keyword
https://read.qxmd.com/read/38585749/unraveling-axonal-transcriptional-landscapes-insights-from-ipsc-derived-cortical-neurons-and-implications-for-motor-neuron-degeneration
#41
Jishu Xu, Michaela Hörner, Maike Nagel, Milena Korneck, Marvin Noß, Stefan Hauser, Ludger Schöls, Jakob Admard, Nicolas Casadei, Rebecca Schüle
Neuronal function and pathology are deeply influenced by the distinct molecular profiles of the axon and soma. Traditional studies have often overlooked these differences due to the technical challenges of compartment specific analysis. In this study, we employ a robust RNA-sequencing (RNA-seq) approach, using microfluidic devices, to generate high-quality axonal transcriptomes from iPSC-derived cortical neurons (CNs). We achieve high specificity of axonal fractions, ensuring sample purity without contamination...
March 29, 2024: bioRxiv
https://read.qxmd.com/read/38583129/regulated-cell-death-and-its-role-in-alzheimer-s-disease-and-amyotrophic-lateral-sclerosis
#42
REVIEW
Dietmar Rudolf Thal, Klara Gawor, Sebastiaan Moonen
Despite considerable research efforts, it is still not clear which mechanisms underlie neuronal cell death in neurodegenerative diseases. During the last 20 years, multiple pathways have been identified that can execute regulated cell death (RCD). Among these RCD pathways, apoptosis, necroptosis, pyroptosis, ferroptosis, autophagy-related cell death, and lysosome-dependent cell death have been intensively investigated. Although RCD consists of numerous individual pathways, multiple common proteins have been identified that allow shifting from one cell death pathway to another...
April 7, 2024: Acta Neuropathologica
https://read.qxmd.com/read/38575093/phenotypical-genotypical-and-pathological-characterization-of-the-moonwalker-mouse-a-model-of-ataxia
#43
JOURNAL ARTICLE
Gabriella Sekerková, Sümeyra Kiliç, Yen-Hsin Cheng, Natalie Fredrick, Anne Osmani, Haram Kim, Puneet Opal, Marco Martina
We performed a comprehensive study of the morphological, functional, and genetic features of moonwalker (MWK) mice, a mouse model of spinocerebellar ataxia caused by a gain of function of the TRPC3 channel. These mice show numerous behavioral symptoms including tremor, altered gait, circling behavior, impaired motor coordination, impaired motor learning and decreased limb strength. Cerebellar pathology is characterized by early and almost complete loss of unipolar brush cells as well as slowly progressive, moderate loss of Purkinje cell (PCs)...
April 2, 2024: Neurobiology of Disease
https://read.qxmd.com/read/38574200/preserved-striatal-innervation-maintains-motor-function-despite-severe-loss-of-nigral-dopaminergic-neurons
#44
JOURNAL ARTICLE
Thomas Paß, Konrad M Ricke, Pierre Hofmann, Roy S Chowdhury, Yu Nie, Patrick Chinnery, Heike Endepols, Bernd Neumaier, André Carvalho, Lionel Rigoux, Sophie M Steculorum, Julien Prudent, Trine Riemer, Markus Aswendt, Birgit Liss, Bent Brachvogel, Rudolf J Wiesner
Degeneration of dopaminergic neurons in the substantia nigra and their striatal axon terminals causes cardinal motor symptoms of Parkinson's disease. In idiopathic cases, high levels of mitochondrial DNA alterations leading to mitochondrial dysfunction are a central feature of these vulnerable neurons. Here we present a mouse model expressing the K320E-variant of the mitochondrial helicase Twinkle in dopaminergic neurons, leading to accelerated mitochondrial DNA mutations. These K320E-TwinkleDaN mice showed normal motor function at 20 months of age, although ∼70% of nigral dopaminergic neurons had perished...
