,上述双信号负载支架在损伤后 10 天内对促进损伤区域内的轴突和血管再生表现出协同作用。此外,在植入双信号负载支架后还观察到了长期的治疗效果,包括血管再通、下行和 propriospinal 轴突再生、纤维性瘢痕减少、电生理恢复和运动功能改善。总之,负载双信号的支架对于严重 SCI 患者具有良好的临床应用潜力。