keyword
https://read.qxmd.com/read/38526172/p2x7-regulates-ependymo-radial-glial-cell-proliferation-in-adult-danio-rerio-following-spinal-cord-injury
#21
JOURNAL ARTICLE
Eva E Stefanova, Julian V T Dychiao, Mavis C Chinn, Matin Borhani, Angela L Scott
In contrast to mammals, zebrafish undergo successful neural regeneration following spinal cord injury. Spinal cord ependymo-radial glia (ERG) undergo injury-induced proliferation and neuronal differentiation to replace damaged cells and restore motor function. However, the molecular cues driving these processes remain elusive. Here, we demonstrate that the evolutionarily conserved P2X7 receptors are widely distributed on neurons and ERG within the zebrafish spinal cord. At the protein level, the P2X7 receptor expressed in zebrafish is a truncated splice variant of the full-length variant found in mammals...
March 25, 2024: Biology Open
https://read.qxmd.com/read/38509397/lpar6-participates-in-neuropathic-pain-by-mediating-astrocyte-cells-via-rock2-nf-%C3%AE%C2%BAb-signal-pathway
#22
JOURNAL ARTICLE
Xiaoyi Fan, Ruitong Chu, Xin Jiang, Peng Ma, Yan Chu, Tong Hua, Mei Yang, Ruifeng Ding, Jian Li, Zhenghua Xiang, Hongbin Yuan
Neuropathic pain (NPP) is a common type of chronic pain. Glial cells, including astrocytes (AS), are believed to play an important role in the progression of NPP. AS cells can be divided into various types based on their expression profiles, among which A1 and A2 types have clear functions. A1-type AS cells are neurotoxic, while A2-type AS cells exert neuroprotective functions. Some types of lysophosphatidic acid receptors (LPAR) have been shown to play a role in NPP. However, it remains unclear how AS cells and LPAR6 affect the occurrence and progression of NPP...
March 20, 2024: Molecular Neurobiology
https://read.qxmd.com/read/38497893/biomimetic-dual-network-collagen-fibers-with-porous-and-mechanical-cues-reconstruct-neural-stem-cell-niche-via-akt-yap-mechanotransduction-after-spinal-cord-injury
#23
JOURNAL ARTICLE
Haitao Zhao, Tiandi Xiong, Yun Chu, Wangping Hao, Tongtong Zhao, Xinyue Sun, Yan Zhuang, Bing Chen, Yannan Zhao, Jun Wang, Yanyan Chen, Jianwu Dai
Tissue engineering scaffolds can mediate the maneuverability of neural stem cell (NSC) niche to influence NSC behavior, such as cell self-renewal, proliferation, and differentiation direction, showing the promising application in spinal cord injury (SCI) repair. Here, dual-network porous collagen fibers (PCFS) are developed as neurogenesis scaffolds by employing biomimetic plasma ammonia oxidase catalysis and conventional amidation cross-linking. Following optimizing the mechanical parameters of PCFS, the well-matched Young's modulus and physiological dynamic adaptability of PCFS (4...
March 18, 2024: Small
https://read.qxmd.com/read/38484854/mesenchymal-stem-cell-engagement-modulates-neuroma-microenviroment-in-rats-and-humans-and-prevents-postamputation-pain
#24
JOURNAL ARTICLE
Mailín Casadei, Bernardo Miguel, Julia Rubione, Esteban Fiore, Diego Mengelle, Roberto A Guerri-Guttenberg, Alejandro Montaner, Marcelo J Villar, Luis Constandil-Córdova, Alfonso E Romero-Sandoval, Pablo R Brumovsky
Postamputation pain is currently managed unsatisfactorily with neuron-targeted pharmacological and interventional therapies. Non-neuronal pain mechanisms have emerged as crucial factors in the development and persistence of post-amputation pain. Consequently, these mechanisms offer exciting prospects as innovative therapeutic targets. We examined the hypothesis that engaging mesenchymal stem cells (MSCs) would foster local neuroimmune interactions, leading to a potential reduction in post-amputation pain. We utilized an ex vivo neuroma model from a phantom limb pain patient to uncover that the oligodeoxynucleotide IMT504 engaged human primary MSCs to promote an anti-inflammatory microenvironment...
