An injectable, self-healing, electroconductive hydrogel loaded with neural stem cells and donepezil for enhancing local therapy effect of spinal cord injury

被引:18
作者
Liu, Tiemei [1 ]
Zhang, Qiang [2 ]
Li, Hongru [2 ]
Cui, Xiaoqian [3 ]
Qi, Zhiping [2 ]
Yang, Xiaoyu [1 ,2 ]
机构
[1] Jilin Univ, China Japan Union Hosp, Dept Blood Transfus, Changchun 130033, Peoples R China
[2] Second Hosp Jilin Univ, Dept Orthopaed Surg, Changchun 130041, Peoples R China
[3] Second Hosp Jilin Univ, Dept Emergency & Crit Care, Changchun 130041, Peoples R China
基金
中国国家自然科学基金;
关键词
Hydrogel; Conductivity; Spinal cord injury; Neural stem cells; Donepezil; LOCOMOTOR RECOVERY; DIFFERENTIATION; BIOCOMPATIBILITY; REGENERATION; STIMULATION; FABRICATION; NANOFIBERS; SCAFFOLDS; BRAIN;
D O I
10.1186/s13036-023-00368-2
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
BackgroundSpinal cord injury (SCI) is a serious injury with high mortality and disability rates, and there is no effective treatment at present. It has been reported that some treatments, such as drug intervention and stem cell transplantation have positive effects in promoting neurological recovery. Although those treatments are effective for nerve regeneration, many drawbacks, such as low stem cell survival rates and side effects caused by systemic medication, have limited their development. In recent years, injectable hydrogel materials have been widely used in tissue engineering due to their good biocompatibility, biodegradability, controllable properties, and low invasiveness. The treatment strategy of injectable hydrogels combined with stem cells or drugs has made some progress in SCI repair, showing the potential to overcome the drawbacks of traditional drugs and stem cell therapy.MethodsIn this study, a novel injectable electroactive hydrogel (NGP) based on sodium hyaluronate oxide (SAO) and polyaniline-grafted gelatine (NH2-Gel-PANI) was developed as a material in which to load neural stem cells (NSCs) and donepezil (DPL) to facilitate nerve regeneration after SCI. To evaluate the potential of the prepared NGP hydrogel in SCI repair applications, the surface morphology, self-repairing properties, electrical conductivity and cytocompatibility of the resulting hydrogel were analysed. Meanwhile, we evaluated the neural repair ability of NGP hydrogels loaded with DPL and NSCs using a rat model of spinal cord injury.ResultsThe NGP hydrogel has a suitable pore size, good biocompatibility, excellent conductivity, and injectable and self-repairing properties, and its degradation rate matches the repair cycle of spinal cord injury. In addition, DPL could be released continuously and slowly from the NGP hydrogel; thus, the NGP hydrogel could serve as an excellent carrier for drugs and cells. The results of in vitro cell experiments showed that the NGP hydrogel had good cytocompatibility and could significantly promote the neuronal differentiation and axon growth of NSCs, and loading the hydrogel with DPL could significantly enhance this effect. More importantly, the NGP hydrogel loaded with DPL showed a significant inhibitory effect on astrocytic differentiation of NSCs in vitro. Animal experiments showed that the combination of NGP hydrogel, DPL, and NSCs had the best therapeutic effect on the recovery of motor function and nerve conduction function in rats. NGP hydrogel loaded with NSCs and DPL not only significantly increased the myelin sheath area, number of new neurons and axon area but also minimized the area of the cystic cavity and glial scar and promoted neural circuit reconstruction.ConclusionsThe DPL- and NSC-laden electroactive hydrogel developed in this study is an ideal biomaterial for the treatment of traumatic spinal cord injury.
引用
收藏
页数:20
相关论文
共 50 条
[21]   Effect of Electroacupuncture Stimulation on Proliferation and Differentiation of Endogenous Neural Stem Cells in Rats with Spinal Cord Injury [J].
Qilong Deng ;
Lili Ma ;
Yu Yang ;
Ting Chen ;
Luding Zhan ;
Qiaoqiao He ;
Yingying Jiang ;
Lizhong Ma .
