keyword
https://read.qxmd.com/read/38638036/n-methyl-d-aspartate-nmda-receptor-antagonists-and-their-pharmacological-implication-a-medicinal-chemistry-oriented-perspective-outline
#21
JOURNAL ARTICLE
Vikas Rana, Shayantan Ghosh, Akanksha Bhatt, Damini Bisht, Gaurav Joshi, Priyank Purohit
N-methyl-D-aspartate (NMDA) receptors, i.e., inotropic glutamate receptors, are important in synaptic plasticity, brain growth, memory, and learning. The activation of NMDA is done by neurotransmitter glutamate and co-agonist (glycine or D-serine) binding. However, the over-activation of NMDA elevates the intracellular calcium influx, which causes various neurological diseases and disorders. Therefore, to prevent excitotoxicity and neuronal death, inhibition of NMDA must be done using its antagonist. This review delineates the structure of subunits of NMDA and the conformational changes induced after the binding of agonists (glycine and D-serine) and antagonists (ifenprodil, etc...
April 17, 2024: Current Medicinal Chemistry
https://read.qxmd.com/read/38637154/circuit-wide-gene-network-analysis-reveals-sex-specific-roles-for-phosphodiesterase-1b-in-cocaine-addiction
#22
JOURNAL ARTICLE
Collin D Teague, Tamara Markovic, Xianxiao Zhou, Freddyson J Martinez-Rivera, Angelica Minier-Toribio, Alexander Zinsmaier, Nathalia V Pulido, Kyra H Schmidt, Kelsey E Lucerne, Arthur Godino, Yentl Y van der Zee, Aarthi Ramakrishnan, Rita Futamura, Caleb J Browne, Leanne M Holt, Yun Young Yim, Corrine H Azizian, Deena M Walker, Li Shen, Yan Dong, Bin Zhang, Eric J Nestler
Cocaine use disorder is a significant public health issue without an effective pharmacological treatment. Successful treatments are hindered in part by an incomplete understanding of the molecular mechanisms that underlie long-lasting maladaptive plasticity and addiction-like behaviors. Here, we leverage a large RNA-sequencing dataset to generate gene co-expression networks across 6 interconnected regions of the brain's reward circuitry from mice that underwent saline or cocaine self-administration. We identify phosphodiesterase 1b ( Pde1b ), a Ca2+ /calmodulin-dependent enzyme that increases cAMP and cGMP hydrolysis, as a central hub gene within a nucleus accumbens (NAc) gene module that was bioinformatically associated with addiction-like behavior...
April 18, 2024: Journal of Neuroscience
https://read.qxmd.com/read/38636564/spinal-neuronal-activity-and-neuroinflammatory-component-in-a-mouse-model-of-cfa-induced-vestibulodynia
#23
JOURNAL ARTICLE
Serena Boccella, Michela Perrone, Antimo Fusco, Roozbe Bonsale, Rosmara Infantino, Silvia Nuzzo, Giovanni Pecoraro, Federica Ricciardi, Andrea Maria Morace, Gianluca Petrillo, Ilaria Leone, Monica Franzese, Vito de Novellis, Francesca Guida, Marco Salvatore, Sabatino Maione, Livio Luongo
Vestibulodynia is a complex pain disorder characterized by chronic discomfort in the vulvar region, often accompanied by tactile allodynia and spontaneous pain. In patients a depressive behaviour is also observed. In this study, we have used a model of vestibulodynia induced by complete Freund's adjuvant (CFA) focusing our investigation on the spinal cord neurons and microglia. We investigated tactile allodynia, spontaneous pain, and depressive-like behavior as key behavioral markers of vestibulodynia. In addition, we conducted in vivo electrophysiological recordings to provide, for the first time to our knowledge, the characterization of the spinal sacral neuronal activity in the L6-S1 dorsal horn of the spinal cord...
April 16, 2024: Brain, Behavior, and Immunity
https://read.qxmd.com/read/38636514/cannabinoids-regulate-an-insula-circuit-controlling-water-intake
#24
JOURNAL ARTICLE
Zhe Zhao, Ana Covelo, Yoni Couderc, Arojit Mitra, Marjorie Varilh, Yifan Wu, Débora Jacky, Rim Fayad, Astrid Cannich, Luigi Bellocchio, Giovanni Marsicano, Anna Beyeler
The insular cortex, or insula, is a large brain region involved in the detection of thirst and the regulation of water intake. However, our understanding of the topographical, circuit, and molecular mechanisms for controlling water intake within the insula remains parcellated. We found that type-1 cannabinoid (CB1 ) receptors in the insular cortex cells participate in the regulation of water intake and deconstructed the circuit mechanisms of this control. Topographically, we revealed that the activity of excitatory neurons in both the anterior insula (aIC) and posterior insula (pIC) increases in response to water intake, yet only the specific removal of CB1 receptors in the pIC decreases water intake...
