keyword
https://read.qxmd.com/read/33727332/activation-of-mrgpra3-and-mrgprc11-on-bladder-innervating-afferents-induces-peripheral-and-central-hypersensitivity-to-bladder-distension
#21
JOURNAL ARTICLE
Luke Grundy, Ashlee Caldwell, Sonia Garcia-Caraballo, David Grundy, Nick J Spencer, Xinzhong Dong, Joel Castro, Andrea M Harrington, Stuart M Brierley
Understanding the sensory mechanisms innervating the bladder is paramount to developing efficacious treatments for chronic bladder hypersensitivity conditions. The contribution of Mas-gene-related G protein-coupled receptors (Mrgpr) to bladder signaling is currently unknown. Using male and female mice, we show with single-cell RT-PCR that subpopulations of DRG neurons innervating the mouse bladder express MrgprA3 (14%) and MrgprC11 (38%), either individually or in combination, with high levels of coexpression with Trpv1 (81%-89%)...
April 28, 2021: Journal of Neuroscience
https://read.qxmd.com/read/33619726/androgen-receptors-in-areas-of-the-spinal-cord-and-brainstem-a-study-in-adult-male-cats
#22
JOURNAL ARTICLE
Rosa L Coolen, Jacqueline C Cambier, Panagiota I Spantidea, Els van Asselt, Bertil F M Blok
Sex hormones, including androgens and estrogens, play an important role in autonomic, reproductive and sexual behavior. The areas that are important in these behaviors lie within the spinal cord and brainstem. Relevant dysfunctional behavior in patients with altered androgen availability or androgen receptor sensitivity might be explained by the distribution of androgens and their receptors in the central nervous system. We hypothesize that autonomic dysfunction is correlated with the androgen sensitivity of spinal cord and brainstem areas responsible for autonomic functions...
February 22, 2021: Journal of Anatomy
https://read.qxmd.com/read/33582876/manifestation-of-lipopolysaccharide-induced-tolerance-in-neuro-glial-primary-cultures-of-the-rat-afferent-somatosensory-system
#23
JOURNAL ARTICLE
Franz Nürnberger, Stephan Leisengang, Daniela Ott, Jolanta Murgott, Rüdiger Gerstberger, Christoph Rummel, Joachim Roth
OBJECTIVE: Bacterial lipopolysaccharide (LPS) may contribute to the manifestation of inflammatory pain within structures of the afferent somatosensory system. LPS can induce a state of refractoriness to its own effects termed LPS tolerance. We employed primary neuro-glial cultures from rat dorsal root ganglia (DRG) and the superficial dorsal horn (SDH) of the spinal cord, mainly including the substantia gelatinosa to establish and characterize a model of LPS tolerance within these structures...
February 13, 2021: Inflammation Research: Official Journal of the European Histamine Research Society ... [et Al.]
https://read.qxmd.com/read/33524899/increased-expression-of-dendrin-in-the-dorsal-horn-of-the-spinal-cord-during-stress-is-regulated-by-sex-hormones
#24
JOURNAL ARTICLE
Marija Jurić, Marta Balog, Vedrana Ivić, Maria Bošković, Benjamin Benzon, Anita Racetin, Katarina Vukojević, Ivana Bočina, Nives Kević, Ivana Restović, Kálmán F Szűcs, Róbert Gáspár, Marija Heffer, Sandor G Vari, Natalija Filipović
Chronic stress has various effects on organisms and is sex-specific. The aim of the study was to describe the expression of synapse strengthening protein, dendrin, in the spinal cord (SC) and the dependence of its expression on chronic stress and sex hormones. Thirteen-month-old female and male rats were castrated (ovariectomy [F-OVX] or orchidectomy [M-ORX]) or sham-operated (F-SH or M-SH), respectively. At age 15 months, three 10-day-sessions of sham stress (control, C) or chronic stress (S) were conducted...
January 23, 2021: Neuropeptides
https://read.qxmd.com/read/33359224/clarity-with-neuronal-tracing-and-immunofluorescence-to-study-the-somatosensory-system-in-rats
#25
JOURNAL ARTICLE
Guadalupe Martínez-Lorenzana, Mohammed Gamal-Eltrabily, Irma Alejandra Tello-García, Ataulfo Martínez-Torres, Marymar Becerra-González, Abimael González-Hernández, Miguel Condés-Lara
BACKGROUND: The CLARITY technique enables researchers to visualize different neuronal connections along the nervous system including the somatosensory system. NEW METHOD: The present work describes the antero-lateral and dorsal column pathways until the thalamic and cortical stations, as well as descending oxytocinergic and vasopressinergic innervations by means of combined CLARITY, neuronal tracing, and immunofluorescence techniques. We used male Sprague-Dawley rats of 13, 30, and 60 days...
