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1.
Int J Mol Sci ; 25(19)2024 Oct 06.
Artigo em Inglês | MEDLINE | ID: mdl-39409085

RESUMO

With the aging of the global population, neurodegenerative diseases are emerging as a major public health issue. The adoption of a less sedentary lifestyle has been shown to have a beneficial effect on cognitive decline, but the molecular mechanisms responsible are less clear. Here we provide a detailed analysis of the complex molecular, cellular, and systemic mechanisms underlying age-related cognitive decline and how lifestyle choices influence these processes. A review of the evidence from animal models, human studies, and postmortem analyses emphasizes the importance of integrating physical exercise with cognitive, multisensory, and motor stimulation as part of a multifaceted approach to mitigating cognitive decline. We highlight the potential of these non-pharmacological interventions to address key aging hallmarks, such as genomic instability, telomere attrition, and neuroinflammation, and underscore the need for comprehensive and personalized strategies to promote cognitive resilience and healthy aging.


Assuntos
Exercício Físico , Comportamento Sedentário , Humanos , Animais , Envelhecimento , Disfunção Cognitiva/etiologia , Disfunção Cognitiva/metabolismo , Instabilidade Genômica
2.
Mol Cell Neurosci ; 125: 103861, 2023 06.
Artigo em Inglês | MEDLINE | ID: mdl-37182572

RESUMO

During Alzheimer's (AD), tau protein suffers from abnormal post-translational modifications, including cleaving by caspase-3. These tau forms affect synaptic plasticity contributing to the cognitive decline observed in the early stages of AD. In addition, caspase-3 cleaved tau (TauC3) impairs mitochondrial dynamics and organelles transport, which are both relevant processes for synapse. We recently showed that the absence of tau expression reverts age-associated cognitive and mitochondrial failure by blocking the mitochondrial permeability transition pore (mPTP). mPTP is a mitochondrial complex involved in calcium regulation and apoptosis. Therefore, we studied the effects of TauC3 against the dendritic spine and synaptic vesicle formation and the possible role of mPTP in these alterations. We used mature hippocampal mice neurons to express a reporter protein (GFP, mCherry), coupled to full-length human tau protein (GFP-T4, mCherry-T4), and coupled to human tau protein cleaved at D421 by caspase-3 (GFP-T4C3, mCherry-T4C3) and synaptic elements were evaluated. Treatment with cyclosporine A (CsA), an immunosuppressive drug with inhibitory activity on mPTP, prevented ROS increase and mitochondrial depolarization induced by TauC3 in hippocampal neurons. These results were corroborated with immortalized cortical neurons in which ROS increase and ATP loss induced by this tau form were prevented by CsA. Interestingly, TauC3 expression significantly reduced dendritic spine density (filopodia type) and synaptic vesicle number in hippocampal neurons. Also, neurons transfected with TauC3 showed a significant accumulation of synaptophysin protein in their soma. More importantly, all these synaptic alterations were prevented by CsA, suggesting an mPTP role in these negative changes derived from TauC3 expression.


Assuntos
Doença de Alzheimer , Proteínas tau , Camundongos , Humanos , Animais , Proteínas tau/metabolismo , Ciclosporina/farmacologia , Caspase 3/metabolismo , Espécies Reativas de Oxigênio , Apoptose , Doença de Alzheimer/metabolismo
3.
Front Mol Neurosci ; 14: 764756, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34858139

RESUMO

Autism spectrum disorders (ASD) is a heterogeneous group of neurodevelopmental disorders characterized by synaptic dysfunction and defects in dendritic spine morphology. In the past decade, an extensive list of genes associated with ASD has been identified by genome-wide sequencing initiatives. Several of these genes functionally converge in the regulation of the Wnt/ß-catenin signaling pathway, a conserved cascade essential for stem cell pluripotency and cell fate decisions during development. Here, we review current information regarding the transcriptional program of Wnt/ß-catenin signaling in ASD. First, we discuss that Wnt/ß-catenin gain and loss of function studies recapitulate brain developmental abnormalities associated with ASD. Second, transcriptomic approaches using patient-derived induced pluripotent stem cells (iPSC) cells, featuring mutations in high confidence ASD genes, reveal a significant dysregulation in the expression of Wnt signaling components. Finally, we focus on the activity of chromatin-remodeling proteins and transcription factors considered high confidence ASD genes, including CHD8, ARID1B, ADNP, and TBR1, that regulate Wnt/ß-catenin-dependent transcriptional activity in multiple cell types, including pyramidal neurons, interneurons and oligodendrocytes, cells which are becoming increasingly relevant in the study of ASD. We conclude that the level of Wnt/ß-catenin signaling activation could explain the high phenotypical heterogeneity of ASD and be instrumental in the development of new diagnostics tools and therapies.