March 12, 2024: Journal of Pain
https://read.qxmd.com/read/38476418/synchronous-presentation-of-prolactinoma-and-supratentorial-tanycytic-ependymoma
#25
Jishnu Narayanan Nair, Rav Tej Bathala, Visvanathan Krishnaswamy, Shriraam Mahadevan
Tanycytic ependymomas mostly occur in the spinal cord and it is the rarest histological subtype of ependymoma. A 29-year-old male was referred from the infertility clinic after serum prolactin levels were found to be elevated. Magnetic resonance imaging (MRI) brain showed an irregular necrotic lesion in the periventricular region of the left parietal lobe which had an intraventricular component and associated perilesional edema. In addition, a sellar mass with suprasellar extension was also found on the MRI...
2024: Journal of Neurosciences in Rural Practice
https://read.qxmd.com/read/38475854/glial-restricted-progenitor-cells-a-cure-for-diseased-brain
#26
REVIEW
Piotr Rogujski, Barbara Lukomska, Miroslaw Janowski, Luiza Stanaszek
The central nervous system (CNS) is home to neuronal and glial cells. Traditionally, glia was disregarded as just the structural support across the brain and spinal cord, in striking contrast to neurons, always considered critical players in CNS functioning. In modern times this outdated dogma is continuously repelled by new evidence unravelling the importance of glia in neuronal maintenance and function. Therefore, glia replacement has been considered a potentially powerful therapeutic strategy. Glial progenitors are at the center of this hope, as they are the source of new glial cells...
March 12, 2024: Biological Research
https://read.qxmd.com/read/38466179/mos-2-2d-materials-induce-spinal-cord-neuroinflammation-and-neurotoxicity-affecting-locomotor-performance-in-zebrafish
#27
JOURNAL ARTICLE
Giuseppe Di Mauro, Viviana Jehová González, Francesco Bambini, Silvia Camarda, Eduardo Prado, Juan Pedro Holgado, Ester Vázquez, Laura Ballerini, Giada Cellot
MoS2 nanosheets belong to an emerging family of nanomaterials named bidimensional transition metal dichalcogenides (2D TMDCs). The use of such promising materials, featuring outstanding chemical and physical properties, is expected to increase in several fields of science and technology, with an enhanced risk of environmental dispersion and associated wildlife and human exposures. In this framework, the assessment of MoS2 nanosheets toxicity is instrumental to safe industrial developments. Currently, the impact of the nanomaterial on the nervous tissue is unexplored...
March 11, 2024: Nanoscale Horizons: the Home for Rapid Reports of Exceptional Significance in Nanoscience and Nanotechnolgy
https://read.qxmd.com/read/38438875/embryonic-stem-cells-overexpressing-high-molecular-weight-fgf2-isoform-enhance-recovery-of-pre-ganglionic-spinal-root-lesion-in-combination-with-fibrin-biopolymer-mediated-root-repair
#28
JOURNAL ARTICLE
B H M Lima, L P Cartarozzi, S Kyrylenko, R S Ferreira, B Barraviera, Alexandre L R Oliveira
BACKGROUND: Spinal ventral root avulsion results in massive motoneuron degeneration with poor prognosis and high costs. In this study, we compared different isoforms of basic fibroblast growth factor 2 (FGF2), overexpressed in stably transfected Human embryonic stem cells (hESCs), following motor root avulsion and repair with a heterologous fibrin biopolymer (HFB). METHODS: In the present work, hESCs bioengineered to overexpress 18, 23, and 31 kD isoforms of FGF2, were used in combination with reimplantation of the avulsed roots using HFB...