December 22, 2020: Journal of Neuroscience Methods
https://read.qxmd.com/read/33170987/conditioned-pain-modulation-affects-the-n2-p2-complex-but-not-the-n1-wave-a-pilot-study-with-laser-evoked-potentials
#26
JOURNAL ARTICLE
Giovanna Squintani, Andrea Rasera, Alessia Segatti, Elisa Concon, Bruno Bonetti, Massimiliano Valeriani, Michele Tinazzi
BACKGROUND: The 'pain-inhibits-pain' effect stems from neurophysiological mechanisms involving endogenous modulatory systems termed diffuse noxious inhibitory controls (DNIC) or conditioned pain modulation (CPM). Laser-evoked potentials (LEPs) components, the N2/P2 complex, and the N1 wave, reflect the medial and lateral pain pathway, respectively: anatomically, the lateral thalamic nuclei (LT) project mainly to the somatosensory cortex (N1 generator), while the medial thalamic nuclei (MT) are bound to the limbic cortices (N2/P2 generators)...
March 2021: European Journal of Pain: EJP
https://read.qxmd.com/read/33128105/semaphorin-7a-restricts-serotonergic-innervation-and-ensures-recovery-after-spinal-cord-injury
#27
JOURNAL ARTICLE
Kristina Loy, Julie Fourneau, Ning Meng, Carmen Denecke, Giuseppe Locatelli, Florence M Bareyre
Descending serotonergic (5-HT) projections originating from the raphe nuclei form an important input to the spinal cord that control basic locomotion. The molecular signals that control this projection pattern are currently unknown. Here, we identify Semaphorin7A (Sema7A) as a critical cue that restricts serotonergic innervation in the spinal cord. Sema7A deficient mice show a marked increase in serotonergic fiber density in all layers of the spinal cord while the density of neurons expressing the corresponding 5-HTR2α receptor remains unchanged...
October 30, 2020: Cellular and Molecular Life Sciences: CMLS
https://read.qxmd.com/read/33050970/patterns-of-organization-of-cerebellum-and-spinal-cord-of-the-red-tail-shark-epalzeorhynchos-bicolor-histological-morphometrical-and-immunohistochemical-studies
#28
JOURNAL ARTICLE
Doaa M Mokhtar
Teleosts exhibit enormous heterogeneity in brain morphology, especially in the patterns of the organization of cerebellum. The cerebellum of a red-tail shark that we analyzed was well-developed and included three main divisions: the valvula cerebelli, the corpus cerebelli, and the vestibulolateral lobe. Characteristically, the cerebellar cortex contained three well-distinct layers: an outer molecular, intermediate ganglionic, and inner granular layer. The ganglionic layer possessed irregularly arranged Purkinje cells and eurydendroid cells that extended their processes into the molecular layer...
October 14, 2020: Microscopy and Microanalysis
https://read.qxmd.com/read/32930083/-neuroanatomy-and-pathophysiology-of-pain-perception
#29
JOURNAL ARTICLE
Nicole Kamber
Neuroanatomy and Pathophysiology of Pain Perception Abstract. Nociception, the possibility of our sensory nervous system to detect painful and therefore potentially harmful stimuli, is crucial for survival. In essence it serves as a "detect and protect" mechanism. For this reason, many features of this complex network, for example the nociceptors, are evolutionary highly preserved. To guarantee an adequate and fast response to prevent tissue damage, the information has to be processed in a fast and stable manner...
August 2020: Therapeutische Umschau. Revue Thérapeutique
https://read.qxmd.com/read/32656805/polysialic-acid-in-the-rat-brainstem-and-thoracolumbar-spinal-cord-distribution-cellular-location-and-comparison-with-mouse
#30
JOURNAL ARTICLE
Shila Shahbazian, Phillip Bokiniec, Britt A Berning, Simon McMullan, Ann K Goodchild
Polysialic acid (polySia), a homopolymer of α2,8-linked glycans, is a posttranslational modification on a few glycoproteins, most commonly in the brain, on the neural cell adhesion molecule. Most research in the adult central nervous system has focused on its expression in higher brain regions, where its distribution coincides with regions known to exhibit high levels of synaptic plasticity. In contrast, scant attention has been paid to the expression of polySia in the hindbrain. The main aims of the study were to examine the distribution of polySia immunoreactivity in the brainstem and thoracolumbar spinal cord, to compare the distribution of polySia revealed by two commercial antibodies commonly used for its investigation, and to compare labeling in the rat and mouse...
