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1.
J Comp Neurol ; 532(2): e25563, 2024 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-37986234

RESUMO

Following peripheral nerve injury, postganglionic sympathetic axons sprout into the affected sensory ganglia and form perineuronal sympathetic plexuses with somata of sensory neurons. This sympathosensory coupling contributes to the onset and persistence of injury-induced chronic pain. We have documented the presence of similar sympathetic plexuses in the trigeminal ganglia of adult mice that ectopically overexpress nerve growth factor (NGF), in the absence of nerve injury. In this study, we sought to further define the phenotype(s) of these trigeminal sensory neurons having sympathetic plexuses in our transgenic mice. Using quantitative immunofluorescence staining analyses, we show that the invading sympathetic axons specifically target sensory somata immunopositive for several biomarkers: NGF high-affinity receptor tyrosine kinase A (trkA), calcitonin gene-related peptide (CGRP), neurofilament heavy chain (NFH), and P2X purinoceptor 3 (P2X3). Based on these phenotypic characteristics, the majority of the sensory somata surrounded by sympathetic plexuses are likely to be NGF-responsive nociceptors (i.e., trkA expressing) that are peptidergic (i.e., CGRP expressing), myelinated (i.e., NFH expressing), and ATP sensitive (i.e., P2X3 expressing). Our data also show that very few sympathetic plexuses surround sensory somata expressing other nociceptive (pain) biomarkers, including substance P and acid-sensing ion channel 3. No sympathetic plexuses are associated with sensory somata that display isolectin B4 binding. Though the cellular mechanisms that trigger the formation of sympathetic plexus (with and without nerve injury) remain unknown, our new observations yield an unexpected specificity with which invading sympathetic axons appear to target a precise subtype of nociceptors. This selectivity likely contributes to pain development and maintenance associated with sympathosensory coupling.


Assuntos
Fator de Crescimento Neural , Gânglio Trigeminal , Camundongos , Animais , Camundongos Transgênicos , Gânglio Trigeminal/metabolismo , Fator de Crescimento Neural/análise , Fator de Crescimento Neural/genética , Fator de Crescimento Neural/metabolismo , Peptídeo Relacionado com Gene de Calcitonina/metabolismo , Neurônios Aferentes/fisiologia , Células Receptoras Sensoriais/metabolismo , Dor/metabolismo , Fenótipo , Biomarcadores/análise , Gânglios Simpáticos/metabolismo
2.
J Neurosci Methods ; 396: 109937, 2023 08 01.
Artigo em Inglês | MEDLINE | ID: mdl-37531978

RESUMO

BACKGROUND: Peripheral nerves can regenerate and restore function after injury but this process is hindered by many factors including chronic denervation, motor end-plate resorption and Schwann cell senescence. Forelimb injury models in rodents are becoming increasingly popular as they more accurately reflect the physiology and biomechanics of upper extremity nerve injuries. However several aspects of this surgical model remain poorly characterized. NEW METHOD: C57Bl/6 mice underwent enumeration of median nerve motor and sensory neuron pools using retrograde labeling with or without nerve transection. Distal histomorphometry of uninjured mouse median nerves was also examined. Baseline reference values of volitional forelimb grip strength measurements were determined and the rate of neural elongation was also estimated. RESULTS: We identified 1363 ± 165 sensory and 216 ± 16 motor neurons within the uninjured dorsal root ganglia (DRG) and ventral spinal cord, respectively. Eight days following injury, approximately 34% of motoneurons had elongated a distance of 5 mm beyond the repair site 8 days following injury. Volitional grip strength decreased 50% with unilateral median nerve transection and was negligible with contralateral flexor tendon tenotomy. COMPARISON WITH EXISTING METHOD: Our spinal cord and DRG harvesting technique presented here was technically straightforward and reliable. Estimates of motor and sensory neuron numbers for the mouse median nerve compared favourably with studies using intramuscular injection of retrograde neurotracer. Histomorphometry data was consistent with and reinforced reference values in the literature. CONCLUSIONS: This study provides data that further develops an increasingly popular surgical model for studying peripheral nerve injury and repair.


Assuntos
Nervo Mediano , Traumatismos dos Nervos Periféricos , Camundongos , Animais , Células Receptoras Sensoriais , Neurônios Motores/fisiologia , Gânglios Espinais , Regeneração Nervosa/fisiologia
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