Molecular Neurobiology, 2024, 61 :635-645
[22]   An injectable gelatin/sericin hydrogel loaded with human umbilical cord mesenchymal stem cells for the treatment of uterine injury [J].
Chen, Lixuan ;
Li, Ling ;
Mo, Qinglin ;
Zhang, Xiaomin ;
Chen, Chaolin ;
Wu, Yingnan ;
Zeng, Xiaoli ;
Deng, Kaixian ;
Liu, Nanbo ;
Zhu, Ping ;
Liu, Mingxing ;
Xiao, Yang .
BIOENGINEERING & TRANSLATIONAL MEDICINE, 2023, 8 (01)
[23]   Diacerein Loaded Poly (Styrene Sulfonate) and Carbon Nanotubes Injectable Hydrogel: An Effective Therapy for Spinal Cord Injury Regeneration [J].
Xing, Shuai ;
Yan, Mingzhu ;
Yang, Yong ;
Wang, Yonggang ;
Hu, Xuchang ;
Ma, Bing ;
Kang, Xuewen .
JOURNAL OF CLUSTER SCIENCE, 2023, 34 (01) :565-576
[24]   Diacerein Loaded Poly (Styrene Sulfonate) and Carbon Nanotubes Injectable Hydrogel: An Effective Therapy for Spinal Cord Injury Regeneration [J].
Shuai Xing ;
Mingzhu Yan ;
Yong Yang ;
Yonggang Wang ;
Xuchang Hu ;
Bing Ma ;
Xuewen Kang .
Journal of Cluster Science, 2023, 34 :565-576
[25]   M2 microglia-derived exosome-loaded electroconductive hydrogel for enhancing neurological recovery after spinal cord injury [J].
Guan, Pengfei ;
Fan, Lei ;
Zhu, Zhaobo ;
Yang, Qinfeng ;
Kang, Xinchang ;
Li, Junji ;
Zhang, Zuyu ;
Liu, Shencai ;
Liu, Can ;
Wang, Xuelian ;
Xu, Jing ;
Wang, Kun ;
Sun, Yongjian .
JOURNAL OF NANOBIOTECHNOLOGY, 2024, 22 (01)
[26]   M2 microglia-derived exosome-loaded electroconductive hydrogel for enhancing neurological recovery after spinal cord injury [J].
Pengfei Guan ;
Lei Fan ;
Zhaobo Zhu ;
Qinfeng Yang ;
Xinchang Kang ;
Junji Li ;
Zuyu Zhang ;
Shencai Liu ;
Can Liu ;
Xuelian Wang ;
Jing Xu ;
Kun Wang ;
Yongjian Sun .
Journal of Nanobiotechnology, 22
[27]   The roles of neural stem cells in myelin regeneration and repair therapy after spinal cord injury [J].
Li, Chun ;
Luo, Yuping ;
Li, Siguang .
STEM CELL RESEARCH & THERAPY, 2024, 15 (01)
[28]   A Hydrogel Bridge Incorporating Immobilized Growth Factors and Neural Stem/Progenitor Cells to Treat Spinal Cord Injury [J].
Li, Hang ;
Ham, Trevor R. ;
Neill, Nicholas ;
Farrag, Mahmoud ;
Mohrman, Ashley E. ;
Koenig, Andrew M. ;
Leipzig, Nic D. .
ADVANCED HEALTHCARE MATERIALS, 2016, 5 (07) :802-812
[29]   Concomitant use of mesenchymal stem cells and neural stem cells for treatment of spinal cord injury: A combo cell therapy approach [J].
Hosseini, Seyed Mojtaba ;
Sani, Mahsa ;
Haider, Kh. Husnanin ;
Dorvash, Mohammadreza ;
Ziaee, Seyyed Mohyeddin ;
Karimi, Aliasghar ;
Namavar, Mohmmad Reza .
NEUROSCIENCE LETTERS, 2018, 668 :138-146
[30]   Enhancing neurite outgrowth from primary neurones and neural stem cells using thermoresponsive hydrogel scaffolds for the repair of spinal cord injury [J].
Nisbet, D. R. ;
Moses, D. ;
Gengenbach, T. R. ;
Forsythe, J. S. ;
Finkelstein, D. I. ;
Horne, M. K. .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2009, 89A (01) :24-35