April 4, 2024: Brain
https://read.qxmd.com/read/38574058/the-response-of-dual-leucine-zipper-kinase-dlk-to-nocodazole-evidence-for-a-homeostatic-cytoskeletal-repair-mechanism
#45
JOURNAL ARTICLE
Laura DeVault, Chase Mateusiak, John Palucki, Michael Brent, Jeffrey Milbrandt, Aaron DiAntonio
Genetic and pharmacological perturbation of the cytoskeleton enhances the regenerative potential of neurons. This response requires Dual-leucine Zipper Kinase (DLK), a neuronal stress sensor that is a central regulator of axon regeneration and degeneration. The damage and repair aspects of this response are reminiscent of other cellular homeostatic systems, suggesting that a cytoskeletal homeostatic response exists. In this study, we propose a framework for understanding DLK mediated neuronal cytoskeletal homeostasis...
2024: PloS One
https://read.qxmd.com/read/38570429/post-covid-19-hyposmia-does-not-exhibit-main-neurodegeneration-markers-in-the-olfactory-pathway
#46
JOURNAL ARTICLE
Tommaso Schirinzi, Daniela Maftei, Riccardo Maurizi, Maria Albanese, Clara Simonetta, Roberta Bovenzi, Jacopo Bissacco, Davide Mascioli, Laura Boffa, Maria Grazia Di Certo, Francesca Gabanella, Beatrice Francavilla, Stefano Di Girolamo, Nicola Biagio Mercuri, Francesco Maria Passali, Roberta Lattanzi, Cinzia Severini
The biological substrate of persistent post-COVID-19 hyposmia is still unclear. However, as many neurodegenerative diseases present with smell impairment at onset, it may theoretically reflect degeneration within the central olfactory circuits. However, no data still exist regarding the post-COVID-19 patients. As the olfactory neurons (ONs) mirror pathological changes in the brain, allowing for tracking the underlying molecular events, here, we performed a broad analysis of ONs from patients with persistent post-COVID-19 OD to identify traces of potential neurodegeneration...
April 4, 2024: Molecular Neurobiology
https://read.qxmd.com/read/38562864/regulation-of-diseases-associated-microglia-in-the-optic-nerve-by-lipoxin-b-4-and-ocular-hypertension
#47
Shubham Maurya, Maggie Lin, Shruthi Karnam, Tanirika Singh, Matangi Kumar, Emily Ward, John G Flanagan, Karsten Gronert
BACKGROUND: The resident astrocyte-retinal ganglion cell (RGC) lipoxin circuit is impaired during retinal stress, which includes ocular hypertension-induced neuropathy. Lipoxin B 4 produced by homeostatic astrocytes directly acts on RGCs to increase survival and function in ocular hypertension-induced neuropathy. RGC death in the retina and axonal degeneration in the optic nerve are driven by the complex interactions between microglia and macroglia. Whether LXB 4 neuroprotective actions include regulation of other cell types in the retina and/or optic nerve is an important knowledge gap...
March 19, 2024: bioRxiv
https://read.qxmd.com/read/38562780/reduced-stmn2-and-pathogenic-tdp-43-two-hallmarks-of-als-synergize-to-accelerate-motor-decline-in-mice
#48
Kelsey L Krus, Ana Morales Benitez, Amy Strickland, Jeffrey Milbrandt, A Joseph Bloom, Aaron DiAntonio
Pathological TDP-43 loss from the nucleus and cytoplasmic aggregation occurs in almost all cases of ALS and half of frontotemporal dementia patients. Stathmin2 ( Stmn2) is a key target of TDP-43 regulation and aberrantly spliced Stmn2 mRNA is found in patients with ALS, frontotemporal dementia, and Alzheimer's Disease. STMN2 participates in the axon injury response and its depletion in vivo partially replicates ALS-like symptoms including progressive motor deficits and distal NMJ denervation. The interaction between STMN2 loss and TDP-43 dysfunction has not been studied in mice because TDP-43 regulates human but not murine Stmn2 splicing...