4.
Handb Exp Pharmacol ; 269: 357-382, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34486097

RESUMO

The cellular processes regulated by WNT signaling have been mainly studied during embryonic development and cancer. In the last two decades, the role of WNT in the adult central nervous system has been the focus of interest in our laboratory. In this chapter, we will be summarized ß-catenin-dependent and -independent WNT pathways, then we will be revised WNT signaling function at the pre- and post-synaptic level. Concerning Alzheimer's disease (AD) initially, we found that WNT/ß-catenin signaling activation exerts a neuroprotective mechanism against the amyloid ß (Αß) peptide toxicity. Later, we found that WNT/ß-catenin participates in Tau phosphorylation and in learning and memory. In the last years, we demonstrated that WNT/ß-catenin signaling is instrumental in the amyloid precursor protein (APP) processing and that WNT/ß-catenin dysfunction results in Aß production and aggregation. We highlight the importance of WNT/ß-catenin signaling dysfunction in the onset of AD and propose that the loss of WNT/ß-catenin signaling is a triggering factor of AD. The WNT pathway is therefore positioned as a therapeutic target for AD and could be a valid concept for improving AD therapy. We think that metabolism and inflammation will be relevant when defining future research in the context of WNT signaling and the neurodegeneration associated with AD.


Assuntos
Doença de Alzheimer , Via de Sinalização Wnt , Doença de Alzheimer/tratamento farmacológico , Peptídeos beta-Amiloides , Precursor de Proteína beta-Amiloide , Humanos , Fosforilação
5.
Pharmaceuticals (Basel) ; 14(5)2021 05 01.
Artigo em Inglês | MEDLINE | ID: mdl-34062710

RESUMO

Frequently underestimated, encephalopathy or delirium are common neurological manifestations associated with sepsis. Brain dysfunction occurs in up to 80% of cases and is directly associated with increased mortality and long-term neurocognitive consequences. Although the central nervous system (CNS) has been classically viewed as an immune-privileged system, neuroinflammation is emerging as a central mechanism of brain dysfunction in sepsis. Microglial cells are major players in this setting. Here, we aimed to discuss the current knowledge on how the brain is affected by peripheral immune activation in sepsis and the role of microglia in these processes. This review focused on the molecular pathways of microglial activity in sepsis, its regulatory mechanisms, and their interaction with other CNS cells, especially with neuronal cells and circuits.

6.
Biol Res ; 51(1): 35, 2018 Sep 19.
Artigo em Inglês | MEDLINE | ID: mdl-30231926

RESUMO

BACKGROUND: The previous studies have demonstrated the reduction of thiamine diphosphate is specific to Alzheimer's disease (AD) and causal factor of brain glucose hypometabolism, which is considered as a neurodegenerative index of AD and closely correlates with the degree of cognitive impairment. The reduction of thiamine diphosphate may contribute to the dysfunction of synapses and neural circuits, finally leading to cognitive decline. RESULTS: To demonstrate this hypothesis, we established abnormalities in the glucose metabolism utilizing thiamine deficiency in vitro and in vivo, and we found dramatically reduced dendrite spine density. We further detected lowered excitatory neurotransmission and impaired hippocampal long-term potentiation, which are induced by TPK RNAi in vitro. Importantly, via treatment with benfotiamine, Aß induced spines density decrease was considerably ameliorated. CONCLUSIONS: These results revealed that thiamine deficiency contributed to synaptic dysfunction which strongly related to AD pathogenesis. Our results provide new insights into pathogenesis of synaptic and neuronal dysfunction in AD.


