journal
https://read.qxmd.com/read/38526287/osmr-is-a-potential-driver-of-inflammation-in-amyotrophic-lateral-sclerosis
#21
JOURNAL ARTICLE
Wenzhi Chen, Shishi Jiang, Shu Li, Cheng Li, Renshi Xu
JOURNAL/nrgr/04.03/01300535-202419110-00031/figure1/v/2024-03-08T184507Z/r/image-tiff Amyotrophic lateral sclerosis is a neurodegenerative disease, and the molecular mechanism underlying its pathology remains poorly understood. However, inflammation is known to play an important role in the development of this condition. To identify driver genes that affect the inflammatory response in amyotrophic lateral sclerosis, as well as potential treatment targets, it is crucial to analyze brain tissue samples from patients with both sporadic amyotrophic lateral sclerosis and C9orf72-related amyotrophic lateral sclerosis...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526286/ruxolitinib-improves-the-inflammatory-microenvironment-restores-glutamate-homeostasis-and-promotes-functional-recovery-after-spinal-cord-injury
#22
JOURNAL ARTICLE
Jiang Cao, Xiao Yu, Jingcheng Liu, Jiaju Fu, Binyu Wang, Chaoqin Wu, Sheng Zhang, Hongtao Chen, Zi Wang, Yinyang Xu, Tao Sui, Jie Chang, Xiaojian Cao
JOURNAL/nrgr/04.03/01300535-202419110-00030/figure1/v/2024-03-08T184507Z/r/image-tiff The inflammatory microenvironment and neurotoxicity can hinder neuronal regeneration and functional recovery after spinal cord injury. Ruxolitinib, a JAK-STAT inhibitor, exhibits effectiveness in autoimmune diseases, arthritis, and managing inflammatory cytokine storms. Although studies have shown the neuroprotective potential of ruxolitinib in neurological trauma, the exact mechanism by which it enhances functional recovery after spinal cord injury, particularly its effect on astrocytes, remains unclear...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526285/atherosis-associated-lnc_000048-activates-pkr-to-enhance-stat1-mediated-polarization-of-thp-1-macrophages-to-m1-phenotype
#23
JOURNAL ARTICLE
Yuanyuan Ding, Yu Sun, Hongyan Wang, Hongqin Zhao, Ruihua Yin, Meng Zhang, Xudong Pan, Xiaoyan Zhu
JOURNAL/nrgr/04.03/01300535-202419110-00029/figure1/v/2024-03-08T184507Z/r/image-tiff Our previous study has demonstrated that lnc_000048 is upregulated in large-artery atherosclerotic stroke and promotes atherosclerosis in ApoE-/- mice. However, little is known about the role of lnc_000048 in classically activated macrophage (M1) polarization. In this study, we established THP-1-derived testing state macrophages (M0), M1 macrophages, and alternately activated macrophages (M2). Real-time fluorescence quantitative PCR was used to verify the expression of marker genes and the expression of lnc_000048 in macrophages...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526284/cav3-2-channel-regulates-cerebral-ischemia-reperfusion-injury-a-promising-target-for-intervention
#24
JOURNAL ARTICLE
Feibiao Dai, Chengyun Hu, Xue Li, Zhetao Zhang, Hongtao Wang, Wanjun Zhou, Jiawu Wang, Qingtian Geng, Yongfei Dong, Chaoliang Tang
JOURNAL/nrgr/04.03/01300535-202419110-00028/figure1/v/2024-03-08T184507Z/r/image-tiff Calcium influx into neurons triggers neuronal death during cerebral ischemia/reperfusion injury. Various calcium channels are involved in cerebral ischemia/reperfusion injury. Cav3.2 channel is a main subtype of T-type calcium channels. T-type calcium channel blockers, such as pimozide and mibefradil, have been shown to prevent cerebral ischemia/reperfusion injury-induced brain injury. However, the role of Cav3.2 channels in cerebral ischemia/reperfusion injury remains unclear...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526283/activation-of-autophagy-by-citri-reticulatae-semen-extract-ameliorates-amyloid-beta-induced-cell-death-and-cognition-deficits-in-alzheimer-s-disease
#25
JOURNAL ARTICLE
Yong Tang, Jing Wei, Xiao-Fang Wang, Tao Long, Xiaohong Xiang, Liqun Qu, Xingxia Wang, Chonglin Yu, Xingli Xiao, Xueyuan Hu, Jing Zeng, Qin Xu, Anguo Wu, Jianming Wu, Dalian Qin, Xiaogang Zhou, Betty Yuen-Kwan Law
JOURNAL/nrgr/04.03/01300535-202419110-00027/figure1/v/2024-03-08T184507Z/r/image-tiff Amyloid-beta-induced neuronal cell death contributes to cognitive decline in Alzheimer's disease. Citri Reticulatae Semen has diverse beneficial effects on neurodegenerative diseases, including Parkinson's and Huntington's diseases, however, the effect of Citri Reticulatae Semen on Alzheimer's disease remains unelucidated. In the current study, the anti-apoptotic and autophagic roles of Citri Reticulatae Semen extract on amyloid-beta-induced apoptosis in PC12 cells were first investigated...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526282/isoform-and-cell-state-specific-apoe-homeostasis-and-function