March 20, 2024: bioRxiv
https://read.qxmd.com/read/38559234/an-approach-for-the-analysis-of-axonal-neuroinflammation-by-measuring-dual-biomarkers-of-oligodendrocytes-and-inflammatory-cytokine-in-human-plasma
#49
Masato Mitsuhashi, Akihiro Hirata, Yuko Oguma, Hiroyuki Ishida, Keisuke Kawata
The myelin sheath surrounding axons is vulnerable to mechanical stresses after head injuries, as well as autoimmune attacks and degeneration in neurological disorders. Unfortunately, there is currently no effective method to assess these axonal conditions in individual patients. We have developed a sandwich immunoassay detecting dual signals of myelin oligodendrocyte glycoprotein (MOG) and interleukin 1B (IL1B) in human plasma ([IL1B on MOG]). While IL1B is one of common inflammation markers, its lack of tissue specificity is addressed by identifying IL1B on extracellular vesicles from oligodendrocytes isolated using anti-MOG, suggesting inflammation around axons...
March 13, 2024: Research Square
https://read.qxmd.com/read/38558977/lesion-remote-astrocytes-govern-microglia-mediated-white-matter-repair
#50
Sarah McCallum, Keshav B Suresh, Timothy Islam, Ann W Saustad, Oksana Shelest, Aditya Patil, David Lee, Brandon Kwon, Inga Yenokian, Riki Kawaguchi, Connor H Beveridge, Palak Manchandra, Caitlin E Randolph, Gordon P Meares, Ranjan Dutta, Jasmine Plummer, Simon R V Knott, Gaurav Chopra, Joshua E Burda
Spared regions of the damaged central nervous system undergo dynamic remodeling and exhibit a remarkable potential for therapeutic exploitation. Here, lesion-remote astrocytes (LRAs), which interact with viable neurons, glia and neural circuitry, undergo reactive transformations whose molecular and functional properties are poorly understood. Using multiple transcriptional profiling methods, we interrogated LRAs from spared regions of mouse spinal cord following traumatic spinal cord injury (SCI). We show that LRAs acquire a spectrum of molecularly distinct, neuroanatomically restricted reactivity states that evolve after SCI...
March 17, 2024: bioRxiv
https://read.qxmd.com/read/38554393/skin-keratinocyte-derived-sirt1-and-bdnf-modulate-mechanical-allodynia-in-mouse-models-of-diabetic-neuropathy
#51
JOURNAL ARTICLE
Jennifer O'Brien, Peter Niehaus, Koping Chang, Juliana Remark, Joy Barrett, Abhishikta Dasgupta, Morayo Adenegan, Mohammad Salimian, Yanni Kevas, Krish Chandrasekaran, Tibor Kristian, Rajeshwari Chellappan, Samuel Rubin, Ashley Kiemen, Catherine Pei-Ju Lu, James W Russell, Cheng-Ying Ho
Diabetic neuropathy is a debilitating disorder characterized by spontaneous and mechanical allodynia. The role of skin mechanoreceptors in the development of mechanical allodynia is unclear. We discovered that mice with diabetic neuropathy had decreased sirtuin 1 (SIRT1) deacetylase activity in foot skin, leading to reduced expression of brain-derived neurotrophic factor (BDNF) and subsequent loss of innervation in Meissner corpuscles, a mechanoreceptor expressing the BDNF receptor TrkB. When SIRT1 was depleted from skin, the mechanical allodynia worsened in diabetic neuropathy mice, likely due to retrograde degeneration of the Meissner-corpuscle innervating Aβ axons and aberrant formation of Meissner corpuscles which may have increased the mechanosensitivity...
