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1.
Theranostics ; 13(12): 4102-4120, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37554284

RESUMO

Rationale: Bilateral sonication with focused ultrasound (FUS) in conjunction with microbubbles has been shown to separately reduce amyloid plaques and hyperphosphorylated tau protein in the hippocampal formation and the entorhinal cortex in different mouse models of Alzheimer's disease (AD) without any therapeutic agents. However, the two pathologies are expressed concurrently in human disease. Therefore, the objective of this study is to investigate the effects of repeated bilateral sonications in the presence of both pathologies. Methods: Herein, we investigate its functional and morphological outcomes on brains bearing both pathologies simultaneously. Eleven transgenic mice of the 3xTg-AD line (14 months old) expressing human amyloid beta and human tau and eleven age-matched wild-type littermates received four weekly bilateral sonications covering the hippocampus followed by working memory testing. Afterwards, immunohistochemistry and immunoassays (western blot and ELISA) were employed to assess any changes in amyloid beta and human tau. Furthermore, we present preliminary data from our clinical trial using a neuronavigation-guided FUS system for sonications in AD patients (NCT04118764). Results: Interestingly, both wild-type and transgenic animals that received FUS experienced improved working memory and spent significantly more time in the escape platform-quadrant, with wild-type animals spending 43.2% (sham: 37.7%) and transgenic animals spending 35.3% (sham: 31.0%) of the trial in the target quadrant. Furthermore, this behavioral amelioration in the transgenic animals correlated with a 58.3% decrease in the neuronal length affected by tau and a 27.2% reduction in total tau levels. Amyloid plaque population, volume and overall load were also reduced overall. Consistently, preliminary data from a clinical trial involving AD patients showed a 1.8% decrease of amyloid PET signal 3-weeks after treatment in the treated hemisphere compared to baseline. Conclusion: For the first time, it is shown that bilateral FUS-induced BBB opening significantly and simultaneously ameliorates both coexistent pathologies, which translated to improvements in spatial memory of transgenic animals with complex AD, the human mimicking phenotype. The level of cognitive improvement was significantly correlated with the volume of BBB opening. Non-transgenic animals were also shown to exhibit similar memory amelioration for the first time, indicating that BBB opening results into benefits in the neuronal function regardless of the existence of AD pathology. A potential mechanism of action for the reduction of the both pathologies investigated was the cholesterol metabolism, specifically the LRP1b receptor, which exhibited increased expression levels in transgenic mice following FUS-induced BBB opening. Initial clinical evidence supported that the beta amyloid reduction shown in rodents could be translatable to humans with significant amyloid reduction shown in the treated hemisphere.


Assuntos
Doença de Alzheimer , Humanos , Camundongos , Animais , Recém-Nascido , Lactente , Doença de Alzheimer/metabolismo , Peptídeos beta-Amiloides/metabolismo , Memória Espacial , Encéfalo/metabolismo , Camundongos Transgênicos , Modelos Animais de Doenças
2.
Theranostics ; 9(18): 5396-5411, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-31410223

RESUMO

The neuropathological hallmarks of Alzheimer's disease include amyloid plaques and neurofibrillary tangles. Tau pathology correlates well with impaired neuronal activity and dementia. Focused ultrasound coupled with systemic administration of microbubbles has previously been shown to open the blood-brain barrier and induce an immune response, which, in an amyloid AD mouse model, resulted in the reduction of the amyloid brain load. Methods: In this study, we investigated the effect of focused ultrasound at the early stages of tau pathology (pre-tangle) in the rTg4510 mouse model. Results: Reduction of phosphorylated tau from the hippocampal formation processes, and particularly the pyramidal CA1 neurons, was noted in the ultrasound-treated brains without an associated increase in the phosphorylated tau-affected cell somas, typically associated with disease progression. Attenuation of the pathology was found to correlate well with the ultrasound-initiated immune response without compromising neuronal integrity. Unilateral ultrasound application resulted in a bilateral effect indicating a broader reduction of the phosphorylated tau. Conclusion: Findings presented herein reinforce the premise of ultrasound in reducing tau pathology and thus curbing the progression of Alzheimer's disease.


Assuntos
Doença de Alzheimer/terapia , Barreira Hematoencefálica/efeitos da radiação , Hipocampo/patologia , Ultrassonografia/métodos , Proteínas tau/análise , Animais , Modelos Animais de Doenças , Camundongos Transgênicos , Proteínas Recombinantes/análise , Proteínas Recombinantes/genética , Resultado do Tratamento , Proteínas tau/genética
3.
J Control Release ; 303: 289-301, 2019 06 10.
Artigo em Inglês | MEDLINE | ID: mdl-30953664

RESUMO

The blood-brain barrier (BBB) prevents most drugs from gaining access to the brain parenchyma, which is a recognized impediment to the treatment of neurodegenerative disorders like Parkinson's disease (PD). Focused ultrasound (FUS), in conjunction with systemically administered microbubbles, opens the BBB locally, reversibly and non-invasively. Herein, we show that neither FUS applied over both the striatum and the ventral midbrain, without neurotrophic factors, nor intravenous administration of neurotrophic factors (either through protein or gene delivery) without FUS, ameliorates the damage to the nigrostriatal dopaminergic pathway in the sub-acute MPTP mouse model of early-stage PD. Conversely, the combination of FUS and intravenous neurotrophic (protein or gene) delivery attenuates the damage to the nigrostriatal dopaminergic pathway, by allowing the entry of these agents into the brain parenchyma. Our findings provide evidence that the application of FUS at the early stages of PD facilitates critical neurotrophic delivery that can curb the rapid progression of neurodegeneration while improving the neuronal function, seemingly opening new therapeutic avenues for the early treatment of diseases of the central nervous system.


