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1.
Brain Res Bull ; 177: 305-315, 2021 12.
Artigo em Inglês | MEDLINE | ID: mdl-34687776

RESUMO

Dynamic regulation of G-protein-coupled receptor (GPCR) kinase 2 (GRK2) expression restores cellular function by protecting from overstimulation via GPCR and non-GPCR signaling. In the primary afferent neurons, GRK2 negatively regulates nociceptive tone. The present study tested the hypothesis that induction of GRK2 in the primary afferent neurons contributes to the resolution of acute pain after tissue injury. GRK2 expression in the dorsal root ganglion (DRG) was analyzed at 1 and 7 days after the incision. Intraperitoneal administration of a GRK2 inhibitor was performed 7 days post-incision in male Sprague-Dawley rats who underwent plantar incisions to analyze the pain-related behavioral effect of the GRK2 inhibitor. Separately, GRK2 expression was analyzed after injecting insulin-like growth factor 1 (IGF1) into the rat hind paw. In addition, an IGF1 receptor (IGF1R) inhibitor was administered in the plantar incision rats to determine its effect on the incision-induced hyperalgesia and GRK2 expression. Plantar incision induced an increase in GRK2 in the DRG at 7 days, but not at 1 day post-incision. Acute hyperalgesia after the plantar incision disappeared by 7 days post-incision. Intraperitoneal injection of the GRK2 inhibitor at this time reinstated mechanical hyperalgesia, although the GRK2 inhibitor did not produce hyperalgesia in naive rats. After the incision, IGF1 expression increased in the paw, but not in the DRG. Intraplantar injection of IGF1 increased GRK2 expression in the ipsilateral DRG. IGF1R inhibitor administration prevented both the induction of GRK2 and resolution of hyperalgesia after the plantar incision. These findings demonstrate that induction of GRK2 expression driven by tissue IGF1 has potent analgesic effects and produces resolution of hyperalgesia after tissue injury. Dysregulation of IGF1-GRK2 signaling could potentially lead to failure of the spontaneous resolution of acute pain and, hence, development of chronic pain after surgery.


Assuntos
Quinase 2 de Receptor Acoplado a Proteína G , Hiperalgesia , Fator de Crescimento Insulin-Like I , Neurônios Aferentes , Animais , Quinase 2 de Receptor Acoplado a Proteína G/metabolismo , Gânglios Espinais/efeitos dos fármacos , Gânglios Espinais/enzimologia , Gânglios Espinais/metabolismo , Hiperalgesia/tratamento farmacológico , Hiperalgesia/metabolismo , Fator de Crescimento Insulin-Like I/metabolismo , Fator de Crescimento Insulin-Like I/farmacologia , Masculino , Neurônios Aferentes/efeitos dos fármacos , Neurônios Aferentes/enzimologia , Neurônios Aferentes/metabolismo , Ratos , Ratos Sprague-Dawley
2.
Proc Natl Acad Sci U S A ; 118(4)2021 01 26.
Artigo em Inglês | MEDLINE | ID: mdl-33468661

RESUMO

Axon degeneration is an active program of self-destruction mediated by the protein SARM1. In healthy neurons, SARM1 is autoinhibited and, upon injury autoinhibition is relieved, activating the SARM1 enzyme to deplete NAD+ and induce axon degeneration. SARM1 forms a homomultimeric octamer with each monomer composed of an N-terminal autoinhibitory ARM domain, tandem SAM domains that mediate multimerization, and a C-terminal TIR domain encoding the NADase enzyme. Here we discovered multiple intramolecular and intermolecular domain interfaces required for SARM1 autoinhibition using peptide mapping and cryo-electron microscopy (cryo-EM). We identified a candidate autoinhibitory region by screening a panel of peptides derived from the SARM1 ARM domain, identifying a peptide mediating high-affinity inhibition of the SARM1 NADase. Mutation of residues in full-length SARM1 within the region encompassed by the peptide led to loss of autoinhibition, rendering SARM1 constitutively active and inducing spontaneous NAD+ and axon loss. The cryo-EM structure of SARM1 revealed 1) a compact autoinhibited SARM1 octamer in which the TIR domains are isolated and prevented from oligomerization and enzymatic activation and 2) multiple candidate autoinhibitory interfaces among the domains. Mutational analysis demonstrated that five distinct interfaces are required for autoinhibition, including intramolecular and intermolecular ARM-SAM interfaces, an intermolecular ARM-ARM interface, and two ARM-TIR interfaces formed between a single TIR and two distinct ARM domains. These autoinhibitory regions are not redundant, as point mutants in each led to constitutively active SARM1. These studies define the structural basis for SARM1 autoinhibition and may enable the development of SARM1 inhibitors that stabilize the autoinhibited state.


Assuntos
Proteínas do Domínio Armadillo/química , Proteínas do Citoesqueleto/química , Gânglios Espinais/enzimologia , NAD/química , Neurônios/enzimologia , Peptídeos/metabolismo , Sequência de Aminoácidos , Animais , Proteínas do Domínio Armadillo/antagonistas & inibidores , Proteínas do Domínio Armadillo/genética , Proteínas do Domínio Armadillo/metabolismo , Sítios de Ligação , Microscopia Crioeletrônica , Proteínas do Citoesqueleto/antagonistas & inibidores , Proteínas do Citoesqueleto/genética , Proteínas do Citoesqueleto/metabolismo , Gânglios Espinais/citologia , Expressão Gênica , Células HEK293 , Humanos , Camundongos , Camundongos Knockout , Modelos Moleculares , Mutação , NAD/metabolismo , Neurônios/citologia , Peptídeos/síntese química , Cultura Primária de Células , Ligação Proteica , Conformação Proteica em alfa-Hélice , Conformação Proteica em Folha beta , Domínios e Motivos de Interação entre Proteínas , Multimerização Proteica , Proteínas Recombinantes/química , Proteínas Recombinantes/genética , Proteínas Recombinantes/metabolismo , Alinhamento de Sequência , Homologia de Sequência de Aminoácidos
3.
Eur J Pharmacol ; 883: 173306, 2020 Sep 15.
Artigo em Inglês | MEDLINE | ID: mdl-32603693

RESUMO

Chemotherapy-induced peripheral neuropathy is a serious adverse effect of chemotherapeutic agents such as paclitaxel. JTC-801, a nociceptin/orphanin FQ opioid peptide (NOP) receptor antagonist, has been reported to attenuate neuropathic pain in several pain models. However, the therapeutic significance and function of JTC-801 in chemotherapy-induced peripheral neuropathy remain unclear. In this study, we determined the effect of JTC-801 on neuropathic pain induced by paclitaxel, and we explored the potential mechanism in the dorsal root ganglion (DRG). The behavioral test showed that single or multiple systemic administrations of JTC-801 significantly alleviated mechanical allodynia in paclitaxel-treated rats. Using Western blot analysis and immunohistochemistry, we found that paclitaxel increased the expression of phosphatidylinositol 3-kinase (PI3K) and phospho-Akt (p-Akt) in the DRG. Double immunofluorescence staining indicated that p-Akt was expressed in neurons in the DRG. Multiple injections of JTC-801 significantly inhibited the activation of Akt and decreased the expression of inflammatory cytokines. The data suggest that JTC-801 alleviates mechanical allodynia associated with paclitaxel-induced neuropathic pain via the PI3K/Akt pathway.