March 5, 2024: Stem Cell Research & Therapy
https://read.qxmd.com/read/38437789/review-of-cellular-therapies-provides-new-insights-into-the-potential-treatment-of-diverse-neurologic-diseases-in-horses-and-dogs
#29
JOURNAL ARTICLE
Aimée C Colbath, Laurie Goodrich, Christopher Frye, Steven Dow
Neurological diseases and injuries in veterinary patients (horses, dogs, and cats) are complex, and effective treatment options are limited. Neuronal loss, damage to nerve conduction pathways, and inflammation and scarring associated with spinal cord injury pose major challenges in managing many neurological diseases. Furthermore, most of these neuropathologies lack definitive pharmacological treatments, driving interest and research into novel interventions. Our objective is to provide a narrative review of the current literature surrounding cellular therapies including neuronal and glial stem cells, neurotrophic factors, mesenchymal stem or stromal cells, and cells derived from induced pluripotent stem cells for the treatment of diverse neurological pathologies...
March 8, 2024: Journal of the American Veterinary Medical Association
https://read.qxmd.com/read/38430464/acetyl-11-keto-beta-boswellic-acid-modulates-macrophage-polarization-and-schwann-cell-migration-to-accelerate-spinal-cord-injury-repair-in-rats
#30
JOURNAL ARTICLE
Yao Wang, Zongliang Xiong, Yuncong Qiao, Qiyuan Zhang, Guanghu Zhou, Chong Zhou, Xianglin Ma, Xiaowen Jiang, Wenhui Yu
BACKGROUND: Inhibiting secondary inflammatory damage caused by glial cells and creating a stable microenvironment is one of the main strategies to investigate drugs for the treatment of spinal cord injury. Acetyl-11-keto-beta-boswellic acid (AKBA) is the active component of the natural drug boswellia, which has anti-inflammatory and antioxidant effects and offers a possible therapeutic option for spinal cord injury. METHODS: In this study, a spinal cord injury model was established by crushing spinal cord, respectively, to detect the M1 macrophage inflammatory markers: iNOS, TNF-α, IL-1β, and the M2 macrophage markers CD206, ARG-1, IL-10, and the detection of antioxidant enzymes and MDA...
March 2024: CNS Neuroscience & Therapeutics
https://read.qxmd.com/read/38428149/fisetin-orchestrates-neuroinflammation-resolution-and-facilitates-spinal-cord-injury-recovery-through-enhanced-autophagy-in-pro-inflammatory-glial-cells
#31
JOURNAL ARTICLE
Yishan Liu, Wenxiang Chu, Hongdao Ma, Weilin Peng, Qisheng Li, Lin Han, Haibin Wang, Liang Wang, Bangke Zhang, Jiandong Yang, Xuhua Lu
BACKGROUND: Neuroinflammation, a critical component of the secondary injury cascade post-spinal cord injury, involves the activation of pro-inflammatory cells and release of inflammatory mediators. Resolution of neuroinflammation is closely linked to cellular autophagy. This study investigates the potential of Fisetin, a natural anti-inflammatory compound, to ameliorate neuroinflammation and confer spinal cord injury protection through the regulation of autophagy in pro-inflammatory cells...
February 29, 2024: International Immunopharmacology
https://read.qxmd.com/read/38427225/tunel-n-difl-method-for-detection-and-estimation-of-apoptosis-specifically-in-neurons-and-glial-cells-in-mixed-culture-and-animal-models-of-central-nervous-system-diseases-and-injuries
#32
JOURNAL ARTICLE
Swapan K Ray
Detection of merely apoptosis does not reveal the type of central nervous system (CNS) cells that are dying in the CNS diseases and injuries. In situ detection and estimation of amount of apoptosis specifically in neurons or glial cells (astrocytes, oligodendrocytes, and microglia) can unveil valuable information for designing therapeutics for protection of the CNS cells and functional recovery. A method was first developed and reported from our laboratory for in situ detection and estimation of amount of apoptosis precisely in neurons and glial cells using in vitro and in vivo models of CNS diseases and injuries...
