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1.
Glia ; 71(3): 541-559, 2023 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-36321558

RESUMO

NOX4 is a major reactive oxygen species-producing enzyme that modulates cell stress responses. We here examined the effect of Nox4 deletion on demyelination-remyelination, the most common pathological change in the brain. We used a model of cuprizone (CPZ)-associated demyelination-remyelination in wild-type and Nox4-deficient (Nox4-/- ) mice. While the CPZ-induced demyelination in the corpus callosum after 4 weeks of CPZ intoxication was slightly less pronounced in Nox4-/- mice than that in wild-type mice, remyelination following CPZ withdrawal was significantly enhanced in Nox4-/- mice with an increased accumulation of IBA1-positive microglia/macrophages in the demyelinating corpus callosum. Consistently, locomotor function, as assessed by the beam walking test, was significantly better during the remyelination phase in Nox4-/- mice. Nox4 deletion did not affect autonomous growth of primary-culture oligodendrocyte precursor cells. Although Nox4 expression was higher in cultured macrophages than in microglia, Nox4-/- microglia and macrophages both showed enhanced phagocytic capacity of myelin debris and produced increased amounts of trophic factors upon phagocytosis. The expression of trophic factors was higher, in parallel with the accumulation of IBA1-positive cells, in the corpus callosum in Nox4-/- mice than that in wild-type mice. Nox4 deletion suppressed phagocytosis-induced increase in mitochondrial membrane potential, enhancing phagocytic capacity of macrophages. Treatment with culture medium of Nox4-/- macrophages engulfing myelin debris, but not that of Nox4-/- astrocytes, enhanced cell growth and expression of myelin-associated proteins in cultured oligodendrocyte precursor cells. Collectively, Nox4 deletion promoted remyelination after CPZ-induced demyelination by enhancing microglia/macrophage-mediated clearance of myelin debris and the production of trophic factors leading to oligodendrogenesis.


Assuntos
Doenças Desmielinizantes , Remielinização , Animais , Camundongos , Microglia/metabolismo , Cuprizona/toxicidade , Doenças Desmielinizantes/patologia , Bainha de Mielina/metabolismo , Macrófagos/metabolismo , Corpo Caloso/patologia , Proteínas da Mielina/metabolismo , Camundongos Endogâmicos C57BL , Oligodendroglia/metabolismo , Modelos Animais de Doenças , NADPH Oxidase 4/metabolismo
2.
J Stroke Cerebrovasc Dis ; 29(5): 104597, 2020 May.
Artigo em Inglês | MEDLINE | ID: mdl-32057655

RESUMO

We report a 58-year-old woman who suddenly developed brain infarction with weakness of the left lower extremity and left perioral dysesthesia during postoperative tamoxifen therapy for breast cancer and prednisolone therapy for rheumatoid arthritis. Diffusion-weighted images detected multiple areas of hyperintensity in the posterior circulation system of the brain. Despite extensive examinations, we could not identify any embolic sources except hypoplasia of the right vertebral artery. We found decreased activity of protein C against its antigen level (activity: 59% versus antigen: 122%) with enhanced activity of coagulation factor VIII (178%) and von Willebrand factor (285%). DNA sequencing identified trinucleotide deletion of the PROC gene leading to 1 amino acid deletion at Lys-193 (p.Lys193del). We speculate that the PROC gene polymorphism may have participated in tamoxifen- and prednisolone- associated hypercoagulable state, leading to development of an embolic stroke in this patient.


Assuntos
Coagulação Sanguínea/genética , Embolia Intracraniana/etiologia , Deficiência de Proteína C/genética , Proteína C/genética , Deleção de Sequência , Acidente Vascular Cerebral/etiologia , Anticoagulantes/uso terapêutico , Antineoplásicos Hormonais/efeitos adversos , Coagulação Sanguínea/efeitos dos fármacos , Feminino , Predisposição Genética para Doença , Glucocorticoides/efeitos adversos , Humanos , Embolia Intracraniana/sangue , Embolia Intracraniana/diagnóstico por imagem , Embolia Intracraniana/tratamento farmacológico , Metilprednisolona/efeitos adversos , Pessoa de Meia-Idade , Fármacos Neuroprotetores/uso terapêutico , Fenótipo , Deficiência de Proteína C/sangue , Deficiência de Proteína C/complicações , Deficiência de Proteína C/diagnóstico , Recidiva , Fatores de Risco , Acidente Vascular Cerebral/sangue , Acidente Vascular Cerebral/diagnóstico por imagem , Acidente Vascular Cerebral/tratamento farmacológico , Tamoxifeno/efeitos adversos , Resultado do Tratamento
3.
Brain Res ; 1718: 201-211, 2019 09 01.
Artigo em Inglês | MEDLINE | ID: mdl-31103522

RESUMO

The timing of anti-coagulation therapy initiation after acute cardioembolic stroke remains controversial. We investigated the effects of post-stroke administration of a factor Xa inhibitor in mice, focusing on tissue repair and functional restoration outcomes. We initiated administration of rivaroxaban, a Xa inhibitor, immediately after permanent distal middle cerebral artery occlusion (pMCAO) in CB-17 mice harboring few leptomeningeal anastomoses at baseline. Rivaroxaban initiated immediately after pMCAO hindered the recovery of blood flow in ischemic areas by inhibiting leptomeningeal anastomosis development, and led to impaired restoration of neurologic functions with less extensive peri-infarct astrogliosis. Within infarct areas, angiogenesis and fibrotic responses were attenuated in rivaroxaban-fed mice. Furthermore, inflammatory responses, including the accumulation of neutrophils and monocytes/macrophages, local secretion of pro-inflammatory cytokines, and breakdown of the blood-brain barrier, were enhanced in infarct areas in mice treated immediately with rivaroxaban following pMCAO. The detrimental effects were not found when rivaroxaban was initiated after transient MCAO or on day 7 after pMCAO. Collectively, early post-stroke initiation of a factor Xa inhibitor may suppress leptomeningeal anastomosis development and blood flow recovery in ischemic areas, thereby resulting in attenuated tissue repair and functional restoration unless occluded large arteries are successfully recanalized.