Assuntos
Aminoquinolinas/farmacologia , Analgésicos/farmacologia , Benzamidas/farmacologia , Gânglios Espinais/efeitos dos fármacos , Hiperalgesia/prevenção & controle , Antagonistas de Entorpecentes/farmacologia , Neuralgia/prevenção & controle , Limiar da Dor/efeitos dos fármacos , Fosfatidilinositol 3-Quinase/metabolismo , Proteínas Proto-Oncogênicas c-akt/metabolismo , Animais , Comportamento Animal/efeitos dos fármacos , Modelos Animais de Doenças , Gânglios Espinais/enzimologia , Gânglios Espinais/fisiopatologia , Hiperalgesia/induzido quimicamente , Hiperalgesia/enzimologia , Hiperalgesia/fisiopatologia , Mediadores da Inflamação/metabolismo , Interleucina-1beta/metabolismo , Masculino , Neuralgia/induzido quimicamente , Neuralgia/enzimologia , Neuralgia/fisiopatologia , Paclitaxel , Fosforilação , Ratos Sprague-Dawley , Receptores Opioides/efeitos dos fármacos , Receptores Opioides/metabolismo , Transdução de Sinais , Fator de Necrose Tumoral alfa/metabolismo , Receptor de Nociceptina
4.
Spine (Phila Pa 1976) ; 44(15): E865-E872, 2019 Aug 01.
Artigo em Inglês | MEDLINE | ID: mdl-30817738

RESUMO

STUDY DESIGN: Animal experiment: a rat model of lumbar disc herniation (LDH) induced painful radiculopathies. OBJECTIVE: To investigate the role and mechanism of AMP-activated protein kinase (AMPK) in dorsal root ganglia (DRG) neurons in LDH-induced painful radiculopathies. SUMMARY OF BACKGROUND DATA: Overactivation of multiple pain signals in DRG neurons triggered by LDH is crucial to the development of radicular pain. AMPK is recognized as a cellular energy sensor, as well as a pain sensation modulator, but its function in LDH-induced pain hypersensitivity remains largely unknown. METHODS: The LDH rat model was established by autologous nucleus pulposus transplantation into the right lumbar 5 (L5) nerve root. At different time points after AMPK agonist metformin (250 mg/kg/d) or mammalian target of rapamycin (mTOR) inhibitor rapamycin (5 mg/kg) intraperitoneal administration, thermal and mechanical sensitivity were evaluated by measuring paw withdrawal latency (PWL) and 50% paw withdrawal thresholds (PWT). The levels of AMPK, mTOR, and p70S6K phosphorylation were determined by Western blot. We also investigated the proportion of p-AMPK positive neurons in the right L5 DRG neurons using immunofluorescence. RESULTS: LDH evoked persistent thermal hyperalgesia and mechanical allodynia on the ipsilateral paw, as indicated by the decreased PWL and 50% PWT. These pain hypersensitive behaviors were accompanied with significant inhibition of AMPK and activation of mTOR in the associated DRG neurons. Pharmacological activation of AMPK in the DRG neurons not only suppressed mTOR/p70S6K signaling, but also alleviated LDH-induced pain hypersensitive behaviors. CONCLUSION: We provide a molecular mechanism for the activation of pain signals based on AMPK-mTOR axis, as well as an intervention strategy by targeting AMPK-mTOR axis in LDH-induced painful radiculopathies. LEVEL OF EVIDENCE: N/A.


Assuntos
Proteínas Quinases Ativadas por AMP/metabolismo , Gânglios Espinais/metabolismo , Hiperalgesia/metabolismo , Degeneração do Disco Intervertebral/metabolismo , Deslocamento do Disco Intervertebral/metabolismo , Radiculopatia/metabolismo , Proteínas Quinases S6 Ribossômicas 70-kDa/antagonistas & inibidores , Serina-Treonina Quinases TOR/antagonistas & inibidores , Animais , Modelos Animais de Doenças , Gânglios Espinais/enzimologia , Hiperalgesia/enzimologia , Degeneração do Disco Intervertebral/enzimologia , Deslocamento do Disco Intervertebral/enzimologia , Masculino , Metformina/farmacologia , Neurônios/enzimologia , Neurônios/metabolismo , Núcleo Pulposo/enzimologia , Núcleo Pulposo/metabolismo , Dor/enzimologia , Dor/metabolismo , Fosforilação , Radiculopatia/enzimologia , Ratos , Ratos Wistar , Proteínas Quinases S6 Ribossômicas 70-kDa/metabolismo , Transdução de Sinais , Sirolimo/farmacologia , Raízes Nervosas Espinhais/enzimologia , Raízes Nervosas Espinhais/metabolismo , Serina-Treonina Quinases TOR/metabolismo
5.
Neurosci Lett ; 694: 215-219, 2019 02 16.
Artigo em Inglês | MEDLINE | ID: mdl-30528878

RESUMO

Synergistic expression of cyclooxygenase-2 (COX-2) by interleukin-1ß (IL-1ß) and bradykinin (BK) in peri-sensory neurons results in the production of prostanoids, which affects sensory neuronal activity and responsiveness and causes hyperalgesia. To evaluate the effects of pro-inflammatory mediators on COX-2 expression, cultured rat dorsal root ganglion (DRG) cells were treated with IL-1ß and BK, which caused persistent increased COX-2 expression. Co-treatment increased COX-2 transcriptional activities in an additive manner by a COX-2 promoter luciferase assay. Immunoprecipitated HuR, an RNA-binding protein, in co-treated DRG cells contained more COX-2 mRNA than that of the control. The synergistic effects of IL-1ß and BK on COX-2 expression may be a result of RNA stabilization mediated by HuR in peri-sensory neurons. Multiple pro-inflammatory cytokines and mediators are produced during neurogenic inflammation and aberrant control of COX-2 mRNA turnover may be implicated in diseases including chronic inflammation, which results in inflammation-derived hyperalgesia around primary sensory neurons.