Assuntos
Terapia Genética , Transtornos Parkinsonianos/terapia , Terapia por Ultrassom , Animais , Encéfalo/metabolismo , Vetores Genéticos , Fator Neurotrófico Derivado de Linhagem de Célula Glial/genética , Masculino , Camundongos Endogâmicos C57BL , Microbolhas , Neurturina/administração & dosagem , Proteínas Recombinantes/administração & dosagem
4.
Sci Rep ; 7: 39955, 2017 01 06.
Artigo em Inglês | MEDLINE | ID: mdl-28059117

RESUMO

Optogenetics, a widely used technique in neuroscience research, is often limited by its invasive nature of application. Here, we present a noninvasive, ultrasound-based technique to introduce optogenetic channels into the brain by temporarily opening the blood-brain barrier (BBB). We demonstrate the efficiency of the method developed and evaluate the bioactivity of the non-invasively introduced channelrhodopsin channels by performing stimulation in freely behaving mice.


Assuntos
Barreira Hematoencefálica/diagnóstico por imagem , Vetores Genéticos/administração & dosagem , Optogenética/métodos , Animais , Channelrhodopsins/genética , Técnicas de Transferência de Genes , Camundongos , Ultrassonografia
5.
EBioMedicine ; 3: 26-42, 2016 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-26870815

RESUMO

Obesity, metabolic syndrome (MetS) and type 2 diabetes (T2D) are associated with decreased cognitive function. While weight loss and T2D remission result in improvements in metabolism and vascular function, it is less clear if these benefits extend to cognitive performance. Here, we highlight the malleable nature of MetS-associated cognitive dysfunction using a mouse model of high fat diet (HFD)-induced MetS. While learning and memory was generally unaffected in mice with type 1 diabetes (T1D), multiple cognitive impairments were associated with MetS, including deficits in novel object recognition, cued fear memory, and spatial learning and memory. However, a brief reduction in dietary fat content in chronic HFD-fed mice led to a complete rescue of cognitive function. Cerebral blood volume (CBV), a measure of vascular perfusion, was decreased during MetS, was associated with long term memory, and recovered following the intervention. Finally, repeated infusion of plasma collected from age-matched, low fat diet-fed mice improved memory in HFD mice, and was associated with a distinct metabolic profile. Thus, the cognitive dysfunction accompanying MetS appears to be amenable to treatment, related to cerebrovascular function, and mitigated by systemic factors.


Assuntos
Transtornos Cognitivos/etiologia , Transtornos Cognitivos/metabolismo , Gorduras na Dieta/metabolismo , Síndrome Metabólica/complicações , Síndrome Metabólica/metabolismo , Animais , Comportamento Animal , Circulação Cerebrovascular , Análise por Conglomerados , Dieta Hiperlipídica , Modelos Animais de Doenças , Feminino , Aprendizagem em Labirinto , Síndrome Metabólica/fisiopatologia , Metaboloma , Metabolômica/métodos , Camundongos , Obesidade/metabolismo , Reconhecimento Psicológico , Redução de Peso
6.
Behav Brain Res ; 298(Pt B): 1-11, 2016 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-26522840

RESUMO

The brain might be exposed to irradiation under a variety of situations, including clinical treatments, nuclear accidents, dirty bomb scenarios, and military and space missions. Correctly recalling tasks learned prior to irradiation is important but little is known about post-learning effects of irradiation. It is not clear whether exposure to X-ray irradiation during memory consolidation, a few hours following training, is associated with altered contextual fear conditioning 24h after irradiation and which brain region(s) might be involved in these effects. Brain immunoreactivity patterns of the immediately early gene c-Fos, a marker of cellular activity was used to determine which brain areas might be altered in post-training irradiation memory retention tasks. In this study, we show that post-training gamma irradiation exposure (1 Gy) enhanced contextual fear memory 24h later and is associated with reduced cellular activation in the infralimbic cortex. Reduced GABA-ergic neurotransmission in parvalbumin-positive cells in the infralimbic cortex might play a role in this post-training radiation-enhanced contextual fear memory.


Assuntos
Córtex Cerebral/efeitos da radiação , Medo/efeitos da radiação , Raios gama/efeitos adversos , Memória/efeitos da radiação , Neurônios/efeitos da radiação , Animais , Córtex Cerebral/fisiopatologia , Condicionamento Psicológico/fisiologia , Condicionamento Psicológico/efeitos da radiação , Medo/fisiologia , Imuno-Histoquímica , Masculino , Memória/fisiologia , Camundongos Endogâmicos C57BL , Neurônios/fisiologia , Parvalbuminas/metabolismo , Proteínas Proto-Oncogênicas c-fos/metabolismo , Distribuição Aleatória , Ácido gama-Aminobutírico/metabolismo
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