keyword
https://read.qxmd.com/read/38609369/the-janus-face-of-endogenous-neuronal-tpa-promoting-self-protection-and-worsening-the-death-of-neighboring-neurons
#21
JOURNAL ARTICLE
Paul Prunotto, Pauline Marie, Laurent Lebouvier, Yannick Hommet, Denis Vivien, Carine Ali
Recombinant tissue-type plasminogen activator (r-tPA/Actilyse) stands as the prevailing pharmacological solution for treating ischemic stroke patients, of whom because their endogenous circulating tPA alone is not sufficient to rescue reperfusion and to promote favorable outcome. Beyond the tPA contributed by circulating endothelial cells and hepatocytes, neurons also express tPA, sparking debates regarding its impact on neuronal fate ranging from pro-survival to neurotoxic properties. In order to investigate the role of neuronal tPA during brain injuries, we developed models leading to its conditional deletion in neurons, employing AAV9-pPlat-GFP and AAV9-pPlat-Cre-GFP along with tPA floxed mice...
April 12, 2024: Cell Death & Disease
https://read.qxmd.com/read/38608401/pharmacological-profile-of-agmatine-an-in-depth-overview
#22
REVIEW
Hira Rafi, Hamna Rafiq, Muhammad Farhan
Agmatine, a naturally occurring polyamine derived from arginine via arginine decarboxylase, has been shown to play multifaceted roles in the mammalian body, impacting a wide range of physiological and pathological processes. This comprehensive review delineates the significant insights into agmatine's pharmacological profile, emphasizing its structure and metabolism, neurotransmission and regulation, and pharmacokinetics and function. Agmatine's biosynthesis is highly conserved across species, highlighting its fundamental role in cellular functions...
April 3, 2024: Neuropeptides
https://read.qxmd.com/read/38601983/non-ionotropic-voltage-gated-calcium-channel-signaling
#23
REVIEW
Michael Trus, Daphne Atlas
Voltage-gated calcium channels (VGCCs) are the major conduits for calcium ions (Ca2+ ) within excitable cells. Recent studies have highlighted the non-ionotropic functionality of VGCCs, revealing their capacity to activate intracellular pathways independently of ion flow. This non-ionotropic signaling mode plays a pivotal role in excitation-coupling processes, including gene transcription through excitation-transcription (ET), synaptic transmission via excitation-secretion (ES), and cardiac contraction through excitation-contraction (EC)...
December 2024: Channels
https://read.qxmd.com/read/38599217/humanin-s-impact-on-pain-markers-and-neuronal-viability-in-diabetic-neuropathy-model
#24
JOURNAL ARTICLE
Muhammed Mirac Kelestemur, Ferah Bulut, Batuhan Bılgın, Munevver Gizem Hekım, Muhammed Adam, Sibel Ozcan, Mustafa Caglar Beker, Nalan Kaya Tektemur, Suat Tekin, Sinan Canpolat, Mete Ozcan
OBJECTIVE: This study investigates the impact of chronic humanin (HN) treatment on pain-related markers (NMDA, substance P, TRPV1, and IL-1β) in diabetic mice's dorsal root ganglia (DRG). Additionally, we assess the effects of HN on cellular viability in DRG neurons. METHODS: In vivo experiments involved 15 days of HN administration (4 mg/kg) to diabetic mice ( n  = 10). Protein levels of NMDA, IL-1β, TRPV1, and substance P were measured in diabetic DRG...
April 10, 2024: Archives of Physiology and Biochemistry
https://read.qxmd.com/read/38598639/structure-and-function-of-glun1-3a-nmda-receptor-excitatory-glycine-receptor-channel
#25
JOURNAL ARTICLE
Kevin Michalski, Hiro Furukawa
N -methyl-d-aspartate receptors (NMDARs) and other ionotropic glutamate receptors (iGluRs) mediate most of the excitatory signaling in the mammalian brains in response to the neurotransmitter glutamate. Uniquely, NMDARs composed of GluN1 and GluN3 are activated exclusively by glycine, the neurotransmitter conventionally mediating inhibitory signaling when it binds to pentameric glycine receptors. The GluN1-3 NMDARs are vital for regulating neuronal excitability, circuit function, and specific behaviors, yet our understanding of their functional mechanism at the molecular level has remained limited...