Assuntos
Rivaroxabana/metabolismo , Acidente Vascular Cerebral/tratamento farmacológico , Animais , Barreira Hematoencefálica/efeitos dos fármacos , Isquemia Encefálica/fisiopatologia , Modelos Animais de Doenças , Fator Xa/metabolismo , Inibidores do Fator Xa/metabolismo , Inibidores do Fator Xa/farmacologia , Fibrinolíticos/farmacologia , Infarto da Artéria Cerebral Média/metabolismo , Infarto da Artéria Cerebral Média/fisiopatologia , Masculino , Camundongos , Rivaroxabana/farmacologia , Acidente Vascular Cerebral/fisiopatologia , Fatores de Tempo
4.
Neuroscience ; 398: 193-205, 2019 02 01.
Artigo em Inglês | MEDLINE | ID: mdl-30528855

RESUMO

Reactive oxygen species (ROS) modulate the growth of neural stem/precursor cells (NS/PCs) and participate in hippocampus-associated learning and memory. However, the origin of these regulatory ROS in NS/PCs is not fully understood. In the present study, we found that Nox4, a ROS-producing NADPH oxidase family protein, is expressed in primary cultured NS/PCs and in those of the adult mouse brain. Nox inhibitors VAS 2870 and GKT137831 or Nox4 deletion attenuated bFGF-induced proliferation of cultured NS/PCs, while lentivirus-mediated Nox4 overexpression increased the production of H2O2, the phosphorylation of Akt, and the proliferation of cultured NS/PCs. Nox4 did not significantly affect the potential of cultured NS/PCs to differentiate into neurons or astrocytes. The histological and functional development of the hippocampus appeared normal in Nox4-/- mice. Although pathological and functional damages in the hippocampus induced by the neurotoxin trimethyltin were not significantly different between wild-type and Nox4-/- mice, the post-injury reactive proliferation of NS/PCs and neurogenesis in the subgranular zone (SGZ) of the dentate gyrus were significantly impaired in Nox4-/- animals. Restoration from the trimethyltin-induced impairment in recognition and spatial working memory was also significantly attenuated in Nox4-/- mice. Collectively, our findings suggest that Nox4 participates in NS/PC proliferation and neurogenesis in the hippocampus following injury, thereby helping to restore memory function.


Assuntos
Proliferação de Células/fisiologia , Hipocampo/metabolismo , NADPH Oxidase 4/metabolismo , Células-Tronco Neurais/metabolismo , Neurogênese/fisiologia , Animais , Astrócitos/efeitos dos fármacos , Astrócitos/metabolismo , Proliferação de Células/efeitos dos fármacos , Células Cultivadas , Hipocampo/efeitos dos fármacos , Peróxido de Hidrogênio/metabolismo , Aprendizagem/efeitos dos fármacos , Aprendizagem/fisiologia , Masculino , Memória/efeitos dos fármacos , Memória/fisiologia , Transtornos da Memória/induzido quimicamente , Transtornos da Memória/metabolismo , Camundongos Endogâmicos C57BL , Camundongos Knockout , NADPH Oxidase 2/metabolismo , NADPH Oxidase 4/genética , Células-Tronco Neurais/efeitos dos fármacos , Neurogênese/efeitos dos fármacos , Neurônios/efeitos dos fármacos , Neurônios/metabolismo , Neurotoxinas , Compostos de Trimetilestanho
5.
Free Radic Res ; 52(1): 92-102, 2018 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-29228832

RESUMO

Excessive DNA damage induced by ionising radiation (IR) to normal tissue cells is known to trigger cellular senescence, a process termed stress-induced premature senescence (SIPS). SIPS is often accompanied by the production of reactive oxygen species (ROS), and this is reported to be important for the initiation and maintenance of SIPS. However, the source of ROS during SIPS after IR and their significance in radiation-induced normal tissue damage remain elusive. In the present study, we tested the hypothesis that the NADPH oxidase (NOX) family of proteins mediates ROS production in SIPS-induced cells after IR and plays a role in SIPS-associated biological events. X-irradiation of primary mouse embryonic fibroblasts (MEFs) resulted in cellular senescence and the concomitant increase of intracellular ROS. Among all six murine NOX isoforms (NOX1-4 and DUOX1/2), only NOX4 was detectable under basal conditions and was upregulated following IR. In addition, radiation-induced ROS production was diminished by genetic or pharmacological inhibition of NOX4. Meanwhile, NOX4 deficiency did not affect the induction of cellular senescence after IR. Furthermore, the migration of human monocytic U937 cells to the culture medium collected from irradiated MEFs was significantly reduced by NOX4 inhibition, suggesting that NOX4 promotes the recruitment of inflammatory cells. Collectively, our findings imply that NOX4 mediates ROS production in radiation-induced senescent cells and contributes to normal tissue damage after IR via the recruitment of inflammatory cells and the exacerbation of tissue inflammation.


Assuntos
Senescência Celular/fisiologia , Inflamação/metabolismo , NADPH Oxidase 4/metabolismo , Espécies Reativas de Oxigênio/metabolismo , Movimento Celular , Células Cultivadas , Humanos , Estresse Oxidativo
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