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Chondroitinase ABC combined with Schwann cell transplantation enhances restoration of neural connection and functional recovery following acute and chronic spinal cord injury
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作者 Wenrui Qu xiangbing wu +13 位作者 Wei wu Ying Wang Yan Sun Lingxiao Deng Melissa Walker Chen Chen Heqiao Dai Qi Han Ying Ding Yongzhi Xia George Smith Rui Li Nai-Kui Liu Xiao-Ming Xu 《Neural Regeneration Research》 SCIE CAS 2025年第5期1467-1482,共16页
Schwann cell transplantation is considered one of the most promising cell-based therapy to repair injured spinal cord due to its unique growth-promoting and myelin-forming properties.A the Food and Drug Administration... Schwann cell transplantation is considered one of the most promising cell-based therapy to repair injured spinal cord due to its unique growth-promoting and myelin-forming properties.A the Food and Drug Administration-approved Phase I clinical trial has been conducted to evaluate the safety of transplanted human autologous Schwann cells to treat patients with spinal cord injury.A major challenge for Schwann cell transplantation is that grafted Schwann cells are confined within the lesion cavity,and they do not migrate into the host environment due to the inhibitory barrier formed by injury-induced glial scar,thus limiting axonal reentry into the host spinal cord.Here we introduce a combinatorial strategy by suppressing the inhibitory extracellular environment with injection of lentivirus-mediated transfection of chondroitinase ABC gene at the rostral and caudal borders of the lesion site and simultaneously leveraging the repair capacity of transplanted Schwann cells in adult rats following a mid-thoracic contusive spinal cord injury.We report that when the glial scar was degraded by chondroitinase ABC at the rostral and caudal lesion borders,Schwann cells migrated for considerable distances in both rostral and caudal directions.Such Schwann cell migration led to enhanced axonal regrowth,including the serotonergic and dopaminergic axons originating from supraspinal regions,and promoted recovery of locomotor and urinary bladder functions.Importantly,the Schwann cell survival and axonal regrowth persisted up to 6 months after the injury,even when treatment was delayed for 3 months to mimic chronic spinal cord injury.These findings collectively show promising evidence for a combinatorial strategy with chondroitinase ABC and Schwann cells in promoting remodeling and recovery of function following spinal cord injury. 展开更多
关键词 axonal regrowth bladder function chondroitinase ABC functional recovery glial scar LENTIVIRUS migration Schwann cell spinal cord injury TRANSPLANTATION
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Rho A/Rho kinase in spinal cord injury 被引量:10
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作者 xiangbing wu Xiao-ming Xu 《Neural Regeneration Research》 SCIE CAS CSCD 2016年第1期23-27,共5页
A spinal cord injury refers to an injury to the spinal cord that is caused by a trauma instead of diseases. Spinal cord injury includes a primary mechanical injury and a much more complex secondary injury process invo... A spinal cord injury refers to an injury to the spinal cord that is caused by a trauma instead of diseases. Spinal cord injury includes a primary mechanical injury and a much more complex secondary injury process involving inflammation, oxidation, excitotoxicity, and cell death. During the secondary injury, many signal pathways are activated and play important roles in mediating the pathogenesis of spinal cord injury. Among them, the Rho A/Rho kinase pathway plays a particular role in mediating spinal degeneration and regeneration. In this review, we will discuss the role and mechanism of Rho A/Rho kinase-mediated spinal cord pathogenesis, as well as the potential of targeting Rho A/Rho kinase as a strategy for promoting both neuroprotection and axonal regeneration. 展开更多
关键词 Rho A Rho kinase inflammation cell death degeneration regeneration spinal cord injury
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Development of wet adhesion of honeybee arolium incorporated polygonal structure with three-phase composite interfaces
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作者 Lulu LIANG Jieliang ZHAO +5 位作者 Qun NIU Li YU xiangbing wu Wenzhong WANG Shaoze YAN Zhenglei YU 《Friction》 SCIE EI CAS CSCD 2024年第2期215-230,共16页
Inspired by the dynamic wet adhesive systems in nature,various artificial adhesive surfaces have been developed but still face different challenges.Crucially,the theoretical mechanics of wet adhesives has never been s... Inspired by the dynamic wet adhesive systems in nature,various artificial adhesive surfaces have been developed but still face different challenges.Crucially,the theoretical mechanics of wet adhesives has never been sufficiently revealed.Here,we develop a novel adhesive mechanism for governing wet adhesion and investigate the biological models of honeybee arolium for reproducing the natural wet adhesive systems.Micro-nano structures of honeybee arolium and arolium-prints were observed by Cryogenic scanning electron microscopy(Cryo-SEM),and the air pockets were found in the contact interface notably.Subsequently,the adhesive models with a three-phase composite interface(including air pockets,liquid secretion,and hexagonal frames of arolium),were formed to analyze the wet adhesion of honeybee arolium.The results of theoretical calculations and experiments indicated an enhanced adhesive mechanism of the honeybee by liquid self-sucking effects and air-embolism effects.Under these effects,normal and shear adhesion can be adjusted by controlling the proportion of liquid secretion and air pockets in the contact zone.Notably,the air-embolism effects contribute to the optimal coupling of smaller normal adhesion with greater shear adhesion,which is beneficial for the high stride frequency of honeybees.These works can provide a fresh perspective on the development of bio-inspired wet adhesive surfaces. 展开更多
关键词 honeybee arolium air pockets wet adhesion a three-phase interface self-sucking effects air-embolism effects
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A Review of Energy Supply for Biomachine Hybrid Robots
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作者 Zhiyun Ma Jieliang Zhao +6 位作者 Li Yu Mengdan Yan Lulu Liang xiangbing wu Mengdi Xu Wenzhong Wang Shaoze Yan 《Cyborg and Bionic Systems》 EI CAS 2023年第1期70-83,共14页
Biomachine hybrid robots have been proposed for important scenarios,such as wilderness rescue,ecological monitoring,and hazardous area surveying.The energy supply unit used to power the control backpack carried by the... Biomachine hybrid robots have been proposed for important scenarios,such as wilderness rescue,ecological monitoring,and hazardous area surveying.The energy supply unit used to power the control backpack carried by these robots determines their future development and practical application.Current energy supply devices for control backpacks are mainly chemical batteries.To achieve self-powered devices,researchers have developed solar energy,bioenergy,biothermal energy,and biovibration energy harvesters.This review provides an overview of research in the development of chemical batteries and self-powered devices for biomachine hybrid robots.Various batteries for different biocarriers and the entry points for the design of self-powered devices are outlined in detail.Finally,an overview of the future challenges and possible directions for the development of energy supply devices used to biomachine hybrid robots is provided. 展开更多
关键词 HYBRID SURVEYING DIRECTIONS
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