Assuntos
Bradicinina/metabolismo , Ciclo-Oxigenase 2/metabolismo , Proteína Semelhante a ELAV 1/metabolismo , Gânglios Espinais/enzimologia , Interleucina-1beta/metabolismo , Animais , Bradicinina/administração & dosagem , Células Cultivadas , Gânglios Espinais/efeitos dos fármacos , Interleucina-1beta/administração & dosagem , Masculino , RNA Mensageiro/metabolismo , Ratos Wistar
6.
Neurosci Lett ; 692: 16-22, 2019 01 23.
Artigo em Inglês | MEDLINE | ID: mdl-30366013

RESUMO

cAMP (Cyclic Adenosine monophosphate), one of the most highly studied second messengers, is regulated by a family of adenylyl cyclase (AC) enzymes. Type 3 adenylyl cyclase (abbreviated as AC3), a subtype of adenylyl cyclase, is reported to be expressed in cilia in the olfactory and central nervous system and plays an important role in many physiological functions such as olfaction, development. However, expression of AC3 in the dorsal root ganglion (DRG) is not reported. In the present study, using immunohistochemical method, we discovered that AC3 immunoreactivity (IR) is predominantly expressed in the cytoplasm of small to medium sized DRG neurons. Double labelling revealed that the majority of AC3 IR are colocalized with CGRP (a peptidergic nociceptor marker), rarely with NF200 (a myelinated neuronal marker) or IB4 (a nonpeptidergic nociceptor marker). Furthermore, dense AC3 IR exists in the superficial dorsal horn, especially in laminaⅠand dorsal part of lamina II, where CGRP-positive DRG neurons terminate. The expression pattern of AC3 is similar between C57/BL6 J mouse and Sprague Dawley rat. For instance, AC3 is primarily expressed in the cell bodies of small to medium sized DRG neurons and the majority of AC3 IR is also in CGRP-containing neurons in rat. Taken together, our data suggest that AC3 is primarily expressed in the small to medium sized cell bodies and central terminals of CGRP-positive DRG neurons, implying AC3 enzyme might potentially function in nociception.


Assuntos
Adenilil Ciclases/análise , Gânglios Espinais/enzimologia , Neurônios Aferentes/enzimologia , Terminações Pré-Sinápticas/enzimologia , Animais , Peptídeo Relacionado com Gene de Calcitonina/análise , Masculino , Camundongos Endogâmicos C57BL , Ratos Sprague-Dawley , Especificidade da Espécie
7.
Mol Neurobiol ; 55(9): 7463-7475, 2018 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-29427084

RESUMO

Chemotherapy-induced peripheral neuropathy (CIPN) is a dose-limiting complication which develops as a consequence of treatment with chemotherapeutic agents like oxaliplatin and is a mainstay of therapy for colorectal cancer. Ever since CIPN was identified, understanding its exact pathomechanisms remains a clinical challenge. The role of mitochondrial dysfunction and glial cell activation has surfaced in the etiology of CIPN. Rosmarinic acid (RA), a known mitoprotectant exerts neuroprotection against the oxidative stress and neuroinflammation in various disease conditions. Hence, in the present study, we investigated the effect using rosmarinic acid (25 and 50 mg/kg, po) in the experimental model of oxaliplatin-induced peripheral neuropathy (OIPN) in rats. Results showed that RA significantly (p < 0.001) prevented the functional deficits, reversed oxaliplatin-induced mechanical allodynia and cold hyperalgesia in rats. It reduced the oxidative stress, improved the mitochondrial function, and prevented the oxaliplatin-induced loss of ATP levels. RA significantly (p < 0.01) inhibited the spinal glial cell activation and suppressed the expression of inflammatory markers. RA treatment also resulted in the activation of adenosine monophosphate-activated protein kinase (AMPK) in the peripheral nerves and dorsal root ganglion (DRG) which also might have contributed to its neuroprotective actions. In vitro screening also revealed that RA did not compromise the anti-cancer activity of oxaliplatin in colon cancer cells (HT-29). Taken together, the above results demonstrate the therapeutic activity of RA against the oxaliplatin-induced mitochondrial dysfunction and neuroinflammation and thus, suggest its potential for the management of OIPN. Graphical Abstract Schematic representation of neuroprotective mechanisms of rosmarinic acid via AMPK activation in oxaliplatin-evoked peripheral neuropathy.


Assuntos
Cinamatos/uso terapêutico , Depsídeos/uso terapêutico , Mitocôndrias/metabolismo , Neuralgia/tratamento farmacológico , Neuroglia/patologia , Oxaliplatina/efeitos adversos , Doenças do Sistema Nervoso Periférico/induzido quimicamente , Doenças do Sistema Nervoso Periférico/tratamento farmacológico , Medula Espinal/patologia , Adenilato Quinase/metabolismo , Animais , Antineoplásicos/efeitos adversos , Antioxidantes/farmacologia , Comportamento Animal/efeitos dos fármacos , Linhagem Celular , Cinamatos/farmacologia , Fragmentação do DNA/efeitos dos fármacos , Depsídeos/farmacologia , Ativação Enzimática/efeitos dos fármacos , Gânglios Espinais/efeitos dos fármacos , Gânglios Espinais/enzimologia , Gânglios Espinais/patologia , Homeostase , Humanos , Inflamação/patologia , Peroxidação de Lipídeos/efeitos dos fármacos , Masculino , Malondialdeído/metabolismo , Potencial da Membrana Mitocondrial/efeitos dos fármacos , Camundongos , Neuralgia/complicações , Neuralgia/patologia , Neuritos/efeitos dos fármacos , Neuritos/metabolismo , Neurogênese/efeitos dos fármacos , Neuroglia/efeitos dos fármacos , Neuroglia/metabolismo , Nitritos/metabolismo , Doenças do Sistema Nervoso Periférico/complicações , Doenças do Sistema Nervoso Periférico/patologia , Ratos Sprague-Dawley , Nervo Isquiático/efeitos dos fármacos , Nervo Isquiático/enzimologia , Nervo Isquiático/patologia , Ácido Rosmarínico
8.
Nat Cell Biol ; 20(3): 307-319, 2018 03.
Artigo em Inglês | MEDLINE | ID: mdl-29434374

RESUMO

Reactive oxygen species (ROS) contribute to tissue damage and remodelling mediated by the inflammatory response after injury. Here we show that ROS, which promote axonal dieback and degeneration after injury, are also required for axonal regeneration and functional recovery after spinal injury. We find that ROS production in the injured sciatic nerve and dorsal root ganglia requires CX3CR1-dependent recruitment of inflammatory cells. Next, exosomes containing functional NADPH oxidase 2 complexes are released from macrophages and incorporated into injured axons via endocytosis. Once in axonal endosomes, active NOX2 is retrogradely transported to the cell body through an importin-ß1-dynein-dependent mechanism. Endosomal NOX2 oxidizes PTEN, which leads to its inactivation, thus stimulating PI3K-phosporylated (p-)Akt signalling and regenerative outgrowth. Challenging the view that ROS are exclusively involved in nerve degeneration, we propose a previously unrecognized role of ROS in mammalian axonal regeneration through a NOX2-PI3K-p-Akt signalling pathway.