April 15, 2024: Current Biology: CB
https://read.qxmd.com/read/38635025/bisphenol-f-and-bisphenol-s-bpf-and-bps-impair-the-stemness-of-neural-stem-cells-and-neuronal-fate-decision-in-the-hippocampus-leading-to-cognitive-dysfunctions
#25
JOURNAL ARTICLE
Saurabh Tiwari, Phoolmala, Shweta Goyal, Ranjeet Kumar Yadav, Rajnish Kumar Chaturvedi
Neurogenesis occurs throughout life in the hippocampus of the brain, and many environmental toxicants inhibit neural stem cell (NSC) function and neuronal generation. Bisphenol-A (BPA), an endocrine disrupter used for surface coating of plastic products causes injury in the developing and adult brain; thus, many countries have banned its usage in plastic consumer products. BPA analogs/alternatives such as bisphenol-F (BPF) and bisphenol-S (BPS) may also cause neurotoxicity; however, their effects on neurogenesis are still not known...
April 18, 2024: Molecular Neurobiology
https://read.qxmd.com/read/38633293/the-wingless-planar-cell-polarity-pathway-is-essential-for-optimal-activity-dependent-synaptic-plasticity
#26
JOURNAL ARTICLE
Carihann Dominicci-Cotto, Mariam Vazquez, Bruno Marie
From fly to man, the Wingless (Wg)/Wnt signaling molecule is essential for both the stability and plasticity of the nervous system. The Drosophila neuromuscular junction (NMJ) has proven to be a useful system for deciphering the role of Wg in directing activity-dependent synaptic plasticity (ADSP), which, in the motoneuron, has been shown to be dependent on both the canonical and the noncanonical calcium Wg pathways. Here we show that the noncanonical planar cell polarity (PCP) pathway is an essential component of the Wg signaling system controlling plasticity at the motoneuron synapse...
2024: Frontiers in Synaptic Neuroscience
https://read.qxmd.com/read/38633213/nano-pulling-stimulates-axon-regeneration-in-dorsal-root-ganglia-by-inducing-stabilization-of-axonal-microtubules-and-activation-of-local-translation
#27
JOURNAL ARTICLE
Alessandro Falconieri, Pietro Folino, Lorenzo Da Palmata, Vittoria Raffa
INTRODUCTION: Axonal plasticity is strongly related to neuronal development as well as regeneration. It was recently demonstrated that active mechanical tension, intended as an extrinsic factor, is a valid contribution to the modulation of axonal plasticity. METHODS: In previous publications, our team validated a the "nano-pulling" method used to apply mechanical forces to developing axons of isolated primary neurons using magnetic nanoparticles (MNP) actuated by static magnetic fields...
2024: Frontiers in Molecular Neuroscience
https://read.qxmd.com/read/38632070/-therapeutic-mechanism-of-basic-fibroblast-growth-factor-on-spinal-cord-injury-in-rats-based-on-the-notch-signal-transducer-and-activator-of-transcription-3-signaling-pathway
#28
JOURNAL ARTICLE
Chunfeng Cao, Gaohai Shao, Minghua Zhang, Bo Li, Haitao Xu, Hongjun Zhang, Yiming Qu
OBJECTIVE: To explore the therapeutic effect of basic fibroblast growth factor (bFGF) on spinal cord injury (SCI) in rats and the influence of Notch/signal transducer and activator of transcription 3 (STAT3) signaling pathway. METHODS: A total of 40 10-week-old male Sprague Dawley (SD) rats were selected to establish T 10 -segment SCI model by a free falling object. Among them, 32 successful models were randomly divided into model group and bFGF group, with 16 in each group...
April 15, 2024: Chinese Journal of Reparative and Reconstructive Surgery
https://read.qxmd.com/read/38631563/the-small-conductance-ca-2-activated-k-channel-activator-gw542573x-impairs-hippocampal-memory-in-c57bl-6j-mice
#29
JOURNAL ARTICLE
Claire A Rice, Robert W Stackman
Small conductance Ca2+ -activated K+ (SK) channels, expressed throughout the CNS, are comprised of SK1, SK2 and SK3 subunits, assembled as homotetrameric or heterotetrameric proteins. SK channels expressed somatically modulate the excitability of neurons by mediating the medium component of the afterhyperpolarization. Synaptic SK channels shape excitatory postsynaptic potentials and synaptic plasticity. Such SK-mediated effects on neuronal excitability and activity-dependent synaptic strength likely underlie the modulatory influence of SK channels on memory encoding...