#26
JOURNAL ARTICLE
Karina Lindner, Anne-Claude Gavin
Apolipoprotein E is the major lipid transporter in the brain and an important player in neuron-astrocyte metabolic coupling. It ensures the survival of neurons under stressful conditions and hyperactivity by nourishing and detoxifying them. Apolipoprotein E polymorphism, combined with environmental stresses and/or age-related alterations, influences the risk of developing late-onset Alzheimer's disease. In this review, we discuss our current knowledge of how apolipoprotein E homeostasis, i.e. its synthesis, secretion, degradation, and lipidation, is affected in Alzheimer's disease...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526281/cell-reprogramming-therapy-for-parkinson-s-disease
#27
JOURNAL ARTICLE
Wenjing Dong, Shuyi Liu, Shangang Li, Zhengbo Wang
Parkinson's disease is typically characterized by the progressive loss of dopaminergic neurons in the substantia nigra pars compacta. Many studies have been performed based on the supplementation of lost dopaminergic neurons to treat Parkinson's disease. The initial strategy for cell replacement therapy used human fetal ventral midbrain and human embryonic stem cells to treat Parkinson's disease, which could substantially alleviate the symptoms of Parkinson's disease in clinical practice. However, ethical issues and tumor formation were limitations of its clinical application...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526280/emerging-strategies-for-nerve-repair-and-regeneration-in-ischemic-stroke-neural-stem-cell-therapy
#28
JOURNAL ARTICLE
Siji Wang, Qianyan He, Yang Qu, Wenjing Yin, Ruoyu Zhao, Xuyutian Wang, Yi Yang, Zhen-Ni Guo
Ischemic stroke is a major cause of mortality and disability worldwide, with limited treatment options available in clinical practice. The emergence of stem cell therapy has provided new hope to the field of stroke treatment via the restoration of brain neuron function. Exogenous neural stem cells are beneficial not only in cell replacement but also through the bystander effect. Neural stem cells regulate multiple physiological responses, including nerve repair, endogenous regeneration, immune function, and blood-brain barrier permeability, through the secretion of bioactive substances, including extracellular vesicles/exosomes...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526279/corrigendum-genistein-suppresses-mitochondrial-apoptotic-pathway-in-rat-hippocampal-neurons-with-alzheimer-s-disease
#29
JOURNAL ARTICLE
(no author information available yet)
No abstract text is available yet for this article.
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526278/mechanism-of-cu-entry-into-the-brain-many-unanswered-questions
#30
JOURNAL ARTICLE
Shubhrajit Roy, Svetlana Lutsenko
Brain tissue requires high amounts of copper (Cu) for its key physiological processes, such as energy production, neurotransmitter synthesis, maturation of neuropeptides, myelination, synaptic plasticity, and radical scavenging. The requirements for Cu in the brain vary depending on specific brain regions, cell types, organism age, and nutritional status. Cu imbalances cause or contribute to several life-threatening neurologic disorders including Menkes disease, Wilson disease, Alzheimer's disease, Parkinson's disease, and others...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526277/the-physiological-role-of-the-unfolded-protein-response-in-the-nervous-system
#31
JOURNAL ARTICLE
Shuangchan Wu, Wensheng Lin
The unfolded protein response (UPR) is a cellular stress response pathway activated when the endoplasmic reticulum, a crucial organelle for protein folding and modification, encounters an accumulation of unfolded or misfolded proteins. The UPR aims to restore endoplasmic reticulum homeostasis by enhancing protein folding capacity, reducing protein biosynthesis, and promoting protein degradation. It also plays a pivotal role in coordinating signaling cascades to determine cell fate and function in response to endoplasmic reticulum stress...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526276/nlrp3-1-mediated-pyroptosis-beneficial-clues-for-the-development-of-novel-therapies-for-alzheimer-s-disease
#32
JOURNAL ARTICLE
Bo Hu, Jiaping Zhang, Jie Huang, Bairu Luo, Xiansi Zeng, Jinjing Jia