March 30, 2024: Brain
https://read.qxmd.com/read/38548657/label-free-visualization-and-morphological-profiling-of-neuronal-differentiation-and-axonal-degeneration-through-quantitative-phase-imaging
#52
JOURNAL ARTICLE
Jeong Hee Kim, Aysel Cetinkaya-Fisgin, Noah Zahn, Mehmet Can Sari, Ahmet Hoke, Ishan Barman
Understanding the intricate processes of neuronal growth, degeneration, and neurotoxicity is paramount for unraveling nervous system function and holds significant promise in improving patient outcomes, especially in the context of chemotherapy-induced peripheral neuropathy (CIPN). These processes are influenced by a broad range of entwined events facilitated by chemical, electrical, and mechanical signals. The progress of each process is inherently linked to phenotypic changes in cells. Currently, the primary means of demonstrating morphological changes rely on measurements of neurite outgrowth and axon length...
March 28, 2024: Advanced biology
https://read.qxmd.com/read/38548335/ca-2-calmodulin-dependent-protein-kinase-ii-enhances-retinal-ganglion-cell-survival-but-suppresses-axon-regeneration-after-optic-nerve-injury
#53
JOURNAL ARTICLE
Xin Xia, Caleb Shi, Christina Tsien, Catalina B Sun, Lili Xie, Ziming Luo, Minjuan Bian, Kristina Russano, Hrishikesh Singh Thakur, Larry I Benowitz, Jeffrey L Goldberg, Michael S Kapiloff
Neuroprotection after injury or in neurodegenerative disease remains a major goal for basic and translational neuroscience. Retinal ganglion cells (RGCs), the projection neurons of the eye, degenerate in optic neuropathies after axon injury, and there are no clinical therapies to prevent their loss or restore their connectivity to targets in the brain. Here we demonstrate a profound neuroprotective effect of the exogenous expression of various Ca2+ /calmodulin-dependent protein kinase II (CaMKII) isoforms in mice...
March 2024: ENeuro
https://read.qxmd.com/read/38547529/avoidance-of-axonal-stimulation-with-sinusoidal-epiretinal-stimulation
#54
JOURNAL ARTICLE
Andrea Corna, Andreea-Elena Cojocaru, Mai Thu Bui, Paul Werginz, Guenther Zeck
Objective. Neuromodulation, particularly electrical stimulation, necessitates high spatial resolution to achieve artificial vision with high acuity. In epiretinal implants, this is hindered by the undesired activation of distal axons. Here we investigate focal and axonal activation of Retinal Ganglion Cells (RGCs) for different sinusoidal stimulation frequencies. Our results can be exploited to define a selective stimulation strategy to avoid axonal activation in retina implants. Approach. RGC responses to epiretinal sinusoidal stimulation at frequencies between 40 and 100 Hz were tested in ex-vivo photoreceptor degenerated (rd10) retina explants...
March 28, 2024: Journal of Neural Engineering
https://read.qxmd.com/read/38544794/fas-ligand-regulate-nerve-injury-and-repair-by-affecting-akt-%C3%AE-catenin-and-nf-%C3%AE%C2%BAb-pathways
#55
JOURNAL ARTICLE
Yiyue Zhou, Yi Yao, Yumei Feng, Zhiyuan Qiu, Shixian Luo, Xinyu Shi, Dandan Gu, Maorong Jiang, Min Cai, Dengbing Yao
OBJECTIVE: To investigate the regulatory effect of Fas-L on the repair and regeneration of peripheral extension injury in rats. METHODS: This study aimed to explore the effects of Fas-L on apoptosis and axonal regeneration of dorsal root ganglion (DRG) cells in rat peripheral nerve repair and regeneration by using several relevant experimental techniques from the injured nerve animal model, cell biology, and molecular biology. RESULTS: The expression level of Fas-L in DRG tissues was significantly down-regulated after sciatic nerve injury...