April 15, 2024: Neuropharmacology
https://read.qxmd.com/read/38630836/calcineurin-regulates-synaptic-ca-2-permeable-ampa-receptors-in-hypothalamic-presympathetic-neurons-via-%C3%AE-2%C3%AE-1-mediated-glua1-glua2-assembly
#30
JOURNAL ARTICLE
Jing-Jing Zhou, Jian-Ying Shao, Shao-Rui Chen, Hong Chen, Hui-Lin Pan
Hypertension is a major adverse effect of calcineurin inhibitors, such as tacrolimus (FK506) and cyclosporine, used clinically as immunosuppressants. Calcineurin inhibitor-induced hypertension (CIH) is linked to augmented sympathetic output from the hypothalamic paraventricular nucleus (PVN). GluA2-lacking, Ca2+ -permeable AMPA receptors (CP-AMPARs) are a key feature of glutamatergic synaptic plasticity, yet their role in CIH remains elusive. Here, we found that systemic administration of FK506 in rats significantly increased serine phosphorylation of GluA1 and GluA2 in PVN synaptosomes...
April 17, 2024: Journal of Physiology
https://read.qxmd.com/read/38630718/neuromorphic-one-shot-learning-utilizing-a-phase-transition-material
#31
JOURNAL ARTICLE
Alessandro R Galloni, Yifan Yuan, Minning Zhu, Haoming Yu, Ravindra S Bisht, Chung-Tse Michael Wu, Christine Grienberger, Shriram Ramanathan, Aaron D Milstein
Design of hardware based on biological principles of neuronal computation and plasticity in the brain is a leading approach to realizing energy- and sample-efficient AI and learning machines. An important factor in selection of the hardware building blocks is the identification of candidate materials with physical properties suitable to emulate the large dynamic ranges and varied timescales of neuronal signaling. Previous work has shown that the all-or-none spiking behavior of neurons can be mimicked by threshold switches utilizing material phase transitions...
April 23, 2024: Proceedings of the National Academy of Sciences of the United States of America
https://read.qxmd.com/read/38630590/altered-gm1-catabolism-affects-nmdar-mediated-ca-2-signaling-at-er-pm-junctions-and-increases-synaptic-spine-formation-in-a-gm1-gangliosidosis-model
#32
JOURNAL ARTICLE
Jason A Weesner, Ida Annunziata, Diantha van de Vlekkert, Camenzind G Robinson, Yvan Campos, Ashutosh Mishra, Leigh E Fremuth, Elida Gomero, Huimin Hu, Alessandra d'Azzo
Endoplasmic reticulum-plasma membrane (ER-PM) junctions mediate Ca2+ flux across neuronal membranes. The properties of these membrane contact sites are defined by their lipid content, but little attention has been given to glycosphingolipids (GSLs). Here, we show that GM1-ganglioside, an abundant GSL in neuronal membranes, is integral to ER-PM junctions; it interacts with synaptic proteins/receptors and regulates Ca2+ signaling. In a model of the neurodegenerative lysosomal storage disease, GM1-gangliosidosis, pathogenic accumulation of GM1 at ER-PM junctions due to β-galactosidase deficiency drastically alters neuronal Ca2+ homeostasis...
April 16, 2024: Cell Reports
https://read.qxmd.com/read/38630519/a-methodology-for-specific-disruption-of-microtubule-polymerization-into-dendritic-spines
#33
JOURNAL ARTICLE
Elizabeth D Holland, Hannah L Miller, Matthew M Millette, Russell J Taylor, Gabrielle L Drucker, Erik W Dent
Dendritic spines, the mushroom-shaped extensions along dendritic shafts of excitatory neurons, are critical for synaptic function and are one of the first neuronal structures disrupted in neurodevelopmental and neurodegenerative diseases. Microtubule (MT) polymerization into dendritic spines is an activity-dependent process capable of affecting spine shape and function. Studies have shown that MT polymerization into spines occurs specifically in spines undergoing plastic changes. However, discerning the function of MT invasion of dendritic spines requires the specific inhibition of MT polymerization into spines, while leaving MT dynamics in the dendritic shaft, synaptically connected axons and associated glial cells intact...
April 17, 2024: Molecular Biology of the Cell
https://read.qxmd.com/read/38630432/structural-functional-and-genetic-changes-surrounding-electrodes-implanted-in-the-brain
#34
JOURNAL ARTICLE
Bhavna Gupta, Akash Saxena, Mason L Perillo, Lauren C Wade-Kleyn, Cort H Thompson, Erin K Purcell
ConspectusImplantable neurotechnology enables monitoring and stimulating of the brain signals responsible for performing cognitive, motor, and sensory tasks. Electrode arrays implanted in the brain are increasingly used in the clinic to treat a variety of sources of neurological diseases and injuries. However, the implantation of a foreign body typically initiates a tissue response characterized by physical disruption of vasculature and the neuropil as well as the initiation of inflammation and the induction of reactive glial states...
