keyword
https://read.qxmd.com/read/38621204/differential-roles-of-diet-on-development-and-spinal-cord-regeneration-in-larval-zebrafish
#21
JOURNAL ARTICLE
Emily J Purifoy, Karen Mruk
The zebrafish is a powerful model organism for studying development and regeneration. However, there is a lack of a standardized reference diet for developmental and regeneration experiments. Most studies evaluate the rate of growth, survival, and fecundity. In this study, we compare three diets and their effects on growth and regeneration after a spinal cord injury (SCI). Fish were fed daily for 1 week with daily measurements of overall length and width of spinal injury. Fish fed a live rotifer diet grew 32%, whereas a commercially available diet only led to a 4% increase in body length...
April 2024: Zebrafish
https://read.qxmd.com/read/38617277/optineurin-facilitated-axonal-mitochondria-delivery-promotes-neuroprotection-and-axon-regeneration
#22
Dong Liu, Hannah C Webber, Fuyun Bian, Yangfan Xu, Manjari Prakash, Xue Feng, Ming Yang, Hang Yang, In-Jee You, Liang Li, Liping Liu, Pingting Liu, Haoliang Huang, Chien-Yi Chang, Liang Liu, Sahil H Shah, Anna La Torre, Derek S Welsbie, Yang Sun, Xin Duan, Jeffrey Louis Goldberg, Marcus Braun, Zdenek Lansky, Yang Hu
Optineurin (OPTN) mutations are linked to amyotrophic lateral sclerosis (ALS) and normal tension glaucoma (NTG), but a relevant animal model is lacking, and the molecular mechanisms underlying neurodegeneration are unknown. We found that OPTN C-terminus truncation (OPTNΔC) causes late-onset neurodegeneration of retinal ganglion cells (RGCs), optic nerve (ON), and spinal cord motor neurons, preceded by a striking decrease of axonal mitochondria. Surprisingly, we discover that OPTN directly interacts with both microtubules and the mitochondrial transport complex TRAK1/KIF5B, stabilizing them for proper anterograde axonal mitochondrial transport, in a C- terminus dependent manner...
April 3, 2024: bioRxiv
https://read.qxmd.com/read/38615859/mg53-gms-ha-dex-neural-scaffold-promotes-the-functional-recovery-of-spinal-cord-injury-by-alleviating-neuroinflammation
#23
JOURNAL ARTICLE
Xingfan Li, Rong Ji, Linyan Duan, Zhizhong Hao, Yujing Su, Hao Wang, Fangxia Guan, Shanshan Ma
The adverse microenvironment, including neuroinflammation, hinders the recovery of spinal cord injury (SCI). Regulating microglial polarization to alleviate neuroinflammation at the injury site is an effective strategy for SCI recovery. MG53 protein exerts obvious repair ability on multiple tissues damage, but with short half-life. In this study, we composited an innovative MG53/GMs/HA-Dex neural scaffold using gelatin microspheres (GMs), hyaluronic acid (HA), and dextran (Dex) loaded with MG53 protein. This novel neural scaffold could respond to MMP-2/9 protein and stably release MG53 protein with good physicochemical properties and biocompatibility...
April 12, 2024: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38615813/decellularized-extracellular-matrix-enriched-with-gdnf-enhances-neurogenesis-and-remyelination-for-improved-motor-recovery-after-spinal-cord-injury
#24
JOURNAL ARTICLE
Jiashang Liu, Ruijia Yan, Bixue Wang, Shu Chen, Hua Hong, Changsheng Liu, Xi Chen
Motor functional improvement represents a paramount treatment objective in the post-spinal cord injury (SCI) recovery process. However, neuronal cell death and axonal degeneration following SCI disrupt neural signaling, impeding the motor functional recovery. In this study, we developed a multifunctional decellularized spinal cord-derived extracellular matrix (dSECM), crosslinked with glial cell-derived neurotrophic factor (GDNF), to promote differentiation of stem cells into neural-like cells and facilitate axonogenesis and remyelination...
April 12, 2024: Acta Biomaterialia
https://read.qxmd.com/read/38607020/nf-%C3%AE%C2%BAb-and-jak-stat-signaling-pathways-as-crucial-regulators-of-neuroinflammation-and-astrocyte-modulation-in-spinal-cord-injury
#25
REVIEW
Tatyana Ageeva, Albert Rizvanov, Yana Mukhamedshina
Spinal cord injury (SCI) leads to significant functional impairments below the level of the injury, and astrocytes play a crucial role in the pathophysiology of SCI. Astrocytes undergo changes and form a glial scar after SCI, which has traditionally been viewed as a barrier to axonal regeneration and functional recovery. Astrocytes activate intracellular signaling pathways, including nuclear factor κB (NF-κB) and Janus kinase-signal transducers and activators of transcription (JAK/STAT), in response to external stimuli...