April 12, 2024: Science Advances
https://read.qxmd.com/read/38596207/ketamine-infusion-in-a-resistant-obsessive-compulsive-disorder-patient-in-bangladesh-with-severe-suicidal-ideation-a-case-report
#26
Sultana Algin, Debasish Banik, Sm Atikur Rahman, Saiful Mahmud Tusher, Fatema Tuj Johora, Asha Akter, Tanbir Ahmed, Md Abdul Monib Biswas, Susmita Sinha, Mainul Haque
Treatment of resistant obsessive-compulsive disorder (OCD) typically results in insufficient symptom alleviation, and even long-term medication often fails to have the intended effect. Ketamine is a potent non-competitive antagonist of the N-methyl-D-aspartate (NMDA) receptor. Studies have shown that low-dose ketamine infusion results in a considerable reduction in obsessive-compulsive symptoms and a rapid resolution of suicidal ideation. This is a case report on the effect of intravenous ketamine infusion on a patient with resistant OCD and severe suicidal ideation...
April 2024: Curēus
https://read.qxmd.com/read/38592586/limb-clasping-response-in-nmda-receptor-palmitoylation-deficient-mice
#27
JOURNAL ARTICLE
Nami Suzuki, Akiko Oota-Ishigaki, Toshie Kaizuka, Masayuki Itoh, Maya Yamazaki, Rie Natsume, Manabu Abe, Kenji Sakimura, Masayoshi Mishina, Takashi Hayashi
Proper regulation of N-methyl-D-aspartate-type glutamate receptor (NMDA receptor) expression is responsible for excitatory synaptic functions in the mammalian brain. NMDA receptor dysfunction can cause various neuropsychiatric disorders and neurodegenerative diseases. Posttranslational protein S-palmitoylation, the covalent attachment of palmitic acid to intracellular cysteine residues via thioester bonds, occurs in the carboxyl terminus of GluN2B, which is the major regulatory NMDA receptor subunit. Mutations of three palmitoylatable cysteine residues in the membrane-proximal cluster of GluN2B to non-palmitoylatable serine (3CS) lead to the dephosphorylation of GluN2B Tyr1472 in the hippocampus and cerebral cortex, inducing a reduction in the surface expression of GluN2B-containig NMDA receptors...
April 9, 2024: Molecular Neurobiology
https://read.qxmd.com/read/38591010/anoxia-induced-hippocampal-ltp-is-regeneratively-produced-by-glutamate-and-nitric-oxide-from-the-neuro-glial-endothelial-axis
#28
JOURNAL ARTICLE
Han-Ying Wang, Hiroshi Takagi, Patrick N Stoney, Anai Echeverria, Bernd Kuhn, Kuei-Sen Hsu, Tomoyuki Takahashi
Transient anoxia causes amnesia and neuronal death. This is attributed to enhanced glutamate release and modeled as anoxia-induced long-term potentiation (aLTP). aLTP is mediated by glutamate receptors and nitric oxide (·NO) and occludes stimulation-induced LTP. We identified a signaling cascade downstream of ·NO leading to glutamate release and a glutamate-·NO loop regeneratively boosting aLTP. aLTP in entothelial ·NO synthase (eNOS)-knockout mice and blocking neuronal NOS (nNOS) activity suggested that both nNOS and eNOS contribute to aLTP...