Assuntos
Axônios/enzimologia , Exossomos/enzimologia , Gânglios Espinais/enzimologia , NADPH Oxidase 2/metabolismo , Degeneração Neural , Regeneração Nervosa , Traumatismos dos Nervos Periféricos/enzimologia , Espécies Reativas de Oxigênio/metabolismo , Nervo Isquiático/enzimologia , Traumatismos da Medula Espinal/enzimologia , Animais , Axônios/patologia , Receptor 1 de Quimiocina CX3C/metabolismo , Linhagem Celular , Modelos Animais de Doenças , Dineínas/metabolismo , Endocitose , Endossomos/enzimologia , Endossomos/patologia , Exossomos/patologia , Gânglios Espinais/lesões , Gânglios Espinais/patologia , Macrófagos/enzimologia , Macrófagos/patologia , Camundongos Endogâmicos C57BL , Camundongos Knockout , NADPH Oxidase 2/deficiência , NADPH Oxidase 2/genética , Proteínas Nucleares/metabolismo , PTEN Fosfo-Hidrolase/metabolismo , Traumatismos dos Nervos Periféricos/genética , Traumatismos dos Nervos Periféricos/patologia , Traumatismos dos Nervos Periféricos/fisiopatologia , Fosfatidilinositol 3-Quinase/metabolismo , Proteínas Proto-Oncogênicas c-akt/metabolismo , Nervo Isquiático/lesões , Nervo Isquiático/patologia , Nervo Isquiático/fisiopatologia , Transdução de Sinais , Traumatismos da Medula Espinal/genética , Traumatismos da Medula Espinal/patologia , Traumatismos da Medula Espinal/fisiopatologia , beta Carioferinas
9.
J Neurosci ; 37(48): 11758-11768, 2017 11 29.
Artigo em Inglês | MEDLINE | ID: mdl-29089436

RESUMO

Peripheral pain signaling reflects a balance of pronociceptive and antinociceptive influences; the contribution by the gastrointestinal microbiota to this balance has received little attention. Disorders, such as inflammatory bowel disease and irritable bowel syndrome, are associated with exaggerated visceral nociceptive actions that may involve altered microbial signaling, particularly given the evidence for bacterial dysbiosis. Thus, we tested whether a community of commensal gastrointestinal bacteria derived from a healthy human donor (microbial ecosystem therapeutics; MET-1) can affect the excitability of male mouse DRG neurons. MET-1 reduced the excitability of DRG neurons by significantly increasing rheobase, decreasing responses to capsaicin (2 µm) and reducing action potential discharge from colonic afferent nerves. The increase in rheobase was accompanied by an increase in the amplitude of voltage-gated K+ currents. A mixture of bacterial protease inhibitors abrogated the effect of MET-1 effects on DRG neuron rheobase. A serine protease inhibitor but not inhibitors of cysteine proteases, acid proteases, metalloproteases, or aminopeptidases abolished the effects of MET-1. The serine protease cathepsin G recapitulated the effects of MET-1 on DRG neurons. Inhibition of protease-activated receptor-4 (PAR-4), but not PAR-2, blocked the effects of MET-1. Furthermore, Faecalibacterium prausnitzii recapitulated the effects of MET-1 on excitability of DRG neurons. We conclude that serine proteases derived from commensal bacteria can directly impact the excitability of DRG neurons, through PAR-4 activation. The ability of microbiota-neuronal interactions to modulate afferent signaling suggests that therapies that induce or correct microbial dysbiosis may impact visceral pain.SIGNIFICANCE STATEMENT Commercially available probiotics have the potential to modify visceral pain. Here we show that secretory products from gastrointestinal microbiota derived from a human donor signal to DRG neurons. Their secretory products contain serine proteases that suppress excitability via activation of protease-activated receptor-4. Moreover, from this community of commensal microbes, Faecalibacterium prausnitzii strain 16-6-I 40 fastidious anaerobe agar had the greatest effect. Our study suggests that therapies that induce or correct microbial dysbiosis may affect the excitability of primary afferent neurons, many of which are nociceptive. Furthermore, identification of the bacterial strains capable of suppressing sensory neuron excitability, and their mechanisms of action, may allow therapeutic relief for patients with gastrointestinal diseases associated with pain.


Assuntos
Gânglios Espinais/enzimologia , Microbioma Gastrointestinal/fisiologia , Granzimas/administração & dosagem , Neurônios/enzimologia , Simbiose/fisiologia , Animais , Gânglios Espinais/efeitos dos fármacos , Gânglios Espinais/microbiologia , Microbioma Gastrointestinal/efeitos dos fármacos , Humanos , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Neurônios/efeitos dos fármacos , Neurônios/microbiologia , Peptídeo Hidrolases/administração & dosagem , Simbiose/efeitos dos fármacos
10.
Sci Rep ; 7(1): 5262, 2017 07 12.
Artigo em Inglês | MEDLINE | ID: mdl-28701796

RESUMO

T-type calcium channels are intimately involved in the local anesthetics neurotoxicity. Does CaMKIIγ regulate T-type calcium currents in local anesthetics neurotoxicity? This study generated pAd-CaMKIIγ and pAd-shRNA adenovirus vectors to up- and down-regulate CaMKIIγ mRNA expression in dorsal root ganglion neurons (DRG). Normal DRG (Normal group), empty vector DRG (Empty vector group), pAd-CaMKIIγ DRG (pAd-CaMKIIγ group) and pAd-shRNA DRG (pAd-shRNA group) were treated or untreated with 3 mM ropivacaine hydrochloride for 4 h. Cell viability, apoptosis rate, CaMKIIγ, pCaMKIIγ, Cav3.2, and Cav3.3 expression were detected. Ultrastructural changes in DRG were observed under a transmission electron microscope. The results demonstrated that the cell viability of DRG treated with ropivacaine hydrochloride decreased markedly, the apoptosis rate, CaMKIIγ, pCaMKIIγ, Cav3.2, Cav3.3 expression increased significantly. CaMKIIγ up-regulation aggravated ropivacaine hydrochloride-induced cell damage and increased Cav3.2 and Cav3.3 expression. In conclusion, CaMKIIγ regulated Cav3.2 and Cav3.3 expression in DRG, which was involved with ropivacaine hydrochloride-induced cell injury.