July 12, 2020: Journal of Comparative Neurology
https://read.qxmd.com/read/32379362/blocking-ctgf-ccn2-reverses-neural-fibrosis-and-sensorimotor-declines-in-a-rat-model-of-overuse-induced-median-mononeuropathy
#31
JOURNAL ARTICLE
Mary F Barbe, Brendan A Hilliard, Mamta Amin, Michele Y Harris, Lucas J Hobson, Geneva E Cruz, Jocelynne T Dorotan, Ryan W Paul, David M Klyne, Steven N Popoff
Encapsulation of median nerves is a hallmark of overuse-induced median mononeuropathy and contributes to functional declines. We tested if an antibody against CTGF/CCN2 (termed FG-3019 or Pamrevlumab) reduces established neural fibrosis and sensorimotor declines in a clinically relevant rodent model of overuse in which median mononeuropathy develops. Young adult female rats performed a high repetition high force (HRHF) lever-pulling task for 18 weeks. Rats were then euthanised at 18 weeks (HRHF-untreated), or rested and systemically treated for 6 weeks with either an anti-CCN2 monoclonal antibody (HRHF-Rest/FG-3019) or IgG (HRHF-Rest/IgG), with results compared to non-task control rats...
May 7, 2020: Journal of Orthopaedic Research: Official Publication of the Orthopaedic Research Society
https://read.qxmd.com/read/32374638/neural-pathways-of-craniofacial-muscle-pain-implications-for-novel-treatments
#32
REVIEW
M K Chung, S Wang, J Yang, I Alshanqiti, F Wei, J Y Ro
Craniofacial muscle pain is highly prevalent in temporomandibular disorders but is difficult to treat. Enhanced understanding of neurobiology unique to craniofacial muscle pain should lead to the development of novel mechanism-based treatments. Herein, we review recent studies to summarize neural pathways of craniofacial muscle pain. Nociceptive afferents in craniofacial muscles are predominantly peptidergic afferents enriched with TRPV1. Signals from peripheral glutamate receptors converge onto TRPV1, leading to mechanical hyperalgesia...
August 2020: Journal of Dental Research
https://read.qxmd.com/read/32362812/transgenic-cross-referencing-of-inhibitory-and-excitatory-interneuron-populations-to-dissect-neuronal-heterogeneity-in-the-dorsal-horn
#33
JOURNAL ARTICLE
Tyler J Browne, Mark A Gradwell, Jacqueline A Iredale, Jessica F Maden, Robert J Callister, David I Hughes, Christopher V Dayas, Brett A Graham
The superficial dorsal horn (SDH, LI-II) of the spinal cord receives and processes multimodal sensory information from skin, muscle, joints, and viscera then relay it to the brain. Neurons within the SDH fall into two broad categories, projection neurons and interneurons. The later can be further subdivided into excitatory and inhibitory types. Traditionally, interneurons within the SDH have been divided into overlapping groups according to their neurochemical, morphological and electrophysiological properties...
2020: Frontiers in Molecular Neuroscience
https://read.qxmd.com/read/32239353/recent-advances-in-our-understanding-of-the-organization-of-dorsal-horn-neuron-populations-and-their-contribution-to-cutaneous-mechanical-allodynia
#34
REVIEW
Cedric Peirs, Radhouane Dallel, Andrew J Todd
The dorsal horns of the spinal cord and the trigeminal nuclei in the brainstem contain neuron populations that are critical to process sensory information. Neurons in these areas are highly heterogeneous in their morphology, molecular phenotype and intrinsic properties, making it difficult to identify functionally distinct cell populations, and to determine how these are engaged in pathophysiological conditions. There is a growing consensus concerning the classification of neuron populations, based on transcriptomic and transductomic analyses of the dorsal horn...
April 2, 2020: Journal of Neural Transmission
https://read.qxmd.com/read/32117068/acute-mono-arthritis-activates-the-neurohypophysial-system-and-hypothalamo-pituitary-adrenal-axis-in-rats
#35
JOURNAL ARTICLE
Haruki Nishimura, Makoto Kawasaki, Takanori Matsuura, Hitoshi Suzuki, Yasuhito Motojima, Kazuhiko Baba, Hideo Ohnishi, Yoshiaki Yamanaka, Teruaki Fujitani, Mitsuhiro Yoshimura, Takashi Maruyama, Hiromichi Ueno, Satomi Sonoda, Kazuaki Nishimura, Kentarou Tanaka, Kenya Sanada, Tatsushi Onaka, Yoichi Ueta, Akinori Sakai
Various types of acute/chronic nociceptive stimuli cause neuroendocrine responses such as activation of the hypothalamo-neurohypophysial [oxytocin (OXT) and arginine vasopressin (AVP)] system and hypothalamo-pituitary adrenal (HPA) axis. Chronic multiple-arthritis activates the OXT/AVP system, but the effects of acute mono-arthritis on the OXT/AVP system in the same animals has not been simultaneously evaluated. Further, AVP, not corticotropin-releasing hormone (CRH), predominantly activates the HPA axis in chronic multiple-arthritis, but the participation of AVP in HPA axis activation in acute mono-arthritis remains unknown...