April 19, 2024: IScience
https://read.qxmd.com/read/38589439/cryo-em-structure-of-the-human-asc-1-transporter-complex
#29
JOURNAL ARTICLE
Yaning Li, Yingying Guo, Angelika Bröer, Lu Dai, Stefan Brӧer, Renhong Yan
The Alanine-Serine-Cysteine transporter 1 (Asc-1 or SLC7A10) forms a crucial heterodimeric transporter complex with 4F2hc (SLC3A2) through a covalent disulfide bridge. This complex enables the sodium-independent transport of small neutral amino acids, including L-Alanine (L-Ala), Glycine (Gly), and D-Serine (D-Ser), within the central nervous system (CNS). D-Ser and Gly are two key endogenous glutamate co-agonists that activate N-methyl-d-aspartate (NMDA) receptors by binding to the allosteric site. Mice deficient in Asc-1 display severe symptoms such as tremors, ataxia, and seizures, leading to early postnatal death...
April 8, 2024: Nature Communications
https://read.qxmd.com/read/38587320/the-effect-of-morphine-administration-on-glun3b-nmda-receptor-subunit-mrna-expression-in-rat-brain
#30
JOURNAL ARTICLE
Shahrzad Nazari, Mitra-Sadat Sadat-Shirazi, Ali Shahbazi, Kamran Ghaffari, Nasim Vousooghi
Opioid addiction is critically dependent on the activation of N‑methyl‑D‑aspartate (NMDA) receptors, which are widely found in the mesocorticolimbic system. Meanwhile, opioid addiction may affect the expression level of NMDA receptor subunits. The existence of GluN3 subunits in the NMDA receptor's tetramer structure reduces the excitatory current of the receptor channel. We evaluated the changes in the mRNA expression pattern of the GluN3B subunit of the NMDA receptor in rat brains following acute and chronic exposure to morphine...
March 28, 2024: Acta Neurobiologiae Experimentalis
https://read.qxmd.com/read/38586442/review-on-anti-alzheimer-drug-development-approaches-challenges-and-perspectives
#31
REVIEW
Abdallah E Abdallah
Alzheimer is an irreversible progressive neurodegenerative disease that causes failure of cerebral neurons and disability of the affected person to practice normal daily life activities. There is no concrete evidence to identify the exact reason behind the disease, so several relevant hypotheses emerged, highlighting many possible therapeutic targets, such as acetylcholinesterase, cholinergic receptors, N -methyl d-aspartate receptors, phosphodiesterase, amyloid β protein, protein phosphatase 2A, glycogen synthase kinase-3 beta, β-secretase, γ-secretase, α-secretase, serotonergic receptors, glutaminyl cyclase, tumor necrosis factor-α, γ-aminobutyric acid receptors, and mitochondria...
April 3, 2024: RSC Advances
https://read.qxmd.com/read/38585967/dietary-regulation-of-silent-synapses-in-the-dorsolateral-striatum
#32
Allison M Meyers, Federico Gnazzo, Eddy D Barrera, Tikva Nabatian, Larry Chan, Jeff Beeler
Obesity results in circuit adaptations that closely resemble those induced by drugs of abuse. AMPA-lacking 'silent' synapses are critical in circuit generation during early development, but largely disappear by adulthood. Drugs of abuse increase silent synapses during adulthood and may facilitate the reorganization of brain circuits around drug-related experience, facilitating addiction and relapse Whether obesity causes addiction-related synaptic circuit reorganization via alterations in silent synapse expression has not been examined...
March 27, 2024: bioRxiv
https://read.qxmd.com/read/38585463/low-affinity-nmda-receptor-antagonist-hemantane-in-a-topical-formulation-attenuates-arthritis-induced-by-freund-s-complete-adjuvant-in-rats
#33
JOURNAL ARTICLE
Elena Ivanova, Alexander Matyushkin, Alexandra Sorokina, Svetlana Alexeeva, Irina Miroshkina, Kirill Kachalov, Tatyana Voronina, Andrey Durnev
PURPOSE: N-methyl-D-aspartate (NMDA) receptors that are expressed by T-cells modulate T-cell proliferation, cytotoxicity and cell migration toward chemokines. Several studies have shown an anti-inflammatory effect of NMDA receptor antagonists. This study compares the effect of the noncompetitive low-affinity NMDA receptor antagonist N-(2-adamantyl)-hexamethyleneimine hydrochloride (hemantane) in a topical formulation (gel) with the cyclooxygenase (COX) inhibitor diclofenac in a topical formulation (gel) in rats with arthritis induced by Freund's Complete Adjuvant (FCA)...