Assuntos
Doença de Alzheimer/etiologia , Doença de Alzheimer/metabolismo , Neurônios/fisiologia , Sinapses/fisiologia , Deficiência de Tiamina/complicações , Deficiência de Tiamina/metabolismo , Tiamina Pirofosfato/deficiência , Doença de Alzheimer/fisiopatologia , Peptídeos beta-Amiloides/metabolismo , Animais , Western Blotting , Espinhas Dendríticas/metabolismo , Difosfotransferases/metabolismo , Glucose/metabolismo , Hipocampo/metabolismo , Hipocampo/fisiopatologia , Masculino , Camundongos Endogâmicos C57BL , Distribuição Aleatória , Ratos Sprague-Dawley , Reação em Cadeia da Polimerase em Tempo Real , Transmissão Sináptica/fisiologia , Deficiência de Tiamina/fisiopatologia , Tiamina Pirofosfato/metabolismo
7.
Neural Regen Res ; 13(10): 1705-1710, 2018 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-30136680

RESUMO

Alzheimer's disease (AD) is the most common form of dementia in the older population, however, the precise cause of the disease is unknown. The neuropathology is characterized by the presence of aggregates formed by amyloid-ß (Aß) peptide and phosphorylated tau; which is accompanied by progressive impairment of memory. Diverse signaling pathways are linked to AD, and among these the Wnt signaling pathway is becoming increasingly relevant, since it plays essential roles in the adult brain. Initially, Wnt signaling activation was proposed as a neuroprotective mechanism against Aß toxicity. Later, it was reported that it participates in tau phosphorylation and processes of learning and memory. Interestingly, in the last years we demonstrated that Wnt signaling is fundamental in amyloid precursor protein (APP) processing and that Wnt dysfunction results in Aß production and aggregation in vitro. Recent in vivo studies reported that loss of canonical Wnt signaling exacerbates amyloid deposition in a transgenic (Tg) mouse model of AD. Finally, we showed that inhibition of Wnt signaling in a Tg mouse previously at the appearance of AD signs, resulted in memory loss, tau phosphorylation and Aß formation and aggregation; indicating that Wnt dysfunction accelerated the onset of AD. More importantly, Wnt signaling loss promoted cognitive impairment, tau phosphorylation and Aß1-42 production in the hippocampus of wild-type (WT) mice, contributing to the development of an Alzheimer's-like neurophatology. Therefore, in this review we highlight the importance of Wnt/ß-catenin signaling dysfunction in the onset of AD and propose that the loss of canonical Wnt signaling is a triggering factor of AD.

8.
Mol Neurobiol ; 55(5): 4473-4491, 2018 May.
Artigo em Inglês | MEDLINE | ID: mdl-28674997

RESUMO

In the young population, binge drinking is a pattern of problematic alcohol consumption, characterized by a short period of heavy drinking followed by abstinence which is frequently repeated over time. This drinking pattern is associated with mental problems, use of other drugs, and an increased risk of excessive alcohol intake during adulthood. However, little is known about the effects of binge drinking on brain function in adolescents and its neurobiological impact during the adulthood. In the present study, we evaluated the effects of alcohol on hippocampal memory, synaptic plasticity, and mitochondrial function in adolescent rats after a binge drinking episode in vivo. These effects were analyzed at 1, 3, or 7 weeks post alcohol exposure. Our results showed that binge-like ethanol pre-treated (BEP) rats exhibited early alterations in learning and memory tests accompanied by an impairment of synaptic plasticity that was total and partially compensated, respectively. These changes could be attributed to a rapid increase in oxidative damage and a late inflammatory response induced by post ethanol exposure. Additionally, BEP alters the regulation of mitochondrial dynamics and modifies the expression of mitochondrial permeability transition pore (mPTP) components, such as cyclophilin D (Cyp-D) and the voltage-dependent anion channel (VDAC). These mitochondrial structural changes result in the impairment of mitochondrial bioenergetics, decreasing ATP production progressively until adulthood. These results strongly suggest that teenage alcohol binge drinking impairs the function of the adult hippocampus including memory and synaptic plasticity as a consequence of the mitochondrial damage induced by alcohol and that the recovery of hippocampal function could implicate the activation of alternative pathways that fail to reestablish mitochondrial function.


