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1.
Arch. Clin. Psychiatry (Impr.) ; 42(3): 69-73, May-Jun/2015. ilus, tab, graf
Artigo em Inglês | LILACS | ID: lil-797117

RESUMO

There is evidence from animal and in vitro models of the protective effects of caffeine in Alzheimer’s disease. The suggested mechanisms through which caffeine may protect neurons against Alzheimer’s disease pathology include the facilitation of beta-amyloid clearance, upregulation of cholinergic transmission, and increased neuronal plasticity and survival. Epidemiological studies support that Alzheimer’s disease patients consume smaller amounts of coffee beverages throughout their lives as compared to age-matched cognitively healthy individuals. Objective: The aim of the present study was to determine whether the negative association between Alzheimer’s disease and coffee consumption may be influenced by a common genetic predisposition, given the fact that the pattern of coffee consumption is determined by both environmental and genetic factors. Method: We conducted an in silico search addressing the association between genetic polymorphisms related to coffee consumption and the diagnosis of Alzheimer’s disease. We further investigated the interactions between genes located in regions bearing these polymorphisms. Results: Our analysis revealed no evidence for a genetic association (nor interaction between related proteins) involving coffee consumption and Alzheimer’s disease. Discussion: The negative association between Alzheimer’s disease and coffee consumption suggested by epidemiological studies is most likely due to environmental factors that are not necessarily regulated by genetic background...


Assuntos
Humanos , Feminino , Cafeína/genética , Doença de Alzheimer , Polimorfismo Genético , Alelos
2.
Braz. j. pharm. sci ; 45(4): 743-749, Oct.-Dec. 2009. ilus, tab
Artigo em Inglês | LILACS | ID: lil-543671

RESUMO

The influence of caffeine, administered to rats, on the somatic and sensory-motor development of the offspring was investigated. Female Wistar rats were divided into a control group and a treated group and received drinking water and a 0.1 percent solution of caffeine orally, respectively. The offspring, also divided into a control group and a treated group, received daily monitoring until the 20th day of life to verify alterations in somatic neural development. The offspring of the treated group had reduced weight on the day of birth and on the 1st, 5th, 15th and 20th days of life; shorter snout-anus length (evaluation done daily); shorter snout-tail length on the day of birth and on the 1st, 5th and 10th days of life, and signs of retardation of somatic and sensory-motor maturation. These results allowed the conclusion that administration of caffeine to rats affects somatic and sensory-motor development of offspring.


Estudou-se a influência da cafeína, administrada a ratos, no desenvolvimento somático e sensorial-motor da prole. Ratos Wistar fêmeas foram divididos em grupo controle e grupo tratado e receberam água e solução de cafeína a 0,1 por cento, respectivamente. A prole, também dividida em grupo controle e grupo tratado, foi monitorada diariamente até o 20º. dia de vida para se observar as alterações no desenvolvimento somático neural. O grupo tratado apresentou peso reduzido no dia do nascimento e nos 1º, 5º., 15º e 20º. dias de vida; comprimento focinho-ânus mais curto (avaliação efetuada diariamente); comprimento focinho-cauda mais curto no dia do nascimento e nos 1º, 5º., 15º e 20º. dias de vida e sinais de retardamento da maturação somática e sensorial-motora. Esses resultados permitem que se conclua que a administração da cafeína a ratos afeta o desenvolvimento somático e sensorial-motor da prole.


Assuntos
Animais , Masculino , Feminino , Adulto , Ratos , Cafeína/análise , Cafeína/efeitos adversos , Cafeína/genética , Desenvolvimento Muscular , Sensação , Transtornos Somatoformes/induzido quimicamente , Exposição Materna , Efeitos Tardios da Exposição Pré-Natal , Sistema Nervoso Central
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