March 2024: Advanced Pharmaceutical Bulletin
https://read.qxmd.com/read/38583549/neurodevelopmental-effects-of-prenatal-bisphenol-a-exposure-on-the-role-of-microrna-regulating-nmda-receptor-subunits-in-the-male-rat-hippocampus
#34
JOURNAL ARTICLE
Norazirah Mat Nayan, Siti Hamimah Sheikh Abd Kadir, Andrean Husin, Rosfaiizah Siran
Maternal bisphenol A (BPA) exposure has been reported to cause learning and memory deficits in born offspring. However, little is known that this impairment is potentially caused by epigenetic modulation on the development of NMDA receptor subunits. This study investigates the effect of prenatal BPA exposure on the hippocampal miR-19a and miR-539, which are responsible for regulating NMDA receptor subunits as well as learning and memory functions. Pregnant Sprague Dawley rats were orally administered with 5 mg/kg/day of BPA from pregnancy day 1 (PD1) until gestation day 21 (GD21), while control mothers received no BPA...
April 5, 2024: Physiology & Behavior
https://read.qxmd.com/read/38582415/edaravone-dexborneol-attenuates-cognitive-impairment-in-a-rat-model-of-vascular-dementia-by-inhibiting-hippocampal-oxidative-stress-and-inflammatory-responses-and-modulating-the-nmda-receptor-signaling-pathway
#35
JOURNAL ARTICLE
Hui Guo, Haodong Li, Zhisheng Jia, Shuyu Ma, Jin Zhang
Exploring the intricate pathogenesis of Vascular Dementia (VD), there is a noted absence of potent treatments available in the current medical landscape. A new brain-protective medication developed in China, Edaravone dexboeol (EDB), has shown promise due to its antioxidant and anti-inflammatory properties, albeit with a need for additional research to elucidate its role and mechanisms in VD contexts. In a research setup, a VD model was established utilizing Sprague-Dawley (SD) rats, subjected to permanent bilateral typical carotid artery occlusion (2VO)...
April 4, 2024: Brain Research
https://read.qxmd.com/read/38579622/novel-6-alkyl-bridged-4-arylalkylpiperazin-1-yl-derivatives-of-azepino-4-3-b-indol-1-2h-one-as-potent-bche-selective-inhibitors-showing-protective-effects-against-neurodegenerative-insults
#36
JOURNAL ARTICLE
Francesco Samarelli, Rosa Purgatorio, Gianfranco Lopopolo, Caterina Deruvo, Marco Catto, Michael Andresini, Antonio Carrieri, Orazio Nicolotti, Annalisa De Palma, Daniela Valeria Miniero, Modesto de Candia, Cosimo D Altomare
Due to the putative role of butyrylcholinesterase (BChE) in regulation of acetylcholine levels and functions in the late stages of the Alzheimer's disease (AD), the potential of selective inhibitors (BChEIs) has been envisaged as an alternative to administration of acetylcholinesterase inhibitors (AChEIs). Starting from our recent findings, herein the synthesis and in vitro evaluation of cholinesterase (ChE) inhibition of a novel series of some twenty 3,4,5,6-tetrahydroazepino[4,3-b]indol-1(2H)-one derivatives, bearing at the indole nitrogen diverse alkyl-bridged 4-arylalkylpiperazin-1-yl chains, are reported...