April 17, 2024: Accounts of Chemical Research
https://read.qxmd.com/read/38630241/analyses-of-neural-circuits-governing-behavioral-plasticity-in-the-nematode-caenorhabditis-elegans
#35
JOURNAL ARTICLE
Tzu-Ting Huang, Ikue Mori
Behavioral plasticity is subjected to various sensory stimuli, experiences, and physiological states, representing the temporal and spatial patterns of neural circuit dynamics. Elucidation of how genes and neural circuits in our brain actuate behavioral plasticity requires functional imaging during behavioral assays to manifest temporal and spatial neural regulation in behaviors. The exploration of the nervous systems of Caenorhabditis elegans has catalyzed substantial scientific advancements in elucidating the mechanistic link between circuit dynamics and behavioral plasticity...
2024: Methods in Molecular Biology
https://read.qxmd.com/read/38630218/two-photon-fret-flim-imaging-of-cerebral-neurons
#36
JOURNAL ARTICLE
Thomas T Luyben, Jayant Rai, Bingyue Zhou, Hang Li, Kenichi Okamoto
Two-photon FRET (Förster resonance energy transfer) and FLIM (fluorescence lifetime imaging microscopy) enable the detection of FRET changes of fluorescence reporters in deep brain tissues, which provide a valuable approach for monitoring target molecular dynamics and functions. Here, we describe two-photon FRET and FLIM imaging techniques that allow us to visualize endogenous and optogenetically induced cAMP dynamics in living neurons with genetically engineered FRET-based cAMP reporters.
2024: Methods in Molecular Biology
https://read.qxmd.com/read/38629848/m2-receptors-are-required-for-spatiotemporal-sequence-learning-in-mouse-primary-visual-cortex
#37
JOURNAL ARTICLE
Susrita Sarkar, Catalina Martinez Reyes, Cambria M Jensen, Jeffrey P Gavornik
Acetylcholine is a neurotransmitter that plays a variety of roles in the central nervous system. It was previously shown that blocking muscarinic receptors with a non-selective antagonist prevents a form of experience-dependent plasticity termed "spatiotemporal sequence learning" in the mouse primary visual cortex (V1). Muscarinic signaling is a complex process involving the combined activities of five different G-protein coupled receptors, M1-M5, all of which are expressed in the murine brain but differ from each other functionally and in anatomical localization...
April 17, 2024: Journal of Neurophysiology
https://read.qxmd.com/read/38629828/plastic-vasomotion-entrainment
#38
JOURNAL ARTICLE
Daichi Sasaki, Ken Imai, Yoko Ikoma, Ko Matsui
The presence of global synchronization of vasomotion induced by oscillating visual stimuli was identified in the mouse brain. Endogenous autofluorescence was used and the vessel 'shadow' was quantified to evaluate the magnitude of the frequency-locked vasomotion. This method allows vasomotion to be easily quantified in non-transgenic wild-type mice using either the wide-field macro-zoom microscopy or the deep-brain fiber photometry methods. Vertical stripes horizontally oscillating at a low temporal frequency (0...
April 17, 2024: ELife
https://read.qxmd.com/read/38629777/morphological-heterogeneity-of-neurons-in-the-human-central-amygdaloid-nucleus
#39
JOURNAL ARTICLE
Carlos E Vásquez, Kétlyn T Knak Guerra, Josué Renner, Alberto A Rasia-Filho
The central amygdaloid nucleus (CeA) has an ancient phylogenetic development and functions relevant for animal survival. Local cells receive intrinsic amygdaloidal information that codes emotional stimuli of fear, integrate them, and send cortical and subcortical output projections that prompt rapid visceral and social behavior responses. We aimed to describe the morphology of the neurons that compose the human CeA (N = 8 adult men). Cells within CeA coronal borders were identified using the thionine staining and were further analyzed using the "single-section" Golgi method followed by open-source software procedures for two-dimensional and three-dimensional image reconstructions...
April 2024: Journal of Neuroscience Research
https://read.qxmd.com/read/38628561/exercise-induction-at-expression-immediate-early-gene-c-fos-arc-egr-1-in-the-hippocampus-a-systematic-review
#40
REVIEW
Upik Rahmi, Hanna Goenawan, Nova Sylviana, Iwan Setiawan, Suci Tuty Putri, Septian Andriyani, Lisna Anisa Fitriana
UNLABELLED: The immediate early gene exhibits activation markers in the nervous system consisting of ARC, EGR-1, and c-Fos and is related to synaptic plasticity, especially in the hippocampus. Immediate early gene expression is affected by physical exercise, which induces direct ARC, EGR-1, and c-Fos expression. OBJECTIVE: To assess the impact of exercise, we conducted a literature study to determine the expression levels of immediate early genes (ARC, c-Fos, and EGR-1)...
2024: Dementia & Neuropsychologia
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