March 26, 2024: Cells
https://read.qxmd.com/read/38607008/the-translation-of-nanomedicines-in-the-contexts-of-spinal-cord-injury-and-repair
#26
REVIEW
Wenqian Wang, Joel Yong, Paul Marciano, Ryan O'Hare Doig, Guangzhao Mao, Jillian Clark
PURPOSE OF THIS REVIEW: Manipulating or re-engineering the damaged human spinal cord to achieve neuro-recovery is one of the foremost challenges of modern science. Addressing the restricted permission of neural cells and topographically organised neural tissue for self-renewal and spontaneous regeneration, respectively, is not straightforward, as exemplified by rare instances of translational success. This review assembles an understanding of advances in nanomedicine for spinal cord injury (SCI) and related clinical indications of relevance to attempts to design, engineer, and target nanotechnologies to multiple molecular networks...
March 24, 2024: Cells
https://read.qxmd.com/read/38600569/fascin-1-limits-myosin-activity-in-microglia-to-control-mechanical-characterization-of-the-injured-spinal-cord
#27
JOURNAL ARTICLE
Jinxin Huang, Xuyang Hu, Zeqiang Chen, Fangru Ouyang, Jianjian Li, Yixue Hu, Yuanzhe Zhao, Jingwen Wang, Fei Yao, Juehua Jing, Li Cheng
BACKGROUND: Mechanical softening of the glial scar region regulates axonal regeneration to impede neurological recovery in central nervous system (CNS) injury. Microglia, a crucial cellular component of the glial scar, facilitate neuronal survival and neurological recovery after spinal cord injury (SCI). However, the critical mechanical characterization of injured spinal cord that harmonizes neuroprotective function of microglia remains poorly understood. METHODS: Spinal cord tissue stiffness was assessed using atomic force microscopy (AFM) in a mouse model of crush injury...
April 10, 2024: Journal of Neuroinflammation
https://read.qxmd.com/read/38597175/transcriptomic-analysis-of-differentially-alternative-splicing-patterns-in-mice-with-inflammatory-and-neuropathic-pain
#28
JOURNAL ARTICLE
Mingzhu Zhai, Jiabin Huang, Shaomin Yang, Na Li, Jun Zeng, Yi Zheng, Wuping Sun, Benqing Wu
Although the molecular mechanisms of chronic pain have been extensively studied, a global picture of alternatively spliced genes and events in the peripheral and central nervous systems of chronic pain is poorly understood. The current study analyzed the changing pattern of alternative splicing (AS) in mouse brain, dorsal root ganglion, and spinal cord tissue under inflammatory and neuropathic pain. In total, we identified 6495 differentially alternatively spliced (DAS) genes. The molecular functions of shared DAS genes between these two models are mainly enriched in calcium signaling pathways, synapse organization, axon regeneration, and neurodegeneration disease...
April 10, 2024: Molecular Pain
https://read.qxmd.com/read/38595294/surgical-intervention-combined-with-weight-bearing-walking-training-promotes-recovery-in-patients-with-chronic-spinal-cord-injury-a-randomized-controlled-study
#29
JOURNAL ARTICLE
Hui Zhu, James D Guest, Sarah Dunlop, Jia-Xin Xie, Sujuan Gao, Zhuojing Luo, Joe E Springer, Wutian Wu, Wise Young, Wai Sang Poon, Song Liu, Hongkun Gao, Tao Yu, Dianchun Wang, Libing Zhou, Shengping Wu, Lei Zhong, Fang Niu, Xiaomei Wang, Yansheng Liu, Kwok-Fai So, Xiao-Ming Xu
JOURNAL/nrgr/04.03/01300535-202412000-00032/figure1/v/2024-04-08T165401Z/r/image-tiff For patients with chronic spinal cord injury, the conventional treatment is rehabilitation and treatment of spinal cord injury complications such as urinary tract infection, pressure sores, osteoporosis, and deep vein thrombosis. Surgery is rarely performed on spinal cord injury in the chronic phase, and few treatments have been proven effective in chronic spinal cord injury patients. Development of effective therapies for chronic spinal cord injury patients is needed...
December 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38595290/screening-biomarkers-for-spinal-cord-injury-using-weighted-gene-co-expression-network-analysis-and-machine-learning
#30
JOURNAL ARTICLE
Xiaolu Li, Ye Yang, Senming Xu, Yuchang Gui, Jianmin Chen, Jianwen Xu
JOURNAL/nrgr/04.03/01300535-202412000-00028/figure1/v/2024-04-08T165401Z/r/image-tiff Immune changes and inflammatory responses have been identified as central events in the pathological process of spinal cord injury. They can greatly affect nerve regeneration and functional recovery. However, there is still limited understanding of the peripheral immune inflammatory response in spinal cord injury. In this study, we obtained microRNA expression profiles from the peripheral blood of patients with spinal cord injury using high-throughput sequencing...