Assuntos
Anestésicos Locais/toxicidade , Proteína Quinase Tipo 2 Dependente de Cálcio-Calmodulina/antagonistas & inibidores , Gânglios Espinais/efeitos dos fármacos , Neurônios/efeitos dos fármacos , Síndromes Neurotóxicas/prevenção & controle , Substâncias Protetoras/farmacologia , Ropivacaina/toxicidade , Animais , Animais Recém-Nascidos , Apoptose , Proteína Quinase Tipo 2 Dependente de Cálcio-Calmodulina/genética , Células Cultivadas , Regulação para Baixo , Gânglios Espinais/enzimologia , Gânglios Espinais/patologia , Neurônios/enzimologia , Neurônios/patologia , Síndromes Neurotóxicas/enzimologia , Síndromes Neurotóxicas/etiologia , Síndromes Neurotóxicas/patologia , RNA Interferente Pequeno , Ratos , Ratos Sprague-Dawley
11.
Mol Pain ; 13: 1744806917719169, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28714350

RESUMO

Background Calpain is a calcium-dependent cysteine protease, and inhibition of calpain by pre-treatment with MDL28170 attenuated the rat mechanical allodynia in a variety of pain models. Postherpetic neuralgia (Shingles) is a neuropathic pain conditioned with the presence of profound mechanical allodynia. Systemic injection of resiniferatoxin can reproduce the clinical symptoms of postherpetic neuralgia. In this study, we determined to study whether activation of calpain contributes to cleave the myelin basic protein of dorsal root and is involved in resiniferatoxin-induced mechanical allodynia of postherpetic neuralgia animal model. Results Resiniferatoxin up-regulated the expression and activation of µ-calpain in dorsal root. The expression of µ-calpain was located in Schwann cell of dorsal root, and resiniferatoxin increased the expression of µ-calpain in Schwann cell in L4-L6 dorsal root at six weeks after injection. Resiniferatoxin also induced myelin basic protein degradation in L4-L6 dorsal root at six weeks after injection. Moreover, intraperitoneal injection of calpain inhibitor MDL28170 prevented the degradation of myelin basic protein and then reduced the sprouting of myelinated afferent fibers into spinal lamina II, thus relieving resiniferatoxin-induced mechanical allodynia. Conclusions Up-regulation and activation of µ-calpain located in Schwann cell may be the mechanism underlying resiniferatoxin-mediated proteolysis of myelin basic protein in dorsal root. Calpain inhibitor MDL28170 prevents resiniferatoxin-induced sprouting of myelinated afferent fibers and mechanical allodynia through inhibition of degradation of the myelin basic protein in dorsal root. Our results indicate that inhibition of pathological µ-calpain activation may present an interesting novel drug target in the treatment of postherpetic neuralgia.


Assuntos
Calpaína/metabolismo , Gânglios Espinais/enzimologia , Gânglios Espinais/patologia , Hiperalgesia/enzimologia , Hiperalgesia/patologia , Animais , Biomarcadores/metabolismo , Dipeptídeos/farmacologia , Diterpenos/administração & dosagem , Ativação Enzimática/efeitos dos fármacos , Vértebras Lombares/patologia , Masculino , Proteína Básica da Mielina/metabolismo , Bainha de Mielina/metabolismo , Neurônios Aferentes/efeitos dos fármacos , Neurônios Aferentes/metabolismo , Isoformas de Proteínas/metabolismo , Proteólise/efeitos dos fármacos , Ratos , Ratos Sprague-Dawley , Células de Schwann/efeitos dos fármacos , Células de Schwann/enzimologia , Regulação para Cima/efeitos dos fármacos
12.
Mamm Genome ; 28(9-10): 407-415, 2017 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-28547032

RESUMO

Carbonic anhydrase-8 (Car8 mouse gene symbol) is devoid of enzymatic activity, but instead functions as an allosteric inhibitor of inositol trisphosphate receptor-1 (ITPR1) to regulate this intracellular calcium release channel important in synaptic functions and neuronal excitability. Causative mutations in ITPR1 and carbonic anhydrase-8 in mice and humans are associated with certain subtypes of spinal cerebellar ataxia (SCA). SCA mice are genetically deficient in dorsal root ganglia (DRG) Car8 expression and display mechanical and thermal hypersensitivity and susceptibility to subacute and chronic inflammatory pain behaviors. In this report, we show that DRG Car8 expression is variable across 25 naïve-inbred strains of mice, and this cis-regulated eQTL (association between rs27660559, rs27706398, and rs27688767 and DRG Car8 expression; P < 1 × 10-11) is correlated with nociceptive responses in mice. Next, we hypothesized that increasing DRG Car8 gene expression would inhibit intracellular calcium release required for morphine antinociception and might correlate with antinociceptive sensitivity of morphine and perhaps other analgesic agents. We show that mean DRG Car8 gene expression is directly related to the dose of morphine or clonidine needed to provide a half-maximal analgesic response (r = 0.93, P < 0.00002; r = 0.83, P < 0.0008, respectively), suggesting that greater DRG Car8 expression increases analgesic requirements. Finally, we show that morphine induces intracellular free calcium release using Fura 2 calcium imaging in a dose-dependent manner; V5-Car8 WT overexpression in NBL cells inhibits morphine-induced calcium increase. These findings highlight the 'morphine paradox' whereby morphine provides antinociception by increasing intracellular free calcium, while Car8 and other antinociceptive agents work by decreasing intracellular free calcium. This is the first study demonstrating that biologic variability associated with this cis-eQTL may contribute to differing analgesic responses through altered regulation of ITPR1-dependent calcium release in mice.


