Literature DB >> 11596053

Pericellular Griffonia simplicifolia I isolectin B4-binding ring structures in the dorsal root ganglia following peripheral nerve injury in rats.

L Li1, X F Zhou.   

Abstract

Patients with a peripheral nerve injury often suffer from persistent chronic pain, but the underlying mechanism remains largely unknown. The persistent nature of the pain suggests injury-induced profound structural changes along the sensory pathways. In the present study, using the plant Griffonia simplicifolia I isolectin B4 (IB4) as a marker for nonpeptidergic small sensory neurons, we sought to examine whether these neurons sprout in the dorsal root ganglia (DRG) in response to peripheral nerve injury. The lumbar 5 (L5) spinal nerve was transected, and rats were allowed to survive for varying lengths of time before IB4 histology was performed. We found that a subpopulation of IB4-positive sensory neurons sprouted robustly after spinal nerve injury. Twelve weeks after spinal nerve injury, the IB4-positive ring structures became dramatic and encircled both large and small neurons in the DRG. The aberrant sprouting of small sensory neurons was also demonstrated by retrograde labeling. The processes of satellite cells surrounding large sensory neurons also became IB4 positive, and 87.8% of perineuronal IB4-positive ring structures intermingled and/or coexpressed with glial fibrillary acidic protein-positive satellite cells. Thus, the sprouting axons of IB4-positive neurons were intermingled with IB4-positive satellite cells, forming perineuronal ring structures surrounding large-diameter neurons. Ultrastructural examinations further confirmed that IB4-positive nerve terminals were entangled with satellite cells and IB4-negative unmyelinated sprouting fibers around sensory neurons. These studies have provided the first evidence that a subpopulation of IB4-binding small sensory neurons sprouts and forms perineuronal ring structures together with IB4-positive satellite cells in response to nerve injury. The significance of the sprouting of IB4-positive neurons remains to be determined. Copyright 2001 Wiley-Liss, Inc.

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Year:  2001        PMID: 11596053     DOI: 10.1002/cne.1349

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


  10 in total

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2.  The effect of spinal cord injury on the neurochemical properties of vagal sensory neurons.

Authors:  April N Herrity; Jeffrey C Petruska; David P Stirling; Kristofer K Rau; Charles H Hubscher
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4.  Spinal nerve ligation in mouse upregulates TRPV1 heat function in injured IB4-positive nociceptors.

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5.  P2Y receptors and pain transmission.

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Review 6.  Role of neuron and non-neuronal cell communication in persistent orofacial pain.

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Review 7.  Revisiting PNS Plasticity: How Uninjured Sensory Afferents Promote Neuropathic Pain.

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Review 8.  2D <em>vs</em> 3D morphological analysis of dorsal root ganglia in health and painful neuropathy.

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Review 9.  Orofacial Neuropathic Pain-Basic Research and Their Clinical Relevancies.

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10.  Peripheral facial nerve axotomy in mice causes sprouting of motor axons into perineuronal central white matter: time course and molecular characterization.

Authors:  Milan Makwana; Alexander Werner; Alejandro Acosta-Saltos; Roman Gonitel; Abirami Pararajasingam; Abirami Pararajasingham; Crystal Ruff; Prakasham Rumajogee; Dan Cuthill; Mathias Galiano; Marion Bohatschek; Adam S Wallace; Patrick N Anderson; Ulrike Mayer; Axel Behrens; Gennadij Raivich
Journal:  J Comp Neurol       Date:  2010-03-01       Impact factor: 3.215

  10 in total

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