Assuntos
Consumo Excessivo de Bebidas Alcoólicas/fisiopatologia , Encéfalo/fisiopatologia , Mitocôndrias/patologia , Trifosfato de Adenosina/biossíntese , Adolescente , Animais , Consumo Excessivo de Bebidas Alcoólicas/patologia , Encéfalo/patologia , Cognição , Fator de Transcrição de Proteínas de Ligação GA/metabolismo , Hipocampo/patologia , Hipocampo/fisiopatologia , Humanos , Inflamação/patologia , Inflamação/fisiopatologia , Masculino , Mitocôndrias/metabolismo , Dinâmica Mitocondrial , Proteínas de Transporte da Membrana Mitocondrial/metabolismo , Poro de Transição de Permeabilidade Mitocondrial , Estresse Oxidativo , Ratos , Ratos Sprague-Dawley , Transmissão Sináptica , Análise e Desempenho de Tarefas
9.
Biol. Res ; 51: 35, 2018. graf
Artigo em Inglês | LILACS | ID: biblio-983939

RESUMO

BACKGROUND: The previous studies have demonstrated the reduction of thiamine diphosphate is specific to Alzheimer's disease (AD) and causal factor of brain glucose hypometabolism, which is considered as a neurodegenerative index of AD and closely correlates with the degree of cognitive impairment. The reduction of thiamine diphosphate may contribute to the dysfunction of synapses and neural circuits, finally leading to cognitive decline. RESULTS: To demonstrate this hypothesis, we established abnormalities in the glucose metabolism utilizing thiamine deficiency in vitro and in vivo, and we found dramatically reduced dendrite spine density. We further detected lowered excitatory neurotransmission and impaired hippocampal long-term potentiation, which are induced by TPK RNAi in vitro. Importantly, via treatment with benfotiamine, Aß induced spines density decrease was considerably ameliorated. CONCLUSIONS: These results revealed that thiamine deficiency contributed to synaptic dysfunction which strongly related to AD pathogenesis. Our results provide new insights into pathogenesis of synaptic and neuronal dysfunction in AD.


Assuntos
Animais , Masculino , Sinapses/fisiologia , Deficiência de Tiamina/complicações , Deficiência de Tiamina/metabolismo , Tiamina Pirofosfato/deficiência , Doença de Alzheimer/etiologia , Doença de Alzheimer/metabolismo , Neurônios/fisiologia , Deficiência de Tiamina/fisiopatologia , Tiamina Pirofosfato/metabolismo , Distribuição Aleatória , Western Blotting , Peptídeos beta-Amiloides/metabolismo , Ratos Sprague-Dawley , Difosfotransferases/metabolismo , Transmissão Sináptica/fisiologia , Espinhas Dendríticas/metabolismo , Doença de Alzheimer/fisiopatologia , Reação em Cadeia da Polimerase em Tempo Real , Glucose/metabolismo , Hipocampo/fisiopatologia , Hipocampo/metabolismo , Camundongos Endogâmicos C57BL
10.
Front Cell Neurosci ; 11: 90, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28424592

RESUMO

Alcohol dependence causes physical, social, and moral harms and currently represents an important public health concern. According to the World Health Organization (WHO), alcoholism is the third leading cause of death worldwide, after tobacco consumption and hypertension. Recent epidemiologic studies have shown a growing trend in alcohol abuse among adolescents, characterized by the consumption of large doses of alcohol over a short time period. Since brain development is an ongoing process during adolescence, short- and long-term brain damage associated with drinking behavior could lead to serious consequences for health and wellbeing. Accumulating evidence indicates that alcohol impairs the function of different components of the melanocortin system, a major player involved in the consolidation of addictive behaviors during adolescence and adulthood. Here, we hypothesize the possible implications of melanocortins and glial cells in the onset and progression of alcohol addiction. In particular, we propose that alcohol-induced decrease in α-MSH levels may trigger a cascade of glial inflammatory pathways that culminate in altered gliotransmission in the ventral tegmental area and nucleus accumbens (NAc). The latter might potentiate dopaminergic drive in the NAc, contributing to increase the vulnerability to alcohol dependence and addiction in the adolescence and adulthood.