2024: Methods in Molecular Biology
https://read.qxmd.com/read/38426931/cddo-regulates-central-and-peripheral-sensitization-to-attenuate-post-herpetic-neuralgia-by-targeting-trpv1-pkc-%C3%AE-p-akt-signals
#33
JOURNAL ARTICLE
Chun-Ching Lu, Chia-Yang Lin, Ying-Yi Lu, Hung-Pei Tsai, Chih-Lung Lin, Chieh-Hsin Wu
Postherpetic neuralgia (PHN) is a notorious neuropathic pain featuring persistent profound mechanical hyperalgesia with significant negative impact on patients' life quality. CDDO can regulate inflammatory response and programmed cell death. Its derivative also protects neurons from damages by modulating microglia activities. As a consequence of central and peripheral sensitization, applying neural blocks may benefit to minimize the risk of PHN. This study aimed to explore whether CDDO could generate analgesic action in a PHN-rats' model...
March 2024: Journal of Cellular and Molecular Medicine
https://read.qxmd.com/read/38422490/low-frequency-5-hz-stimulation-of-ventrolateral-periaqueductal-gray-modulates-the-descending-serotonergic-system-in-the-peripheral-neuropathic-pain
#34
JOURNAL ARTICLE
Minkyung Park, Chin Su Koh, Heesue Chang, Tae Jun Kim, Wonki Mun, Jin Woo Chang, Hyun Ho Jung
Neuropathic pain is a type of chronic pain that entails severe prolonged sensory dysfunctions caused by a lesion of the somatosensory system. Many of those suffering from the condition do not experience significant improvement with existing medications, resulting in various side effects. In this study, Sprague-Dawley male rats were used, and long-term deep brain stimulation of the ventrolateral periaqueductal gray was conducted in a rat model of spared nerve injury. We found that 5-Hz deep brain stimulation effectively modulated mechanical allodynia and induced neuronal activation in the rostral ventromedial medulla, restoring impaired descending serotonergic system...
February 28, 2024: Pain
https://read.qxmd.com/read/38422485/vagus-nerve-stimulation-rescues-persistent-pain-following-orthopedic-surgery-in-adult-mice
#35
JOURNAL ARTICLE
Pau Yen Wu, Ana Isabel Caceres, Jiegen Chen, Jamie Sokoloff, Mingjian Huang, Gurpreet Singh Baht, Andrea G Nackley, Sven-Eric Jordt, Niccolò Terrando
Postoperative pain is a major clinical problem imposing a significant burden on patients and society. In a survey 2 years after orthopedic surgery, 57% of patients reported persisting postoperative pain. However, only limited progress has been made in the development of safe and effective therapies to prevent the onset and chronification of pain after orthopedic surgery. We established a tibial fracture mouse model that recapitulates clinically relevant orthopedic trauma surgery, which causes changes in neuropeptide levels in dorsal root ganglia and sustained neuroinflammation in the spinal cord...
February 27, 2024: Pain
https://read.qxmd.com/read/38421469/unravelling-the-road-to-recovery-mechanisms-of-wnt-signalling-in-spinal-cord-injury
#36
REVIEW
Suchita Ganesan, Arun Dharmarajan, G Sudhir, Lakshmi R Perumalsamy
Spinal cord injury (SCI) is a complex neurodegenerative pathology that consistently harbours a poor prognostic outcome. At present, there are few therapeutic strategies that can halt neuronal cell death and facilitate functional motor recovery. However, recent studies have highlighted the Wnt pathway as a key promoter of axon regeneration following central nervous system (CNS) injuries. Emerging evidence also suggests that the temporal dysregulation of Wnt may drive cell death post-SCI. A major challenge in SCI treatment resides in developing therapeutics that can effectively target inflammation and facilitate glial scar repair...
