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Department of Neuroscience Faculty Papers

Department of Neuroscience

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Full-Text Articles in Medicine and Health Sciences

Dcc Mediates Functional Assembly Of Peripheral Auditory Circuits., Young J Kim, Sheng-Zhi Wang, Stephen Tymanskyj, Le Ma, Huizhong W Tao, Li I Zhang Apr 2016

Dcc Mediates Functional Assembly Of Peripheral Auditory Circuits., Young J Kim, Sheng-Zhi Wang, Stephen Tymanskyj, Le Ma, Huizhong W Tao, Li I Zhang

Department of Neuroscience Faculty Papers

Proper structural organization of spiral ganglion (SG) innervation is crucial for normal hearing function. However, molecular mechanisms underlying the developmental formation of this precise organization remain not well understood. Here, we report in the developing mouse cochlea that deleted in colorectal cancer (Dcc) contributes to the proper organization of spiral ganglion neurons (SGNs) within the Rosenthal's canal and of SGN projections toward both the peripheral and central auditory targets. In Dcc mutant embryos, mispositioning of SGNs occurred along the peripheral auditory pathway with misrouted afferent fibers and reduced synaptic contacts with hair cells. The central auditory pathway simultaneously exhibited similar …


Interactions Of L-3,5,3′-Triiodothyronine, Allopregnanolone, And Ivermectin With The Gabaa Receptor: Evidence For Overlapping Intersubunit Binding Modes, Thomas Westergard, Reza Salari, Joseph V. Martin, Grace Brannigan Nov 2015

Interactions Of L-3,5,3′-Triiodothyronine, Allopregnanolone, And Ivermectin With The Gabaa Receptor: Evidence For Overlapping Intersubunit Binding Modes, Thomas Westergard, Reza Salari, Joseph V. Martin, Grace Brannigan

Department of Neuroscience Faculty Papers

No abstract provided.


Positive Allosteric Modulation Of Kv Channels By Sevoflurane: Insights Into The Structural Basis Of Inhaled Anesthetic Action., Qiansheng Liang, Warren D Anderson, Shelly T Jones, Caio S Souza, Juliana M Hosoume, Werner Treptow, Manuel Covarrubias Nov 2015

Positive Allosteric Modulation Of Kv Channels By Sevoflurane: Insights Into The Structural Basis Of Inhaled Anesthetic Action., Qiansheng Liang, Warren D Anderson, Shelly T Jones, Caio S Souza, Juliana M Hosoume, Werner Treptow, Manuel Covarrubias

Department of Neuroscience Faculty Papers

Inhalational general anesthesia results from the poorly understood interactions of haloethers with multiple protein targets, which prominently includes ion channels in the nervous system. Previously, we reported that the commonly used inhaled anesthetic sevoflurane potentiates the activity of voltage-gated K+ (Kv) channels, specifically, several mammalian Kv1 channels and the Drosophila K-Shaw2 channel. Also, previous work suggested that the S4-S5 linker of K-Shaw2 plays a role in the inhibition of this Kv channel by n-alcohols and inhaled anesthetics. Here, we hypothesized that the S4-S5 linker is also a determinant of the potentiation of Kv1.2 and K-Shaw2 by sevoflurane. Following functional expression …


Persistent At-Level Thermal Hyperalgesia And Tactile Allodynia Accompany Chronic Neuronal And Astrocyte Activation In Superficial Dorsal Horn Following Mouse Cervical Contusion Spinal Cord Injury., Jaime L Watson, Tamara J Hala, Rajarshi Putatunda, Daniel Sannie, Angelo C Lepore Sep 2014

Persistent At-Level Thermal Hyperalgesia And Tactile Allodynia Accompany Chronic Neuronal And Astrocyte Activation In Superficial Dorsal Horn Following Mouse Cervical Contusion Spinal Cord Injury., Jaime L Watson, Tamara J Hala, Rajarshi Putatunda, Daniel Sannie, Angelo C Lepore

Department of Neuroscience Faculty Papers

In humans, sensory abnormalities, including neuropathic pain, often result from traumatic spinal cord injury (SCI). SCI can induce cellular changes in the CNS, termed central sensitization, that alter excitability of spinal cord neurons, including those in the dorsal horn involved in pain transmission. Persistently elevated levels of neuronal activity, glial activation, and glutamatergic transmission are thought to contribute to the hyperexcitability of these dorsal horn neurons, which can lead to maladaptive circuitry, aberrant pain processing and, ultimately, chronic neuropathic pain. Here we present a mouse model of SCI-induced neuropathic pain that exhibits a persistent pain phenotype accompanied by chronic neuronal …


