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1.
Rev. argent. endocrinol. metab ; 54(3): 140-148, set. 2017. graf, tab
Article in English | LILACS | ID: biblio-957980

ABSTRACT

The effects of avocado seeds (A) inclusion (2%, 4% and 8%) in diets on cholesterol and carbohydrate metabolism in normal rats Sprague Dawley (SD) fed on basal diet (BD) or high sucrose diet (HSD) and spontaneous hypertensive rats (SHR) fed on BD were studied. The inclusion of avocado seeds in the diet influences the feeding and growth performance in rats. The inclusion of A lowered (p < 0.05) cholesterol at 2% and 4% doses and glucose at 2% in serum of SD rats fed on BD, whereas only serum cholesterol level was reduced at all the three doses in SHR. Increased liver glycogen (p < 0.05) was noted in SD rats fed on BD with 8% A. All avocado seeds doses increased (p < 0.05) liver glycogen storage in SHR fed on BD and SD rats fed on HSD. Avocado seeds can lower blood glucose and cholesterol and enhance liver glycogen storage in rats.


Los efectos de la inclusión de semillas de aguacate (A) (2%, 4% y 8%) en dietas sobre el metabolismo del colesterol y carbohidratos en ratas normales Sprague Dawley (SD) alimentados con dieta basal (BD) o dieta con alto contenido en sacarosa (HSD) se estudiaron las ratas hipertensas (SHR) alimentadas con BD. La inclusión de las semillas de aguacate en la dieta influye en la alimentación y el crecimiento en ratas. La inclusión de A disminuyó (p < 0,05) el colesterol a dosis del 2 y el 4% y glucosa al 2% en suero de ratas SD alimentadas con BD, mientras que solo el nivel de colesterol sérico se redujo en todas las 3 dosis en SHR. Se observó un aumento del glucógeno hepático (p < 0,05) en ratas SD alimentadas con BD con un 8% de A. Todas las dosis de semillas de aguacate aumentaron (p< 0,05) el almacenamiento de glucógeno hepático en SHR alimentado con BD y SD alimentadas con HSD. Las semillas de aguacate pueden reducir la glucosa y el colesterol en la sangre, y aumentar el almacenamiento de glucógeno hepático en ratas.


Subject(s)
Animals , Rats , Persea/metabolism , Carbohydrate Metabolism , Lipid Metabolism , Glucose/antagonists & inhibitors , Glycogen/biosynthesis , Anticholesteremic Agents/blood
2.
Rev. Soc. Bras. Med. Trop ; 42(2): 110-113, Mar.-Apr. 2009. ilus, tab
Article in English | LILACS | ID: lil-512911

ABSTRACT

The present study had the aim of testing the hexane and methanol extracts of avocado seeds, in order to determine their toxicity towards Artemia salina, evaluate their larvicidal activity towards Aedes aegypti and investigate their in vitro antifungal potential against strains of Candida spp, Cryptococcus neoformans and Malassezia pachydermatis through the microdilution technique. In toxicity tests on Artemia salina, the hexane and methanol extracts from avocado seeds showed LC50 values of 2.37 and 24.13mg mL-1 respectively. Against Aedes aegypti larvae, the LC50 results obtained were 16.7mg mL-1 for hexane extract and 8.87mg mL-1 for methanol extract from avocado seeds. The extracts tested were also active against all the yeast strains tested in vitro, with differing results such that the minimum inhibitory concentration of the hexane extract ranged from 0.625 to 1.25mg L-¹, from 0.312 to 0.625mg mL-1 and from 0.031 to 0.625mg mL-1, for the strains of Candida spp, Cryptococcus neoformans and Malassezia pachydermatis, respectively. The minimal inhibitory concentration for the methanol extract ranged from 0.125 to 0.625mg mL-1, from 0.08 to 0.156mg mL-1 and from 0.312 to 0.625mg mL-1, for the strains of Candida spp., Cryptococcus neoformans and Malassezia pachydermatis, respectively.


O presente estudo teve como objetivo testar os extratos hexânico e metanólico das sementes do abacate, a fim de determinar sua toxicidade em Artemia salina, avaliar a atividade larvicida frente ao Aedes aegypti, bem como verificar o potencial antifúngico in vitro contra cepas de Candida spp, Cryptococcus neoformans e Malassezia pachydermatis, através da técnica de microdiluição. Os extratos hexânico e metanólico das sementes de abacate apresentaram no teste de toxicidade frente à Artemia salina, valores de LC50 2,37 e 24,13mg L-1, respectivamente; contra as larvas do Aedes aegypti os resultados obtidos foram LC50 16,7mg L-1 para o extrato hexânico e 8,87mg L-1 para o extrato metanólico das sementes do abacate. Os extratos testados também foram ativos contra todas as cepas de leveduras, testadas in vitro, apresentando diferentes resultados, onde o MIC do extrato hexânico variou de 0,625 a 1,25mg mL-1, de 0,312 a 0,625mg mL-1 e de 0,031 a 0,625mg mL-1 para as cepas de Candida spp., Cryptococcus neoformans e Malassezia pachydermatis, respectivamente. O intervalo de MIC para o extrato metanólico foi de 0,125 a 0,625mg mL-1, 0,08 a 0,156mg mL-1 e de 0,312 a 0,625mg mL-1, para as exemplares de Candida spp., Cryptococcus neoformans e Malassezia pachydermatis, respectivamente.


Subject(s)
Animals , Aedes/drug effects , Antifungal Agents/pharmacology , Artemia/drug effects , Mitosporic Fungi/drug effects , Persea/chemistry , Antifungal Agents/chemistry , Antifungal Agents/toxicity , Candida/drug effects , Cryptococcus neoformans/drug effects , Larva/drug effects , Microbial Sensitivity Tests , Malassezia/drug effects , Seeds/chemistry , Seeds/toxicity
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