February 29, 2024: Molecular Neurobiology
https://read.qxmd.com/read/38417838/esketamine-inhibits-the-jnk-c-jun-pathway-in-the-spinal-dorsal-horn-to-relieve-bone-cancer-pain-in-rats
#37
JOURNAL ARTICLE
Chenxia Duan, Yi Zhu, Zhuoliang Zhang, Tiantian Wu, Mengwei Shen, Jinfu Xu, Wenxin Gao, Jianhua Pan, Lei Wei, Huibin Su, Chenghuan Shi
Cancer-induced bone pain (CIBP) is one of the most common and feared symptoms in patients with advanced tumors. The X-C motif chemokine ligand 12 (CXCL12) and the CXCR4 receptor have been associated with glial cell activation in bone cancer pain. Moreover, mitogen-activated protein kinases (MAPKs), as downstream CXCL12/CXCR4 signals, and c-Jun, as activator protein AP-1 components, contribute to the development of various types of pain. However, the specific CIBP mechanisms remain unknown. Esketamine is a non-selective N-methyl-D-aspartic acid receptor (NMDA) inhibitor commonly used as an analgesic in the clinic, but its analgesic mechanism in bone cancer pain remains unclear...
February 28, 2024: Molecular Pain
https://read.qxmd.com/read/38411836/mycn-immunohistochemistry-as-surrogate-marker-for-mycn-amplified-spinal-ependymomas
#38
JOURNAL ARTICLE
Divya Mohan, Aruna Nambirajan, Rafat Malik, Agrima Sharma, Vaishali Suri, Kavneet Kaur, Ramesh Doddamani, Ajay Garg, Subhash Gupta, Supriya Mallick, Mehar Chand Sharma
MYCN (master regulator of cell cycle entry and proliferative metabolism) gene amplification defines a molecular subgroup of spinal cord ependymomas that show high-grade morphology and aggressive behavior. Demonstration of MYCN amplification by DNA methylation or fluorescence-in situ hybridization (FISH) is required for diagnosis. We aimed to (i) assess prevalence and clinicopathological features of MYCN-amplified spinal ependymomas and (ii) evaluate utility of immunohistochemistry (IHC) for MYCN protein as a surrogate for molecular testing...
February 27, 2024: Human Cell
https://read.qxmd.com/read/38393947/the-microglial-innate-immune-protein-pglyrp1-mediates-neuroinflammation-and-consequent-behavioral-changes
#39
JOURNAL ARTICLE
Anup Bhusal, Jae-Hong Kim, Seung-Chan Kim, Eun Mi Hwang, Hoon Ryu, Md Sekendar Ali, Seung-Chun Park, Won-Ha Lee, Kyoungho Suk
Peptidoglycan recognition protein 1 (PGLYRP1) is a pattern-recognition protein that mediates antibacterial actions and innate immune responses. Its expression and role in neuroinflammatory conditions remain unclear. We observed the upregulation of PGLYRP1 in inflamed human and mouse spinal cord and brain, with microglia being the primary cellular source. Experiments using a recombinant PGLYRP1 protein show that PGLYRP1 potentiates reactive gliosis, neuroinflammation, and consequent behavioral changes in multiple animal models of neuroinflammation...
February 22, 2024: Cell Reports
https://read.qxmd.com/read/38389561/potential-mechanisms-of-exercise-for-relieving-inflammatory-pain-a-literature-review-of-animal-studies
#40
REVIEW
Minmin Wu, Wenjing Song, Mei Zhang, Lili Teng, Qiang Tang, Luwen Zhu
Inflammatory pain (IP) is one of the most prevalent and intractable human conditions, and it leads to progressive dysfunction and reduced quality of life. Additionally, IP is incredibly challenging to treat successfully with drugs or surgery. The development of IP is complex and multifactorial, and peripheral and central sensitization may influence chronicity and treatment resistance in IP. Understanding the mechanisms underlying IP is vital for developing novel therapies. Strong evidence suggests that exercise can be a first-line relief for patients with IP during rehabilitation...
2024: Frontiers in Aging Neuroscience
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