Department of Neurosurgery, The Affiliated Hospital of Qingdao University, Wutaishan Road 1677, Qingdao, Shandong 266000, China.
Biomacromolecules. 2024 Apr 8;25(4):2462-2475. doi: 10.1021/acs.biomac.3c01406. Epub 2024 Mar 27.
With wide clinical demands, therapies for traumatic brain injury (TBI) are a major problem in surgical procedures and after major trauma. Due to the difficulty in regeneration of neurons or axons after injury, as well as the inhibition of blood vessel growth by the formation of neural scars, existing treatment measures have limited effectiveness in repairing brain tissue. Herein, the biomultifunctional hydrogels are developed for TBI treatment based on the Schiff base reaction of calcium ion (Ca)-cross-linked oxidized sodium alginate (OSA) and carboxymethyl chitosan (CMCS). The obtained COCS hydrogel exhibits excellent adhesion to wet tissues, self-repair capability, and antimicrobial properties. What's particularly interesting is that the addition of Ca increases the hydrogel's extensibility, enhancing its hemostatic capabilities. Biological assessments indicate that the COCS hydrogel demonstrates excellent biocompatibility, hemostatic properties, and the ability to promote arterial vessel repair. Importantly, the COCS hydrogel promotes the growth of cerebral microvessels by upregulating CD31, accelerates the proliferation of astrocytes, enhances the expression of GFAP, and stimulates the expression of neuron-specific markers such as NEUN and β-tubulin. All of these findings highlight that the strongly adhesive, self-healing, hemostatic hydrogel shows great potential for the repair of traumatic brain injury and other tissue repair therapy.
由于神经元或轴突在损伤后的再生困难,以及神经瘢痕形成对血管生长的抑制,现有的治疗措施在修复脑组织方面效果有限。因此,基于钙离子(Ca)交联氧化的海藻酸钠(OSA)和羧甲基壳聚糖(CMCS)的席夫碱反应,开发了用于创伤性脑损伤(TBI)治疗的生物多功能水凝胶。所得的 COCS 水凝胶对湿组织具有出色的粘附性、自修复能力和抗菌性能。特别有趣的是,Ca 的添加增加了水凝胶的延展性,提高了其止血能力。生物学评估表明,COCS 水凝胶具有出色的生物相容性、止血性能和促进动脉血管修复的能力。重要的是,COCS 水凝胶通过上调 CD31 促进脑微血管的生长,加速星形胶质细胞的增殖,增强 GFAP 的表达,并刺激神经元特异性标志物如 NEUN 和 β-微管蛋白的表达。所有这些发现都表明,这种具有强粘附性、自修复和止血功能的水凝胶在创伤性脑损伤和其他组织修复治疗方面具有巨大的潜力。