December 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38595286/neurogenic-potential-of-ng2-in-neurotrauma-a-systematic-review
#31
JOURNAL ARTICLE
Yuri R Rigo, Radharani Benvenutti, Luis V Portela, Nathan R Strogulski
Regenerative approaches towards neuronal loss following traumatic brain or spinal cord injury have long been considered a dogma in neuroscience and remain a cutting-edge area of research. This is reflected in a large disparity between the number of studies investigating primary and secondary injury as therapeutic targets in spinal cord and traumatic brain injuries. Significant advances in biotechnology may have the potential to reshape the current state-of-the-art and bring focus to primary injury neurotrauma research...
December 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38592581/mertk-reduces-blood-spinal-cord-barrier-permeability-through-the-rhoa-rock1-p-mlc-pathway-after-spinal-cord-injury
#32
JOURNAL ARTICLE
Jiezhao Lin, Yuanfang Sun, Bin Xia, Yihan Wang, Changnan Xie, Jinfeng Wang, Jinwei Hu, Lixin Zhu
Disruption of the blood-spinal cord barrier (BSCB) is a critical event in the secondary injury following spinal cord injury (SCI). Mertk has been reported to play an important role in regulating inflammation and cytoskeletal dynamics. However, the specific involvement of Mertk in BSCB remains elusive. Here, we demonstrated a distinct role of Mertk in the repair of BSCB. Mertk expression is decreased in endothelial cells following SCI. Overexpression of Mertk upregulated tight junction proteins (TJs), reducing BSCB permeability and subsequently inhibiting inflammation and apoptosis...
April 9, 2024: Neuroscience Bulletin
https://read.qxmd.com/read/38591622/understanding-exosomes-part-2-emerging-leaders-in-regenerative-medicine
#33
REVIEW
Richard J Miron, Nathan E Estrin, Anton Sculean, Yufeng Zhang
Exosomes are the smallest subset of extracellular signaling vesicles secreted by most cells with the ability to communicate with other tissues and cell types over long distances. Their use in regenerative medicine has gained tremendous momentum recently due to their ability to be utilized as therapeutic options for a wide array of diseases/conditions. Over 5000 publications are currently being published yearly on this topic, and this number is only expected to dramatically increase as novel therapeutic strategies continue to be developed...
April 9, 2024: Periodontology 2000
https://read.qxmd.com/read/38589053/injectable-electroconductive-free-radical-scavenging-silk-fibroin-black-phosphorus-glycyrrhizic-acid-nanocomposite-hydrogel-for-enhancing-spinal-cord-repair
#34
JOURNAL ARTICLE
Beichen Zhang, Wanshun Wang, Peng Gao, Xiang Li, Lingling Chen, Zefeng Lin, Hu Chen, Wenhao Liang, Zhiyuan Kong, Dingkun Lin, Xiaona Wu, Tao Zhang
Spinal cord injury (SCI) often leads to a severe permanent disability. A poor inflammatory microenvironment and nerve electric signal conduction block are the main reasons for difficulty in spinal cord nerve regeneration. In this study, black phosphorus (BP) and glycyrrhizic acid (GA) were integrated into methacrylate-modified silk fibroin (SF) to construct a bifunctional injectable hydrogel (SF/BP/GA) with appropriate conductivity and the ability to inhibit inflammation to promote neuronal regeneration after SCI...
April 8, 2024: Advanced Healthcare Materials
https://read.qxmd.com/read/38582297/microrna-2184-orchestrates-mauthner-cell-axon-regeneration-in-zebrafish-via-syt3-modulation
#35
JOURNAL ARTICLE
Xinghan Chen, Yueru Shen, Zheng Song, Xinliang Wang, Huaitong Yao, Yuan Cai, Ziang Zhao, Bing Hu
MicroRNAs (miRNAs) play a significant role in axon regeneration following spinal cord injury. However, the functions of numerous miRNAs in axon regeneration within the central nervous system (CNS) remain largely unexplored. Here, we elucidate the positive role of miR-2184 in axon regeneration within zebrafish Mauthner cells (M-cells). The upregulation of miR-2184 in the single M-cells facilitates axon regeneration, while the specific sponge-induced silencing of miR-2184 leads to impeded axon regeneration. We show that syt3, a downstream target of miR-2184, negatively regulates axon regeneration, and the regeneration suppression by syt3 depends on its binding to Ca2+ ...