Assuntos
Analgésicos/farmacologia , Biomarcadores Tumorais/genética , Gânglios Espinais/enzimologia , Regulação da Expressão Gênica/genética , Variação Genética/efeitos dos fármacos , Proteínas do Tecido Nervoso/genética , Medição da Dor/efeitos dos fármacos , Locos de Características Quantitativas/genética , (trans)-Isômero de 3,4-dicloro-N-metil-N-(2-(1-pirrolidinil)-ciclo-hexil)-benzenoacetamida/farmacologia , Animais , Cálcio/metabolismo , Clonidina/farmacologia , Relação Dose-Resposta a Droga , Variação Genética/genética , Estudo de Associação Genômica Ampla , Masculino , Camundongos , Morfina/farmacologia , Variantes Farmacogenômicos , Sequências Reguladoras de Ácido Nucleico/genética
13.
Oncotarget ; 8(10): 16988-17001, 2017 Mar 07.
Artigo em Inglês | MEDLINE | ID: mdl-28199982

RESUMO

Treatment of remifentanil-induced postoperative hyperalgesia (RIH) remains a clinical challenge because the mechanisms are not fully understood. Matrix metalloproteinase-9 (MMP-9) is a key component in neuroinflammation because of its facilitation of pro-inflammatory cytokine maturation. Therefore, inhibition of MMP-9 may represent a novel therapeutic approach to the treatment of RIH. Sprague-Dawley rats were randomly divided into three groups: Control, Incision and Remifentanil. A right plantar surgical incision was performed in Group Incision, and intraoperative remifentanil (0.04 mg/kg, 0.4 ml) was infused subcutaneously for 30 min in Group Remifentanil. The results indicated that intraoperative remifentanil induced an up-regulation and activation of MMP-9 in DRGs but not spinal cords. MMP-9 was expressed primarily in DRG neurons co-expressing mu opioid receptors (MOR), and elicited interleukin-1ß (IL-1ß) cleavage in DRG neurons and satellite glial cells (SGCs). Intraperitoneal injection of N-acetyl-cysteine (NAC), a broadly used safe drug, significantly attenuated RIH via suppressing the activation of MMP-9 in DRGs. NAC inhibited the cleavage of IL-1ß in DRGs, which is a critical substrate of MMP-9, and markedly suppressed glial activation and neuron excitability in spinal dorsal horn induced by remifentanil. These results demonstrated that NAC can effectively alleviate RIH via powerfully inhibiting MMP-9 activation in DRGs.


Assuntos
Acetilcisteína/farmacologia , Gânglios Espinais/efeitos dos fármacos , Hiperalgesia/prevenção & controle , Metaloproteinase 9 da Matriz/metabolismo , Acetilcisteína/administração & dosagem , Analgésicos Opioides/administração & dosagem , Analgésicos Opioides/toxicidade , Animais , Western Blotting , Ativação Enzimática/efeitos dos fármacos , Sequestradores de Radicais Livres/administração & dosagem , Sequestradores de Radicais Livres/farmacologia , Gânglios Espinais/enzimologia , Gânglios Espinais/metabolismo , Hiperalgesia/induzido quimicamente , Infusões Subcutâneas , Injeções Intraperitoneais , Masculino , Proteínas Quinases Ativadas por Mitógeno/metabolismo , Medição da Dor/métodos , Fosforilação/efeitos dos fármacos , Piperidinas/administração & dosagem , Piperidinas/toxicidade , Período Pós-Operatório , Proteína Quinase C/metabolismo , Ratos Sprague-Dawley , Receptores de N-Metil-D-Aspartato/metabolismo , Remifentanil
14.
J Cell Biol ; 216(2): 477-493, 2017 02.
Artigo em Inglês | MEDLINE | ID: mdl-28053206

RESUMO

Macroautophagy is a catabolic process, in which portions of cytoplasm or organelles are delivered to lysosomes for degradation. Emerging evidence has indicated a pathological connection between axonal degeneration and autophagy. However, the physiological function and induction mechanism of autophagy in axons remain elusive. We herein show that, through activation of BECLIN1, glycogen synthase kinase 3B (GSK3B)-mediated phosphorylation of BCL2 family member MCL1 induces axonal autophagy and axonal degeneration. Phosphorylated MCL1 is ubiquitinated by the FBXW7 ubiquitin ligase and degraded by the proteasome, thereby releasing BECLIN1 to induce axonal autophagy. Axonal autophagy contributes to local adenosine triphosphate production in degenerating axons and the exposure of phosphatidylserine-an "eat-me" signal for phagocytes-on transected axons and is required for normal recruitment of phagocytes to axonal debris in vivo. These results suggest that GSK3B-MCL1 signaling to regulate autophagy might be important for the successful completion of Wallerian degeneration.


Assuntos
Autofagia , Axônios/enzimologia , Gânglios Espinais/enzimologia , Glicogênio Sintase Quinase 3 beta/metabolismo , Proteína de Sequência 1 de Leucemia de Células Mieloides/metabolismo , Degeneração Walleriana , Trifosfato de Adenosina/metabolismo , Animais , Axônios/patologia , Proteína Beclina-1/metabolismo , Células Cultivadas , Proteínas F-Box/metabolismo , Proteína 7 com Repetições F-Box-WD , Gânglios Espinais/patologia , Glicogênio Sintase Quinase 3 beta/genética , Proteínas de Fluorescência Verde/genética , Proteínas de Fluorescência Verde/metabolismo , Camundongos Endogâmicos C57BL , Camundongos Transgênicos , Proteína de Sequência 1 de Leucemia de Células Mieloides/genética , Fagócitos/metabolismo , Fagocitose , Fosfatidilserinas/metabolismo , Fosforilação , Complexo de Endopeptidases do Proteassoma/metabolismo , Proteólise , Interferência de RNA , Transdução de Sinais , Fatores de Tempo , Transfecção , Ubiquitina-Proteína Ligases/metabolismo , Ubiquitinação
15.
Biomed Res Int ; 2017: 8176089, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28133612

RESUMO

Tang-luo-ning (TLN) is a traditional Chinese herbal recipe for treating diabetic peripheral neuropathy (DPN). In this study, we investigated mitochondrial protein profiles in a diabetic rat model and explored the potential protective effect of TLN. Diabetic rats were established by injection of streptozocin (STZ) and divided into model, alpha lipoic acid (ALA), and TLN groups. Mitochondrial proteins were isolated from dorsal root ganglia and proteomic analysis was used to quantify the differentially expressed proteins. Tang-luo-ning mitigated STZ-induced diabetic symptoms and blood glucose level, including response time to cold or hot stimulation and nerve conductive velocity. As compared to the normal, there were 388 differentially expressed proteins in the TLN group, 445 in ALA group, and 451 in model group. As compared to the model group, there were 275 differential proteins in TLN group and 251 in ALA group. As compared to model group, mitochondrial complex III was significantly decreased, while glutathione peroxidase and peroxidase were increased in TLN group. When compared with ALA group, the mitochondrial complex III was increased, and mitochondrial complex IV was decreased in TLN group. Together, TLN should have a strong antioxidative activity, which appears to be modulated through regulation of respiratory complexes and antioxidases.