The inflammasome is a multiprotein complex involved in innate immunity that mediates the inflammatory response leading to pyroptosis, which is a lytic, inflammatory form of cell death. There is accumulating evidence that nucleotide-binding domain and leucine-rich repeat pyrin domain containing 3 (NLRP3) inflammasome-mediated microglial pyroptosis and NLRP1 inflammasome-mediated neuronal pyroptosis in the brain are closely associated with the pathogenesis of Alzheimer's disease. In this review, we summarize the possible pathogenic mechanisms of Alzheimer's disease, focusing on neuroinflammation...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526275/human-brain-organoid-trends-evolution-and-remaining-challenges
#33
JOURNAL ARTICLE
Minghui Li, Yuhan Yuan, Zongkun Hou, Shilei Hao, Liang Jin, Bochu Wang
Advanced brain organoids provide promising platforms for deciphering the cellular and molecular processes of human neural development and diseases. Although various studies and reviews have described developments and advancements in brain organoids, few studies have comprehensively summarized and analyzed the global trends in this area of neuroscience. To identify and further facilitate the development of cerebral organoids, we utilized bibliometrics and visualization methods to analyze the global trends and evolution of brain organoids in the last 10 years...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526274/function-and-dysfunction-of-gemin5-understanding-a-novel-neurodevelopmental-disorder
#34
JOURNAL ARTICLE
Charles H Nelson, Udai B Pandey
The recent identification of a neurodevelopmental disorder with cerebellar atrophy and motor dysfunction (NEDCAM) has resulted in an increased interest in GEMIN5, a multifunction RNA-binding protein. As the largest member of the survival motor neuron complex, GEMIN5 plays a key role in the biogenesis of small nuclear ribonucleoproteins while also exhibiting translational regulatory functions as an independent protein. Although many questions remain regarding both the pathogenesis and pathophysiology of this new disorder, considerable progress has been made in the brief time since its discovery...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526273/unveiling-dna-methylation-in-alzheimer-s-disease-a-review-of-array-based-human-brain-studies
#35
JOURNAL ARTICLE
Victoria Cunha Alves, Eva Carro, Joana Figueiro-Silva
The intricacies of Alzheimer's disease pathogenesis are being increasingly illuminated by the exploration of epigenetic mechanisms, particularly DNA methylation. This review comprehensively surveys recent human-centered studies that investigate whole genome DNA methylation in Alzheimer's disease neuropathology. The examination of various brain regions reveals distinctive DNA methylation patterns that associate with the Braak stage and Alzheimer's disease progression. The entorhinal cortex emerges as a focal point due to its early histological alterations and subsequent impact on downstream regions like the hippocampus...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526272/retraction-regulation-of-extracellular-signal-regulated-kinase-1-2-influences-hippocampal-neuronal-survival-in-a-rat-model-of-diabetic-cerebral-ischemia
#36
JOURNAL ARTICLE
(no author information available yet)
No abstract text is available yet for this article.
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526271/advances-in-spinal-cord-injury-insights-from-non-human-primates
#37
JOURNAL ARTICLE
Gaetan Poulen, Florence E Perrin
Spinal cord injury results in significant sensorimotor deficits, currently, there is no curative treatment for the symptoms induced by spinal cord injury. Basic and pre-clinical research on spinal cord injury relies on the development and characterization of appropriate animal models. These models should replicate the symptoms observed in human, allowing for the exploration of functional deficits and investigation into various aspects of physiopathology of spinal cord injury. Non-human primates, due to their close phylogenetic association with humans, share more neuroanatomical, genetic, and physiological similarities with humans than rodents...
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526270/fish-on-chips-unveiling-neural-processing-of-chemicals-in-small-animals-through-precise-fluidic-control
#38
JOURNAL ARTICLE
Samuel K H Sy, Ho Ko
No abstract text is available yet for this article.
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526269/oligodendroctyes-the-forgotten-players-of-diabetes-pathophysiology
#39
JOURNAL ARTICLE
Juan Antonio López-Villodres, Beatriz García-Díaz
No abstract text is available yet for this article.
November 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38526268/does-hsp27-injection-induce-glaucoma-damage-in-mice
#40
JOURNAL ARTICLE
Stephanie C Joachim, Sabrina Reinehr
No abstract text is available yet for this article.
November 1, 2024: Neural Regeneration Research
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