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1.
Arq Neuropsiquiatr ; 82(5): 1-5, 2024 May.
Article in English | MEDLINE | ID: mdl-38763143

ABSTRACT

New hippocampal neurons are continuously generated in the adult human brain. Several studies have demonstrated that the proliferation of hippocampal cells is strongly influenced by a variety of stimuli, including pesticides exposure. These effects are particularly important because neurogenesis dysregulation could be associated with the decline of neuronal and cognitive functions and the possible development of neuropsychiatric disorders.


Novos neurônios hipocampais são gerados continuamente no cérebro humano adulto. Vários estudos têm demonstrado que a proliferação de células do hipocampo é influenciada por uma variedade de estímulos, incluindo a exposição a pesticidas. Estes efeitos são particularmente importantes porque a desregulação da neurogênese pode estar associada ao declínio das funções neuronais e cognitivas e ao possível desenvolvimento de doenças neuropsiquiátricas.


Subject(s)
Hippocampus , Neurogenesis , Neurons , Pesticides , Pesticides/toxicity , Humans , Hippocampus/drug effects , Hippocampus/physiology , Neurogenesis/drug effects , Neurogenesis/physiology , Neurons/drug effects , Neurons/physiology , Animals
4.
Nutr Rev ; 2024 Feb 08.
Article in English | MEDLINE | ID: mdl-38330297

ABSTRACT

This letter is a comment on the 2023 article entitled "Effect of xanthophyll-rich food and supplement intake on visual outcomes in healthy adults and those with eye disease: a systematic review, meta-analysis, and meta-regression of randomized controlled trials," recently published in Nutrition Reviews, by Hu et al.

8.
Indian J Crit Care Med ; 27(11): 845-846, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37936807

ABSTRACT

How to cite this article: de Almeida AG, Scorza FA, Finsterer J. Predicting the Outcome of ICU Patients with COVID-19 Requires the Inclusion of all Influencing Factors. Indian J Crit Care Med 2023;27(11):845-846.

13.
Clinics (Sao Paulo) ; 78: 100242, 2023.
Article in English | MEDLINE | ID: mdl-37480642

ABSTRACT

BACKGROUND: The 6-OHDA nigro-striatal lesion model has already been related to disorders in the excitability and synchronicity of neural networks and variation in the expression of transmembrane proteins that control intra and extracellular ionic concentrations, such as cation-chloride cotransporters (NKCC1 and KCC2) and Na+/K+-ATPase and, also, to the glial proliferation after injury. All these non-synaptic mechanisms have already been related to neuronal injury and hyper-synchronism processes. OBJECTIVE: The main objective of this study is to verify whether mechanisms not directly related to synaptic neurotransmission could be involved in the modulation of nigrostriatal pathways. METHODS: Male Wistar rats, 3 months old, were submitted to a unilateral injection of 24 µg of 6-OHDA, in the striatum (n = 8). The animals in the Control group (n = 8) were submitted to the same protocol, with the replacement of 6-OHDA by 0.9% saline. The analysis by optical densitometry was performed to quantify the immunoreactivity intensity of GFAP, NKCC1, KCC2, Na+/K+-ATPase, TH and Cx36. RESULTS: The 6-OHDA induced lesions in the striatum, were not followed by changes in the expression cation-chloride cotransporters and Na+/K+-ATPase, but with astrocytic reactivity in the lesioned and adjacent regions of the nigrostriatal. Moreover, the dopaminergic degeneration caused by 6-OHDA is followed by changes in the expression of connexin-36. CONCLUSIONS: The use of the GJ blockers directly along the nigrostriatal pathways to control PD motor symptoms is conjectured. Electrophysiology of the striatum and the substantia nigra, to verify changes in neuronal synchronism, comparing brain slices of control animals and experimental models of PD, is needed.


Subject(s)
Parkinson Disease , Symporters , Rats , Animals , Male , Oxidopamine , Rats, Wistar , Chlorides , Disease Models, Animal , Adenosine Triphosphatases
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