2020: Frontiers in Endocrinology
https://read.qxmd.com/read/32021392/prophylactic-electroacupuncture-on-the-upper-cervical-segments-decreases-neuronal-discharges-of-the-trigeminocervical-complex-in-migraine-affected-rats-an-in-vivo-extracellular-electrophysiological-experiment
#36
JOURNAL ARTICLE
Zhengyang Qu, Lu Liu, Luopeng Zhao, Xiaobai Xu, Zhijuan Li, Yupu Zhu, Chen Zhang, Xianghong Jing, Xiaoyu Wang, Bin Li, Claire Suiqing Zhang, Marc Fisher, Linpeng Wang
PURPOSE: This rat experiment aims to demonstrate the efficacy of electrical acupuncture in preventing migraine attacks by stimulating the acupoint GB20. INTRODUCTION: Migraine, which takes 2ed at level four causes of GBD's disease hierarchy, becomes a public health issue. It is important for physicians to supplement their knowledge of its treatment and consider alternative methods of therapy, such as acupuncture. However, the neurobiological and pathophysiological mechanisms of this prophylactic effect were unclear...
2020: Journal of Pain Research
https://read.qxmd.com/read/31977518/supraspinal-opioid-circuits-differentially-modulate-spinal-neuronal-responses-in-neuropathic-rats
#37
JOURNAL ARTICLE
Anthony H Dickenson, Edita Navratilova, Ryan Patel, Frank Porreca, Kirsty Bannister
BACKGROUND: The anterior cingulate cortex and central nucleus of the amygdala connect widely with brainstem nuclei involved in descending modulation, including the rostral ventromedial medulla. Endogenous opioids in these circuits participate in pain modulation. The hypothesis was that a differential opioidergic role for the brain nuclei listed in regulation of spinal neuronal responses because separable effects on pain behaviors in awake animals were previously observed. METHODS: This study utilized in vivo electrophysiology to determine the effects of morphine microinjection into the anterior cingulate cortex, right or left central nucleus of the amygdala, or the rostral ventromedial medulla on spinal wide dynamic range neuronal responses in isoflurane-anesthetized, male Sprague-Dawley rats...
April 2020: Anesthesiology
https://read.qxmd.com/read/31843515/histamine-h-4-receptor-stimulation-in-the-locus-coeruleus-attenuates-neuropathic-pain-by-promoting-the-coeruleospinal-noradrenergic-inhibitory-pathway
#38
JOURNAL ARTICLE
Maria Domenica Sanna, Vittoria Borgonetti, Emanuela Masini, Nicoletta Galeotti
The locus coeruleus (LC) adrenergic nuclei constitute a pain-control inhibitory system nucleus implicated in descending modulation of pain through the action on spinal α2 -adrenoceptors. Histaminergic innervation from the tuberomammillary nucleus of the LC increases firing of noradrenergic neurons and might contribute to pain control. Here we evaluated the contribution of LC histaminergic innervation in descending modulation of neuropathic hypersensitivity, by investigating the role of the histamine H4 receptor subtype in a mouse model of neuropathic pain...
February 5, 2020: European Journal of Pharmacology
https://read.qxmd.com/read/31805638/3-o-methylorobol-inhibits-the-voltage-gated-sodium-channel-nav1-7-with-anti-itch-efficacy-in-a-histamine-dependent-itch-mouse-model
#39
JOURNAL ARTICLE
Fan Zhang, Ying Wu, Shuwen Xue, Shuangyan Wang, Chunlei Zhang, Zhengyu Cao
An itch is a clinical complication that affects millions of patients. However, few treatment options are available. The voltage-gated sodium channel Nav1.7 is predominantly expressed in peripheral sensory neurons and is responsible for the rising phase of action potentials, thereby mediating nociceptive conduction. A gain-of-function mutation of Nav1.7 results in the hyperexcitability of sensory neurons and causes the inherited paroxysmal itch. Conversely, a monoclonal antibody that selectively inhibits Nav1...
December 1, 2019: International Journal of Molecular Sciences
https://read.qxmd.com/read/31666353/synaptic-inputs-to-the-mouse-dorsal-vagal-complex-and-its-resident-preproglucagon-neurons
#40
JOURNAL ARTICLE
Marie K Holt, Lisa E Pomeranz, Kevin T Beier, Frank Reimann, Fiona M Gribble, Linda Rinaman
Stress responses are coordinated by widespread neural circuits. Homeostatic and psychogenic stressors activate preproglucagon (PPG) neurons in the caudal nucleus of the solitary tract (cNTS) that produce glucagon-like peptide-1; published work in rodents indicates that these neurons play a crucial role in stress responses. While the axonal targets of PPG neurons are well established, their afferent inputs are unknown. Here we use retrograde tracing with cholera toxin subunit b to show that the cNTS in male and female mice receives axonal inputs similar to those reported in rats...
December 4, 2019: Journal of Neuroscience
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