April 4, 2024: Journal of Genetics and Genomics
https://read.qxmd.com/read/38578715/hypothermia-effects-on-neuronal-plasticity-post-spinal-cord-injury
#36
JOURNAL ARTICLE
Hasan Al-Nashash, Ka-Leung Wong, Angelo H All
BACKGROUND: SCI is a time-sensitive debilitating neurological condition without treatment options. Although the central nervous system is not programmed for effective endogenous repairs or regeneration, neuroplasticity partially compensates for the dysfunction consequences of SCI. OBJECTIVE AND HYPOTHESIS: The purpose of our study is to investigate whether early induction of hypothermia impacts neuronal tissue compensatory mechanisms. Our hypothesis is that although neuroplasticity happens within the neuropathways, both above (forelimbs) and below (hindlimbs) the site of spinal cord injury (SCI), hypothermia further influences the upper limbs' SSEP signals, even when the SCI is mid-thoracic...
2024: PloS One
https://read.qxmd.com/read/38578425/treatment-of-syringomyelia-characterized-by-focal-dilatation-of-the-central-canal-using-mesenchymal-stem-cells-and-neural-stem-cells
#37
JOURNAL ARTICLE
Mo Li, Xinyu Wang, Boling Qi, Shengyu Cui, Tianqi Zheng, Yunqian Guan, Longbing Ma, Sumei Liu, Qian Li, Zhiguo Chen, Fengzeng Jian
BACKGROUND: Syringomyelia is a progressive chronic disease that leads to nerve pain, sensory dissociation, and dyskinesia. Symptoms often do not improve after surgery. Stem cells have been widely explored for the treatment of nervous system diseases due to their immunoregulatory and neural replacement abilities. METHODS: In this study, we used a rat model of syringomyelia characterized by focal dilatation of the central canal to explore an effective transplantation scheme and evaluate the effect of mesenchymal stem cells and induced neural stem cells for the treatment of syringomyelia...
April 5, 2024: Tissue Engineering and Regenerative Medicine
https://read.qxmd.com/read/38570272/mesenchymal-stem-cell-derived-exosomes-as-new-drug-carrier-for-the-treatment-of-spinal-cord-injury-a-review
#38
JOURNAL ARTICLE
Lin-Fei Cheng, Chao-Qun You, Cheng Peng, Jia-Ji Ren, Kai Guo, Tie-Long Liu
Spinal cord injury (SCI) is a devastating traumatic disease seriously impairing the quality of life in patients. Expectations to allow the hopeless central nervous system to repair itself after injury are unfeasible. Developing new approaches to regenerate the central nervous system is still the priority. Exosomes derived from mesenchymal stem cells (MSC-Exo) have been proven to robustly quench the inflammatory response or oxidative stress and curb neuronal apoptosis and autophagy following SCI, which are the key processes to rescue damaged spinal cord neurons and restore their functions...
March 26, 2024: Chinese Journal of Traumatology
https://read.qxmd.com/read/38569548/scrna-seq-data-from-the-larval-drosophila-ventral-cord-provides-a-resource-for-studying-motor-systems-function-and-development
#39
JOURNAL ARTICLE
Tho Huu Nguyen, Rosario Vicidomini, Saumitra Dey Choudhury, Tae Hee Han, Dragan Maric, Thomas Brody, Mihaela Serpe
The Drosophila larval ventral nerve cord (VNC) shares many similarities with the spinal cord of vertebrates and has emerged as a major model for understanding the development and function of motor systems. Here, we use high-quality scRNA-seq, validated by anatomical identification, to create a comprehensive census of larval VNC cell types. We show that the neural lineages that comprise the adult VNC are already defined, but quiescent, at the larval stage. Using fluorescence-activated cell sorting (FACS)-enriched populations, we separate all motor neuron bundles and link individual neuron clusters to morphologically characterized known subtypes...
March 28, 2024: Developmental Cell
https://read.qxmd.com/read/38569491/3d-bioprinting-approaches-for-spinal-cord-injury-repair
#40
JOURNAL ARTICLE
Jingwei Jiu, Haifeng Liu, Dijun Li, Jiarong Li, Lu Liu, Wenjie Yang, Lei Yan, Songyan Li, Jing Zhang, Xiaoke Li, Jiao Jiao Li, Bin Wang
Regenerative healing of spinal cord injury poses an ongoing medical challenge by causing persistent neurological impairment and a significant socioeconomic burden. The complexity of spinal cord tissue presents hurdles to successful regeneration following injury, due to the difficulty of forming a biomimetic structure that faithfully replicates native tissue using conventional tissue engineering scaffolds. 3D bioprinting is a rapidly evolving technology with unmatched potential to create 3D biological tissues with complicated and hierarchical structure and composition...
April 3, 2024: Biofabrication
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