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载有 CDs 和 FTY720 的可注射水凝胶与神经干细胞联合用于治疗脊髓损伤。

Injectable Hydrogel Loaded with CDs and FTY720 Combined with Neural Stem Cells for the Treatment of Spinal Cord Injury.

机构信息

Department of Orthopedic Surgery, The Second Hospital of Jilin University, Changchun, 130041, People's Republic of China.

Department of Nuclear Medicine, The Second Hospital of Jilin University, Changchun, 130041, People's Republic of China.

出版信息

Int J Nanomedicine. 2024 May 8;19:4081-4101. doi: 10.2147/IJN.S448962. eCollection 2024.

Abstract

PURPOSE

Spinal cord injury (SCI) is an incurable and disabling event that is accompanied by complex inflammation-related pathological processes, such as the production of excessive reactive oxygen species (ROS) by infiltrating inflammatory immune cells and their release into the extracellular microenvironment, resulting in extensive apoptosis of endogenous neural stem cells. In this study, we noticed the neuroregeneration-promoting effect as well as the ability of the innovative treatment method of FTY720-CDs@GelMA paired with NSCs to increase motor function recovery in a rat spinal cord injury model.

METHODS

Carbon dots (CDs) and fingolimod (FTY720) were added to a hydrogel created by chemical cross-linking GelMA (FTY720-CDs@GelMA). The basic properties of FTY720-CDs@GelMA hydrogels were investigated using TEM, SEM, XPS, and FTIR. The swelling and degradation rates of FTY720-CDs@GelMA hydrogels were measured, and each group's ability to scavenge reactive oxygen species was investigated. The in vitro biocompatibility of FTY720-CDs@GelMA hydrogels was assessed using neural stem cells. The regeneration of the spinal cord and recovery of motor function in rats were studied following co-treatment of spinal cord injury using FTY720-CDs@GelMA hydrogel in combination with NSCs, utilising rats with spinal cord injuries as a model. Histological and immunofluorescence labelling were used to determine the regeneration of axons and neurons. The recovery of motor function in rats was assessed using the BBB score.

RESULTS

The hydrogel boosted neurogenesis and axonal regeneration by eliminating excess ROS and restoring the regenerative environment. The hydrogel efficiently contained brain stem cells and demonstrated strong neuroprotective effects in vivo by lowering endogenous ROS generation and mitigating ROS-mediated oxidative stress. In a follow-up investigation, we discovered that FTY720-CDs@GelMA hydrogel could dramatically boost NSC proliferation while also promoting neuronal regeneration and synaptic formation, hence lowering cavity area.

CONCLUSION

Our findings suggest that the innovative treatment of FTY720-CDs@GelMA paired with NSCs can effectively improve functional recovery in SCI patients, making it a promising therapeutic alternative for SCI.

摘要

目的

脊髓损伤(SCI)是一种无法治愈且致残的事件,伴随着复杂的炎症相关病理过程,例如浸润性炎症免疫细胞产生过多的活性氧(ROS)并将其释放到细胞外微环境中,导致内源性神经干细胞广泛凋亡。在这项研究中,我们注意到创新治疗方法 FTY720-CDs@GelMA 与神经干细胞联合使用具有促进神经再生的作用,并能提高大鼠脊髓损伤模型的运动功能恢复。

方法

将碳点(CDs)和芬戈莫德(FTY720)添加到通过化学交联 GelMA 制成的水凝胶中(FTY720-CDs@GelMA)。使用 TEM、SEM、XPS 和 FTIR 研究 FTY720-CDs@GelMA 水凝胶的基本性质。测量 FTY720-CDs@GelMA 水凝胶的溶胀和降解率,并研究每组清除活性氧的能力。使用神经干细胞评估 FTY720-CDs@GelMA 水凝胶的体外生物相容性。利用脊髓损伤大鼠模型,研究 FTY720-CDs@GelMA 水凝胶与神经干细胞联合治疗对脊髓损伤后的脊髓再生和运动功能恢复的影响。使用组织学和免疫荧光标记来确定轴突和神经元的再生。使用 BBB 评分评估大鼠运动功能的恢复。

结果

该水凝胶通过消除多余的 ROS 并恢复再生环境来促进神经发生和轴突再生。该水凝胶有效地包含脑干细胞,并通过降低内源性 ROS 的产生和减轻 ROS 介导的氧化应激,在体内表现出强大的神经保护作用。在后续研究中,我们发现 FTY720-CDs@GelMA 水凝胶可以显著促进 NSC 的增殖,同时促进神经元的再生和突触形成,从而降低腔面积。

结论

我们的研究结果表明,FTY720-CDs@GelMA 与神经干细胞联合的创新治疗方法可有效改善 SCI 患者的功能恢复,是一种有前途的 SCI 治疗选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73cf/11088866/5f1a00a9ed8b/IJN-19-4081-g0001.jpg

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