Assuntos
Diabetes Mellitus Experimental/tratamento farmacológico , Medicamentos de Ervas Chinesas/uso terapêutico , Gânglios Espinais/enzimologia , Mitocôndrias/enzimologia , Oxirredutases/metabolismo , Proteômica/métodos , Animais , Glicemia/metabolismo , Cromatografia por Troca Iônica , Diabetes Mellitus Experimental/sangue , Diabetes Mellitus Experimental/fisiopatologia , Modelos Animais de Doenças , Medicamentos de Ervas Chinesas/farmacologia , Gânglios Espinais/efeitos dos fármacos , Hemoglobinas Glicadas/metabolismo , Masculino , Espectrometria de Massas , Mitocôndrias/efeitos dos fármacos , Proteínas Mitocondriais/metabolismo , Condução Nervosa/efeitos dos fármacos , Peptídeos/metabolismo , Ratos Sprague-Dawley , Estreptozocina , Ácido Tióctico/farmacologia , Ácido Tióctico/uso terapêutico
16.
Artif Cells Nanomed Biotechnol ; 45(6): 1-7, 2017 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-27685016

RESUMO

CaMKIIγ in dorsal root ganglion neurons is closely related to the neuropathic pain, neuron injury induced by local anesthetics. To get great insight into the function of CaMKIIγ in dorsal root ganglion neurons, we need one cell model to specially inhibit the CaMKIIγ mRNA expression. The present study was aimed to establish one cell model to specially inhibit the CaMKIIγ mRNA expression. We designed the CaMKIIγ shRNA sequence and connected with pYr-1.1 plasmid. The ligation product of the CaMKIIγshRNA and pYr-1.1 plasmid was recombined with pAd/PL-DEST vector into pAD-CaMKIIγ-shRNA. adenovirus vector. pAD-CaMKIIγ-shRNA. adenovirus vector infected the dorsal root ganglion neuron to inhibit the CaMKIIγ mRNA expression in vitro. The pAD-CaMKIIγ-shRNA adenovirus vector was verified to be correct by the digestion, sequence. And pAD-CaMKIIγ-shRNA. adenovirus vector can infect the DRG cells to inhibit the CaMKIIγ mRNA or protein expression by the real-time polymerase chain reaction (PCR) or western blotting. Those results showed that we successfully constructed one adenovirus vector that can infect the dorsal root ganglion neuron to inhibit the CaMKIIγ mRNA and protein expression. That will supply with one cell model for the CaMKIIγ function study.


Assuntos
Adenoviridae , Proteína Quinase Tipo 2 Dependente de Cálcio-Calmodulina/biossíntese , Gânglios Espinais/enzimologia , Regulação Enzimológica da Expressão Gênica , Modelos Biológicos , Neurônios/enzimologia , Interferência de RNA , RNA Mensageiro/biossíntese , RNA Interferente Pequeno/biossíntese , Transdução Genética , Animais , Proteína Quinase Tipo 2 Dependente de Cálcio-Calmodulina/genética , Gânglios Espinais/citologia , Neurônios/citologia , RNA Mensageiro/genética , RNA Interferente Pequeno/genética , Ratos
17.
J BUON ; 21(2): 466-72, 2016.
Artigo em Inglês | MEDLINE | ID: mdl-27273935

RESUMO

PURPOSE: To investigate the effects of music therapy on the pain behaviors and survival of rats with bone cancer pain and analyze the mediating mechanism of mitogen activated protein kinase (MAPK) signal transduction pathway. METHODS: Male Wistar rats aged 5-8 weeks and weighing 160-200 g were collected. The rat models of colorectal cancer bone cancer pain was successfully established. Animals were divided into experimental and control group, each with 10 rats. The animals in the observation group were given Mozart K448 sonata, sound intensity of 60 db, played the sonata once every 1 hr in the daytime, stopped playing during the night, and this cycle was kept for 2 weeks. On the other hand, rats in the control group were kept under the same environment without music. RESULTS: Animals in the experimental group consumed more feed and gained significant weight in comparison to the control group. The tumor volume of the experimental group was significantly smaller than that of the control group (p<0.05). After 1-2 weeks of treatment, spontaneous foot withdrawal reflection caused by pain in the experimental group was significantly lower than that in the control group, heat pain threshold and free walking pain scoring in the experimental group were also significantly higher as compared with the control group (p<0.05). The expression of p38á and p38ß in animals' spinal cord and dorsal root ganglion was significantly lower in the experimental group than in the control group (p< 0.05). CONCLUSION: Music therapy may improve the pain behaviors in rats with bone cancer pain, which might be related with low expression of p38á and p38ß in the MAPK signal transduction pathway.


Assuntos
Comportamento Animal , Neoplasias Ósseas/complicações , Musicoterapia , Manejo da Dor/métodos , Percepção da Dor , Dor/prevenção & controle , Animais , Neoplasias Ósseas/secundário , Linhagem Celular Tumoral , Neoplasias Colorretais/patologia , Modelos Animais de Doenças , Ingestão de Alimentos , Gânglios Espinais/enzimologia , Gânglios Espinais/fisiopatologia , Masculino , Camundongos , Dor/enzimologia , Dor/etiologia , Dor/psicologia , Ratos Wistar , Transdução de Sinais , Medula Espinal/enzimologia , Medula Espinal/fisiopatologia , Carga Tumoral , Aumento de Peso , Proteínas Quinases p38 Ativadas por Mitógeno/metabolismo
18.
J Neurosci ; 36(5): 1660-8, 2016 Feb 03.
Artigo em Inglês | MEDLINE | ID: mdl-26843647

RESUMO

Little is known about intracellular signaling mechanisms that persistently excite neurons in pain pathways. Persistent spontaneous activity (SA) generated in the cell bodies of primary nociceptors within dorsal root ganglia (DRG) has been found to make major contributions to chronic pain in a rat model of spinal cord injury (SCI) (Bedi et al., 2010; Yang et al., 2014). The occurrence of SCI-induced SA in a large fraction of DRG neurons and the persistence of this SA long after dissociation of the neurons provide an opportunity to define intrinsic cell signaling mechanisms that chronically drive SA in pain pathways. The present study demonstrates that SCI-induced SA requires continuing activity of adenylyl cyclase (AC) and cAMP-dependent protein kinase (PKA), as well as a scaffolded complex containing AC5/6, A-kinase anchoring protein 150 (AKAP150), and PKA. SCI caused a small but significant increase in the expression of AKAP150 but not other AKAPs. DRG membranes isolated from SCI animals revealed a novel alteration in the regulation of AC. AC activity stimulated by Ca(2+)-calmodulin increased, while the inhibition of AC activity by Gαi showed an unexpected and dramatic decrease after SCI. Localized enhancement of the activity of AC within scaffolded complexes containing PKA is likely to contribute to chronic pathophysiological consequences of SCI, including pain, that are promoted by persistent hyperactivity in DRG neurons. SIGNIFICANCE STATEMENT: Chronic neuropathic pain is a major clinical problem with poorly understood mechanisms and inadequate treatments. Recent findings indicate that chronic pain in a rat SCI model depends upon hyperactivity in dorsal root ganglia (DRG) neurons. Although cAMP signaling is involved in many forms of neural plasticity, including hypersensitivity of nociceptors in the presence of inflammatory mediators, our finding that continuing cAMP-PKA signaling is required for persistent SA months after SCI and long after isolation of nociceptors is surprising. The dependence of ongoing SA upon AKAP150 and AC5/6 was unknown. The discovery of a dramatic decrease in Gαi inhibition of AC activity after SCI is novel for any physiological system and potentially has broad implications for understanding chronic pain mechanisms.