June 2024: IBRO neuroscience reports
https://read.qxmd.com/read/38540197/the-optic-nerve-at-stake-update-on-environmental-factors-modulating-expression-of-leber-s-hereditary-optic-neuropathy
#56
REVIEW
Pierre Layrolle, Christophe Orssaud, Maryse Leleu, Pierre Payoux, Stéphane Chavanas
Optic neuropathies are characterized by the degeneration of the optic nerves and represent a considerable individual and societal burden. Notably, Leber's hereditary optic neuropathy (LHON) is a devastating vision disease caused by mitochondrial gene mutations that hinder oxidative phosphorylation and increase oxidative stress, leading to the loss of retinal ganglion neurons and axons. Loss of vision is rapid and severe, predominantly in young adults. Penetrance is incomplete, and the time of onset is unpredictable...
March 6, 2024: Biomedicines
https://read.qxmd.com/read/38539660/neurofilaments-light-chain-in-neurodegenerative-dementias-a-review-of-imaging-correlates
#57
REVIEW
Chiara Gallingani, Chiara Carbone, Manuela Tondelli, Giovanna Zamboni
Neurofilaments light chain (NfLs) are currently recognized as a marker of axonal injury and degeneration. Their measurement in biological fluids has a promising role in the diagnosis, prognosis, and monitoring of the therapeutic response in neurological diseases, including neurodegenerative dementias. In recent years, their relationship with clinical phenotypes and measures of disease severity has been extensively studied. Here, we reviewed studies investigating the association between NfLs and imaging measures of grey matter (GM) and white matter (WM) damage in neurodegenerative dementias...
March 13, 2024: Brain Sciences
https://read.qxmd.com/read/38538906/utility-of-ganglion-cells-for-the-evaluation-of-anterior-visual-pathway-pathology-a-review
#58
REVIEW
Anne-Catherine Chapelle, Jean-Marie Rakic, Gordon Terence Plant
The management of optic neuropathy is fundamental to neuro-ophthalmic practice. Following the invention of the ophthalmoscope, clinicians, for a century or more, relied upon fundus examination in the evaluation of optic neuropathy. However, the advent of optical coherence tomography, based on the principle of backscattering of light and interferometry, has revolutionized the analysis of optic nerve and retinal disorders. Optical coherence tomography has proven of particular value in the measurement, at the micron level, of the peripapillary retinal nerve fibre layer and the ganglion cell layer...
March 27, 2024: Acta Neurologica Belgica
https://read.qxmd.com/read/38538779/programmed-axon-death-a-promising-target-for-treating-retinal-and-optic-nerve-disorders
#59
REVIEW
Andrea Loreto, Elisa Merlini, Michael P Coleman
Programmed axon death is a druggable pathway of axon degeneration that has garnered considerable interest from pharmaceutical companies as a promising therapeutic target for various neurodegenerative disorders. In this review, we highlight mechanisms through which this pathway is activated in the retina and optic nerve, and discuss its potential significance for developing therapies for eye disorders and beyond. At the core of programmed axon death are two enzymes, NMNAT2 and SARM1, with pivotal roles in NAD metabolism...
March 27, 2024: Eye
https://read.qxmd.com/read/38538776/brain-microstructure-is-linked-to-cognitive-fatigue-in-early-multiple-sclerosis
#60
JOURNAL ARTICLE
Camille Guillemin, Nora Vandeleene, Maëlle Charonitis, Florence Requier, Gaël Delrue, Emilie Lommers, Pierre Maquet, Christophe Phillips, Fabienne Collette
Cognitive fatigue is a major symptom of Multiple Sclerosis (MS), from the early stages of the disease. This study aims to detect if brain microstructure is altered early in the disease course and is associated with cognitive fatigue in people with MS (pwMS) compared to matched healthy controls (HC). Recently diagnosed pwMS (N = 18, age < 45 years old) with either a Relapsing-Remitting or a Clinically Isolated Syndrome course of the disease, and HC (N = 19) matched for sex, age and education were analyzed...
March 28, 2024: Journal of Neurology
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