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1.
Hum Exp Toxicol ; 40(7): 1095-1111, 2021 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-33375867

RESUMO

Sestrin2 (SESN2) is stress-inducible protein that confers cytoprotective effects against various noxious stimuli. Accumulating evidence has documented that SESN2 has potent anti-apoptosis and anti-oxidative stress functions. However, whether it provides neuroprotection in traumatic brain injury (TBI) models remains unexplored. The purpose of this study was to explore the regulatory effect of SESN2 on TBI using in vivo and in vitro models. We found that TBI resulted in a marked induction of SESN2 in the cerebral cortex tissues of mice. SESN2 overexpression in the brain by in vivo gene transfer significantly decreased neurological deficit, brain edema, and neuronal apoptosis of mice with TBI. Moreover, the overexpression of SESN2 significantly decreased the oxidative stress induced by TBI in mice. In vitro studies of TBI demonstrated that SESN2 overexpression decreased apoptosis and oxidative stress in scratch-injured cortical neurons. Notably, SESN2 overexpression increased the nuclear levels of nuclear factor-erythroid 2-related factor 2 (Nrf2) and enhanced the activation of Nrf2 antioxidant signaling in in vivo and in vitro models of TBI. In addition, the inhibition of Nrf2 significantly abolished SESN2-mediated neuroprotective effects in vivo and in vitro. In conclusion, these results of our work demonstrate that SESN2 protects against TBI by enhancing the activation of Nrf2 antioxidant signaling.


Assuntos
Apoptose/efeitos dos fármacos , Lesões Encefálicas Traumáticas/prevenção & controle , Fator 2 Relacionado a NF-E2/administração & dosagem , Fármacos Neuroprotetores , Proteínas Nucleares/administração & dosagem , Estresse Oxidativo/efeitos dos fármacos , Transdução de Sinais/efeitos dos fármacos , Animais , Células Cultivadas/efeitos dos fármacos , Humanos , Masculino , Camundongos , Modelos Animais
2.
Biometals ; 31(3): 425-443, 2018 06.
Artigo em Inglês | MEDLINE | ID: mdl-29748743

RESUMO

Among the properties of lactoferrin (LF) are bactericidal, antianemic, immunomodulatory, antitumour, antiphlogistic effects. Previously we demonstrated its capacity to stabilize in vivo HIF-1-alpha and HIF-2-alpha, which are redox-sensitive multiaimed transcription factors. Various tissues of animals receiving recombinant human LF (rhLF) responded by expressing the HIF-1-alpha target genes, hence such proteins as erythropoietin (EPO), ceruloplasmin, etc. were synthesized in noticeable amounts. Among organs in which EPO synthesis occurred were brain, heart, spleen, liver, kidneys and lungs. Other researchers showed that EPO can act as a protectant against severe brain injury and status epilepticus in rats. Therefore, we tried rhLF as a protector against the severe neurologic disorders developed in rats, such as the rotenone-induced model of Parkinson's disease and experimental autoimmune encephalomyelitis as a model of multiple sclerosis, and observed its capacity to mitigate the grave symptoms. Moreover, an intraperitoneal injection of rhLF into mice 1 h after occlusion of the medial cerebral artery significantly diminished the necrosis area measured on the third day in the ischaemic brain. During this period EPO was synthesized in various murine tissues. It was known that EPO induces nuclear translocation of Nrf2, which, like HIF-1-alpha, is a transcription factor. In view that under conditions of hypoxia both factors demonstrate a synergistic protective effect, we suggested that LF activates the Keap1/Nrf2 signaling pathway, an important link in proliferation and differentiation of normal and malignant cells. J774 macrophages were cultured for 3 days without or in the presence of ferric and ferrous ions (RPMI-1640 and DMEM/F12, respectively). Then cells were incubated with rhLF or Deferiprone. Confocal microscopy revealed nuclear translocation of Nrf2 (the key event in Keap1/Nrf2 signaling) induced by apo-rhLF (iron-free, RPMI-1640). The reference compound Deferiprone (iron chelator) had the similar effect. Upon iron binding (in DMEM/F12) rhLF did not activate the Keap1/Nrf2 pathway. Added to J774, apo-rhLF enhanced transcription of Nrf2-dependent genes coding for glutathione S-transferase P and heme oxygenase-1. Western blotting revealed presence of Nrf2 in mice brain after 6 days of oral administration of apo-rhLF, but not Fe-rhLF or equivalent amount of PBS. Hence, apo-LF, but not holo-LF, induces the translocation of Nrf2 from cytoplasm to the nucleus, probably due to its capacity to induce EPO synthesis.


Assuntos
Eritropoetina/metabolismo , Lactoferrina/metabolismo , Fator 2 Relacionado a NF-E2/metabolismo , Neuroproteção , Fármacos Neuroprotetores/uso terapêutico , Animais , Isquemia Encefálica/tratamento farmacológico , Encefalomielite Autoimune Experimental/induzido quimicamente , Encefalomielite Autoimune Experimental/tratamento farmacológico , Eritropoetina/administração & dosagem , Feminino , Humanos , Lactoferrina/administração & dosagem , Masculino , Camundongos , Camundongos Endogâmicos BALB C , Esclerose Múltipla/tratamento farmacológico , Fator 2 Relacionado a NF-E2/administração & dosagem , Fármacos Neuroprotetores/administração & dosagem , Fármacos Neuroprotetores/metabolismo , Doença de Parkinson/tratamento farmacológico , Ratos , Ratos Wistar , Proteínas Recombinantes/administração & dosagem , Proteínas Recombinantes/metabolismo
3.
Hum Gene Ther ; 27(2): 100-7, 2016 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-26838997

RESUMO

Key neuropathological hallmarks of Alzheimer's disease (AD) are extracellular amyloid plaques and intracellular accumulation of hyperphosphorylated Tau protein. The mechanisms underlying these neuropathological changes remain unclear. So far, research on AD therapy has had limited success in terms of symptomatic treatments although it has also had several failures for disease-modifying drugs. Gene transfer strategies to the brain have contributed to evaluate in animal models many interesting tracks, some of which should deserve clinical applications in AD patients in the future.


Assuntos
Doença de Alzheimer/terapia , Terapia Genética/métodos , Placa Amiloide/terapia , Doença de Alzheimer/genética , Doença de Alzheimer/patologia , Secretases da Proteína Precursora do Amiloide/administração & dosagem , Secretases da Proteína Precursora do Amiloide/genética , Animais , Anticorpos Neutralizantes/uso terapêutico , Apolipoproteínas E/administração & dosagem , Apolipoproteínas E/genética , Ácido Aspártico Endopeptidases/administração & dosagem , Ácido Aspártico Endopeptidases/genética , Encéfalo/metabolismo , Encéfalo/patologia , Fator Neurotrófico Derivado do Encéfalo/administração & dosagem , Fator Neurotrófico Derivado do Encéfalo/genética , Ensaios Clínicos como Assunto , Modelos Animais de Doenças , Progressão da Doença , Humanos , Lentivirus/genética , Fator 2 Relacionado a NF-E2/administração & dosagem , Fator 2 Relacionado a NF-E2/genética , Placa Amiloide/genética , Placa Amiloide/patologia , RNA Interferente Pequeno/administração & dosagem , RNA Interferente Pequeno/genética , Somatomedinas/administração & dosagem , Somatomedinas/genética
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