March 20, 2024: European Journal of Medicinal Chemistry
https://read.qxmd.com/read/38579401/a-novel-hdac8-inhibitor-h7e-exerts-retinoprotective-effects-against-glaucomatous-injury-via-ameliorating-aberrant-m%C3%A3-ller-glia-activation-and-oxidative-stress
#37
JOURNAL ARTICLE
Liang-Huan Wu, Yu-Wen Cheng, Fan-Li Lin, Kai-Cheng Hsu, Mong-Heng Wang, Jing-Lun Yen, Tsung-Jen Wang, Tony Eight Lin, Yi-Chien Liu, Wei-Jan Huang, George Hsiao
Glaucoma is considered a neurodegenerative disease characterized by progressive visual field defects that may lead to blindness. Although controlling intraocular pressure (IOP) is the mainstay of glaucoma treatment, some glaucoma patients have unmet needs due to unclear pathogenic mechanisms. Recently, there has been growing evidence that neuroinflammation is a potential target for the development of novel antiglaucoma agents. In this study, we investigated the protective effects and cellular mechanisms of H7E, a novel small molecule inhibits HDAC8, using in vitro and in vivo glaucoma-like models...
April 4, 2024: Biomedicine & Pharmacotherapy
https://read.qxmd.com/read/38577773/tiam1-mediated-maladaptive-plasticity-underlying-morphine-tolerance-and-hyperalgesia
#38
JOURNAL ARTICLE
Changqun Yao, Xing Fang, Qin Ru, Wei Li, Jun Li, Zeinab Mehsein, Kimberley F Tolias, Lingyong Li
Opioid pain medications, such as morphine, remain the mainstay for treating severe and chronic pain. Prolonged morphine use, however, triggers analgesic tolerance and hyperalgesia (OIH), which can last for a long period after morphine withdrawal. How morphine induces these detrimental side effects remains unclear. Here, we show that morphine tolerance and OIH are mediated by Tiam1-coordinated synaptic structural and functional plasticity in the spinal nociceptive network. Tiam1 is a Rac1 GTPase guanine nucleotide exchange factor (GEF) that promotes excitatory synaptogenesis by modulating actin cytoskeletal dynamics...
April 5, 2024: Brain
https://read.qxmd.com/read/38574646/particulate-matter-pm-10-exacerbates-on-mk-801-induced-schizophrenia-like-behaviors-through-the-inhibition-of-erk-creb-bdnf-signaling-pathway
#39
JOURNAL ARTICLE
Seung-Hyuk Choi, Ho Jung Bae, So-Yeon Kim, Tamanna Jahan Mony, Hyun-Jeong Kim, Ye Eun Cho, Yu-Yeong Choi, Ju-Yeon An, So-Young Cho, Dong Hyun Kim, Se Jin Park
Particulate matter (PM), released into the air by a variety of natural and human activities, is a key indicator of air pollution. Although PM is known as the extensive health hazard to affect a variety of illness, few studies have specifically investigated the effects of PM10 exposure on schizophrenic development. In the present study, we aimed to investigate the impact of PM10 on MK-801, N-methyl-D-aspartate (NMDA) receptor antagonist, induced schizophrenia-like behaviors in C57BL/6 mouse. Preadolescent mice were exposed PM10 to 3...
April 3, 2024: Ecotoxicology and Environmental Safety
https://read.qxmd.com/read/38574621/memantine-suppresses-the-excitotoxicity-but-fails-to-rescue-the-ataxic-phenotype-in-sca1-model-mice
#40
JOURNAL ARTICLE
Olga S Belozor, Alex Vasilev, Alexandra G Mileiko, Lyudmila D Mosina, Ilya G Mikhailov, Darius A Ox, Elizaveta B Boitsova, Andrey N Shuvaev, Anja G Teschemacher, Sergey Kasparov, Anton N Shuvaev
Spinocerebellar ataxia type 1 (SCA1) is a debilitating neurodegenerative disorder of the cerebellum and brainstem. Memantine has been proposed as a potential treatment for SCA1. It blocks N-methyl-D-aspartate (NMDA) receptors on neurons, reduces excitotoxicity and decreases neurodegeneration in Alzheimer models. However, in cerebellar neurodegenerative diseases, the potential value of memantine is still unclear. We investigated the effects of memantine on motor performance and synaptic transmission in the cerebellum in a mouse model where mutant ataxin 1 is specifically targeted to glia...
April 3, 2024: Biomedicine & Pharmacotherapy
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