Degeneration Of Phrenic Motor Neurons Induces Long-Term Diaphragm Deficits Following Mid-Cervical Spinal Contusion In Mice., Charles Nicaise, Rajarshi Putatunda, Tamara J Hala, Kathleen A Regan, David M Frank, Jean-Pierre Brion, Karelle Leroy, Roland Pochet, Megan C Wright, Angelo C Lepore Dec 2012

Degeneration Of Phrenic Motor Neurons Induces Long-Term Diaphragm Deficits Following Mid-Cervical Spinal Contusion In Mice., Charles Nicaise, Rajarshi Putatunda, Tamara J Hala, Kathleen A Regan, David M Frank, Jean-Pierre Brion, Karelle Leroy, Roland Pochet, Megan C Wright, Angelo C Lepore

Department of Neuroscience Faculty Papers

A primary cause of morbidity and mortality following cervical spinal cord injury (SCI) is respiratory compromise, regardless of the level of trauma. In particular, SCI at mid-cervical regions targets degeneration of both descending bulbospinal respiratory axons and cell bodies of phrenic motor neurons, resulting in deficits in the function of the diaphragm, the primary muscle of inspiration. Contusion-type trauma to the cervical spinal cord is one of the most common forms of human SCI; however, few studies have evaluated mid-cervical contusion in animal models or characterized consequent histopathological and functional effects of degeneration of phrenic motor neuron-diaphragm circuitry. We have …


Human Glial-Restricted Progenitor Transplantation Into Cervical Spinal Cord Of The Sod1 Mouse Model Of Als., Angelo C Lepore, John O'Donnell, Andrew S Kim, Timothy Williams, Alicia Tuteja, Mahendra S Rao, Linda L Kelley, James T Campanelli, Nicholas J Maragakis Oct 2011

Human Glial-Restricted Progenitor Transplantation Into Cervical Spinal Cord Of The Sod1 Mouse Model Of Als., Angelo C Lepore, John O'Donnell, Andrew S Kim, Timothy Williams, Alicia Tuteja, Mahendra S Rao, Linda L Kelley, James T Campanelli, Nicholas J Maragakis

Department of Neuroscience Faculty Papers

Cellular abnormalities are not limited to motor neurons in amyotrophic lateral sclerosis (ALS). There are numerous observations of astrocyte dysfunction in both humans with ALS and in SOD1(G93A) rodents, a widely studied ALS model. The present study therapeutically targeted astrocyte replacement in this model via transplantation of human Glial-Restricted Progenitors (hGRPs), lineage-restricted progenitors derived from human fetal neural tissue. Our previous findings demonstrated that transplantation of rodent-derived GRPs into cervical spinal cord ventral gray matter (in order to target therapy to diaphragmatic function) resulted in therapeutic efficacy in the SOD1(G93A) rat. Those findings demonstrated the feasibility and efficacy of transplantation-based …


Slob, A Slowpoke Channel Binding Protein, Regulates Insulin Pathway Signaling And Metabolism In Drosophila., Amanda L. Sheldon, Jiaming Zhang, Hong Fei, Irwin B Levitan Aug 2011

Slob, A Slowpoke Channel Binding Protein, Regulates Insulin Pathway Signaling And Metabolism In Drosophila., Amanda L. Sheldon, Jiaming Zhang, Hong Fei, Irwin B Levitan

Department of Neuroscience Faculty Papers

There is ample evidence that ion channel modulation by accessory proteins within a macromolecular complex can regulate channel activity and thereby impact neuronal excitability. However, the downstream consequences of ion channel modulation remain largely undetermined. The Drosophila melanogaster large conductance calcium-activated potassium channel SLOWPOKE (SLO) undergoes modulation via its binding partner SLO-binding protein (SLOB). Regulation of SLO by SLOB influences the voltage dependence of SLO activation and modulates synaptic transmission. SLO and SLOB are expressed especially prominently in median neurosecretory cells (mNSCs) in the pars intercerebralis (PI) region of the brain; these cells also express and secrete Drosophila insulin like …