Literature DB >> 26132987

Synaptic ultrastructure changes in trigeminocervical complex posttrigeminal nerve injury.

John Park1, Van Nancy Trinh2, Ilse Sears-Kraxberger3, Kang-Wu Li2, Oswald Steward3, Z David Luo1,2,3.   

Abstract

Trigeminal nerves collecting sensory information from the orofacial area synapse on second-order neurons in the dorsal horn of subnucleus caudalis and cervical C1/C2 spinal cord (Vc/C2, or trigeminocervical complex), which is critical for sensory information processing. Injury to the trigeminal nerves may cause maladaptive changes in synaptic connectivity that plays an important role in chronic pain development. Here we examined whether injury to the infraorbital nerve, a branch of the trigeminal nerves, led to synaptic ultrastructural changes when the injured animals have developed neuropathic pain states. Transmission electron microscopy was used to examine synaptic profiles in Vc/C2 at 3 weeks postinjury, corresponding to the time of peak behavioral hypersensitivity following chronic constriction injury to the infraorbital nerve (CCI-ION). Using established criteria, synaptic profiles were classified as associated with excitatory (R-), inhibitory (F-), and primary afferent (C-) terminals. Each type was counted within the superficial dorsal horn of the Vc/C2 and the means from each rat were compared between sham and injured animals; synaptic contact length was also measured. The overall analysis indicates that rats with orofacial pain states had increased numbers and decreased mean synaptic length of R-profiles within the Vc/C2 superficial dorsal horn (lamina I) 3 weeks post-CCI-ION. Increases in the number of excitatory synapses in the superficial dorsal horn of Vc/C2 could lead to enhanced activation of nociceptive pathways, contributing to the development of orofacial pain states.
© 2015 Wiley Periodicals, Inc.

Entities:  

Keywords:  RRID:RGD_70508; RRID:nif-0000-30467; RRID:rid_000081; orofacial neuropathic pain; synaptic ultrastructure; trigeminal nerve injury

Mesh:

Year:  2015        PMID: 26132987      PMCID: PMC4675675          DOI: 10.1002/cne.23844

Source DB:  PubMed          Journal:  J Comp Neurol        ISSN: 0021-9967            Impact factor:   3.215


  69 in total

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Review 3.  Potential Molecular Targets for Treating Neuropathic Orofacial Pain Based on Current Findings in Animal Models.

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4.  Painful Cervical Facet Joint Injury Is Accompanied by Changes in the Number of Excitatory and Inhibitory Synapses in the Superficial Dorsal Horn That Differentially Relate to Local Tissue Injury Severity.

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5.  Central Mechanisms Mediating Thrombospondin-4-induced Pain States.

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  6 in total

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