Assuntos
Potenciais de Ação/fisiologia , Adenilil Ciclases/fisiologia , Proteínas Quinases Dependentes de AMP Cíclico/fisiologia , Gânglios Espinais/enzimologia , Nociceptores/fisiologia , Traumatismos da Medula Espinal/enzimologia , Proteínas de Ancoragem à Quinase A/farmacologia , Potenciais de Ação/efeitos dos fármacos , Animais , Células Cultivadas , Gânglios Espinais/efeitos dos fármacos , Masculino , Ratos , Traumatismos da Medula Espinal/patologia , Alicerces Teciduais
19.
Mol Pain ; 11: 69, 2015 Nov 13.
Artigo em Inglês | MEDLINE | ID: mdl-26567040

RESUMO

BACKGROUND: Peripheral cold neuropathic pain is a serious side effect of oxaliplatin treatment. However, the mechanism of oxaliplatin-induced cold hyperalgesia is unknown. In the present study, we investigated the effects of oxaliplatin on transient receptor potential ankyrin 1 (TRPA1) in dorsal root ganglion (DRG) neurons of rats. RESULTS: Behavioral assessment using the acetone spray test showed that 3 and 6 mg/kg oxaliplatin (i.p.) induced acute cold hypersensitivity after 1, 2, 4, and 7 days. Real-time PCR showed that oxaliplatin (6 mg/kg) significantly increased TRPA1 mRNA expression in DRGs at days 1, 2, and 4. Western blotting revealed that oxaliplatin significantly increased TRPA1 protein expression in DRGs at days 2, 4, and 7. Moreover, in situ hybridization histochemistry revealed that most TRPA1 mRNA-labeled neurons in the DRGs were small in size. Oxaliplatin significantly increased co-localization of TRPA1 expression and isolectin B4 binding in DRG neurons. Oxaliplatin induced a significant increase in the percent of TRPA1 mRNA-positive small neurons in DRGs at days 1, 2, and 4. In addition, we found that intrathecal administration of TRPA1 antisense, but not TRPA1 mismatched oligodeoxynucleotides, knocked down TRPA1 expression and decreased oxaliplatin-induced cold hyperalgesia. Double labeling showed that p-p38 mitogen-activated protein kinase (MAPK) was co-expressed in TRPA1 mRNA-labeled neurons at day 2 after oxaliplatin administration. Intrathecal administration of the p38 MAPK inhibitor, SB203580, significantly decreased oxaliplatin-induced acute cold hypersensitivity. CONCLUSIONS: Together, these results demonstrate that TRPA1 expression via activation of p38 MAPK in DRG neurons, at least in part, contributes to the development of oxaliplatin-induced acute cold hyperalgesia.


Assuntos
Síndromes Periódicas Associadas à Criopirina/induzido quimicamente , Gânglios Espinais/efeitos dos fármacos , Regulação da Expressão Gênica/efeitos dos fármacos , Neurônios/efeitos dos fármacos , Canais de Cátion TRPC/genética , Canais de Cátion TRPC/metabolismo , Proteínas Quinases p38 Ativadas por Mitógeno/metabolismo , Doença Aguda , Animais , Síndromes Periódicas Associadas à Criopirina/enzimologia , Síndromes Periódicas Associadas à Criopirina/fisiopatologia , Gânglios Espinais/enzimologia , Gânglios Espinais/fisiopatologia , Imidazóis/farmacologia , Masculino , Inibidores de Proteínas Quinases/farmacologia , Piridinas/farmacologia , Ratos , Canal de Cátion TRPA1 , Proteínas Quinases p38 Ativadas por Mitógeno/genética
20.
Neuroscience ; 310: 342-53, 2015 Dec 03.
Artigo em Inglês | MEDLINE | ID: mdl-26386295

RESUMO

Ambulatory instability and falls are a major source of morbidity in the elderly. Age-related loss of tendon reflexes is a major contributing factor to this morbidity, and deterioration of the afferent limb of the stretch reflex is a potential contributing factor to such age-dependent loss of tendon reflexes. To evaluate this, we assessed the number and distribution of muscle spindle afferent fibers in human sacral spinal ganglia (S1) and tibial nerve samples obtained at autopsy, using immunohistochemical staining for the α3 isoform of Na(+), K(+)-ATPase (α3NKA), a marker of muscle spindle afferents. Across all age groups, an average of 26 ± 4% of myelinated fibers of tibial nerve and 17 ± 2% of ganglion neuronal profiles were α3NKA-positive (n = 8 per group). Subject age explained 85% of the variability in these counts. The relative frequency of α3NKA-labeled fibers/neurons starts to decline during the 5th decade of life, approaching half that of young adult values in 65-year-old subjects. At all ages, α3NKA-positive neurons were among the largest of spinal ganglia neurons. However, as compared to younger subjects, the population of α3NKA-positive neurons from advanced-age subjects showed diminished numbers of large (both moderately and strongly labeled), and medium-sized (strongly labeled) profiles. Considering the critical significance of ion transport by NKA for neuronal activity, our data suggest that functional impairment and, also, most likely atrophy and/or degeneration of muscle spindle afferents, are mechanisms underlying loss of tendon reflexes with age. The larger and more strongly α3NKA-expressing spindle afferents appear to be proportionally more vulnerable.


Assuntos
Envelhecimento , Gânglios Espinais/enzimologia , Fusos Musculares/enzimologia , Neurônios/enzimologia , ATPase Trocadora de Sódio-Potássio/metabolismo , Nervo Tibial/enzimologia , Adulto , Idoso , Idoso de 80 Anos ou mais , Axônios/enzimologia , Membrana Celular/enzimologia , Feminino , Humanos , Isoenzimas , Masculino , Pessoa de Meia-Idade , Adulto Jovem
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