11.
Biochim Biophys Acta ; 1852(12): 2630-44, 2015 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-26391254

RESUMO

Alzheimer's disease (AD) is a neurodegenerative disorder characterized by hallmarks that include an accumulation of amyloid-ß peptide (Aß), inflammation, oxidative stress and synaptic dysfunction, which lead to a decrease in cognitive function. To date, the onset and progression of AD have been associated with pathologies such as hypertension and diabetes. Hypertension, a disease with a high incidence worldwide, is characterized by a chronic increase in blood pressure. Interestingly, this disease has a close relationship to the eating behavior of patients because high Na(+) intake is a significant risk factor for hypertension. In fact, a decrease in Na(+) consumption, along with an increase in K(+) intake, is a primary non-pharmacological approach to preventing hypertension. In the present work, we examined whether an increase in K(+) intake affects the expression of certain neuropathological markers or the cognitive performance of a murine model of AD. We observed that an increase in K(+) intake leads to a change in the aggregation pattern of the Aß peptide, a partial decrease in some epitopes of tau phosphorylation and improvement in the cognitive performance. The recovery in cognitive performance was correlated with a significant improvement in the generation of long-term potentiation. We also observed a decrease in markers related to inflammation and oxidative stress such as glial fibrillary acidic protein (GFAP), interleukin 6 (IL-6) and 4-hydroxynonenal (4-HNE). Together, our data support the idea that changes in diet, such as an increase in K(+) intake, may be important in the prevention of AD onset as a non-pharmacological therapy.

12.
J. bras. psiquiatr ; J. bras. psiquiatr;60(4): 321-330, 2011. ilus, graf
Artigo em Português | LILACS | ID: lil-612793

RESUMO

Objetivo: Fornecer uma revisão atualizada em língua portuguesa sobre a síndrome de Angelman, com ênfase nos mecanismos genéticos e moleculares dessa patologia, uma causa de deficiência mental severa que em alguns casos pode apresentar recorrência familiar. Método: Foi feita uma revisão bibliográfica utilizando a base de dados do PubMed, tendo como critérios de busca o termo "Angelman syndrome" isoladamente e combinado com "UBE3A", "clinical", "genetics" e "molecular" no título dos artigos. Dentre esses, foram selecionados artigos de revisão e artigos originais sobre a fisiopatologia da síndrome, com ênfase nos últimos dez anos. Resultados: Utilizando-se "Angelman syndrome" na busca, apareceram cerca de 1.100 artigos, incluindo 240 de revisão. Nos últimos dez anos são mais de 600 artigos, aproximadamente 120 de revisão, 50 por cento dos quais publicados nos últimos cinco anos. Na base de dados SciELO, são apenas nove artigos sobre a síndrome, dos quais três em português e nenhum artigo atual de revisão. Conclusão: Após ter sido uma das principais causas que atraíram atenção ao estudo e ao entendimento dos mecanismos do imprinting genômico, a síndrome de Angelman está agora se revelando como uma patologia das sinapses. Apesar de o entendimento da fisiopatologia molecular da síndrome de Angelman ainda estar longe de ser compreendida, seu estudo está fornecendo uma visão extraordinária sobre os mecanismos que regem a plasticidade sináptica, novamente atraindo a atenção de pesquisadores que trabalham na fronteira do conhecimento.


Objective: The aim of this work is to provide an actualized review in Portuguese language of the main clinical and behavioral features and in particular of the genetic and molecular aspects of Angelman syndrome, a cause of severe intellectual disability, which in rare cases can be recurrent in the family. Method: This paper is a literature review that used as a source of research, scientific papers with the terms "Angelman syndrome" or combined with UBE3A, clinical, genetics, and molecular in their title, retrieved trough the PubMed database. Among those, mainly review articles and original papers about cellular and molecular aspects of the pathology were selected, prioritarily, those published in the last ten years. Results: The term Angelman syndrome retrieved about 1100 papers, including close to 240 review articles. During the last ten years there were over 600 publications, with approximately 120 reviews, 50 percent of whom published in the last five years. The SciELO database was also searched and nine publications about the syndrome were found, three of which in Portuguese and no recent review article. Conclusion: After being one of the main causes to attract attention and stimulate studies to unravel the mechanisms of the genetic imprinting, Angelman syndrome is again in the spotlight because it is revealing itself as pathology of synaptic dysfunction. Albeit still long from understood, the molecular and cellular alterations in Angelman syndrome are allowing an extraordinary insight into the mechanisms which control synaptic plasticity.

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