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1.
Life Sci ; 267: 118944, 2021 Feb 15.
Article in English | MEDLINE | ID: mdl-33359749

ABSTRACT

AIMS: Liver cirrhosis is the main chronic liver disease and is considered a catabolic disease. Cirrhotic patients have a low energy intake and high energy expenditure at rest, leading to metabolic disorders. Malnutrition is associated with complications of cirrhosis and has been shown that a nutritional intervention with increase of energy intake improves the survival of cirrhotic patients. Therefore, our aim was to evaluate the effect of a high sucrose diet in the liver of animals with cirrhosis induced by thioacetamide and investigate the mechanism involved. MAIN METHODS: Male Wistar rats were divided into three groups: Control; Thioacetamide; and Thioacetamide + high sucrose diet. The thioacetamide was administrated (100 mg kg-1) intraperitoneally and the sucrose was offered in drinking water (300 g L-1). KEY FINDINGS: The administration of thioacetamide was associated with fibrosis and inflammatory infiltrate in the liver and increased levels of transaminases enzymes. The high sucrose diet promoted a reduction of theses parameters in cirrhotic rats. The malnutrition observed in cirrhotic rats was attenuated by the high sucrose diet shown by the improvements in weight loss, subcutaneous fat, and caloric intake. The high sucrose diet also attenuated the oxidative stress present in the liver of animals with thioacetamide-induced cirrhosis. SIGNIFICANCE: The high sucrose diet had anti-inflammatory and anti-oxidant effects in the liver of animals with thioacetamide-induced cirrhosis. In addition, the high sucrose diet also improved malnutrition and catabolism present in cirrhosis. Thus, a high sucrose diet may be a therapeutic option for cirrhotic patients in a catabolic state.


Subject(s)
Dietary Sucrose/pharmacology , Liver Cirrhosis/drug therapy , Liver Cirrhosis/metabolism , Animals , Chemical and Drug Induced Liver Injury/drug therapy , Chemical and Drug Induced Liver Injury/metabolism , Diet , Dietary Sucrose/metabolism , Inflammation , Liver/metabolism , Liver Cirrhosis, Experimental/chemically induced , Liver Cirrhosis, Experimental/metabolism , Male , Oxidative Stress/drug effects , Rats , Rats, Wistar , Sucrose/metabolism , Sucrose/pharmacology , Thioacetamide/adverse effects , Thioacetamide/pharmacology
2.
Article in English | LILACS | ID: biblio-1117416

ABSTRACT

AIMS: This study aimed to investigate the effects of crude extract of Carica papaya leaves on oxidative stress in mice induced by cyclophosphamide, as well as phytochemical profile characterization of this extract. METHODS: The male Swiss mice received 15 days of treatment with the extract (500 mg kg-1, via gavage) and intraperitoneal injection of cyclophosphamide (75 mg kg-1) or saline (0.9%) on the 15th day. After 24 h the last treatment, the animals were anesthetized for blood withdrawal, sacrificed and removal of the organs for analyses (liver, kidney and heart). In the biochemical tests were determined: hematological parameters in blood, aminotransferases, alkaline phosphatase, glucose and total cholesterol dosages in plasma, enzymatic and non-enzymatic antioxidants and lipid damage marker were evaluated in different tissues, besides genotoxic and histopathological analyzes. RESULTS: In the extract of Carica papaya leaves, the flavonoids quercetin-3ß-D-glucoside and rutin were identified, besides present positive results for alkaloids, saponins and tannins. This extract increased the activity of glutathione-S-transferase and catalase enzymes in the liver and reduced the levels of reduced glutathione in the kidneys and hematocrit levels, red cell count, and hemoglobin. It promoted the decrease of the reactive species of thiobarbituric acid (TBARS) in the kidneys and the activity of enzyme aspartate aminotransferase in the plasma and was antimutagenic in the micronucleus test. CONCLUSIONS: The study showed that extract of Carica papaya was beneficial against oxidative events and prevented DNA damage. The extract also showed hepatotoxicity, therefore prolonged infusion of papaya leaves is not advisable.


OBJETIVOS: O objetivo deste estudo foi investigar os efeitos do extrato bruto de folhas de Carica papaya sobre o estresse oxidativo em camundongos induzidos pela ciclofosfamida, bem como a caracterização do perfil fitoquímico deste extrato. MÉTODOS: Os camundongos Swiss machos receberam 15 dias de tratamento com o extrato (500 mg kg-1, via gavagem) e injeção intraperitoneal de ciclofos-famida (75 mg kg-1) ou salina (0,9%) no 15º dia. Após 24 h do último tratamento, os animais foram anestesiados para retirada do sangue, sacrificados e retirada dos órgãos para análises (fígado, rim e coração). Nos testes bioquímicos foram determinados: parâmetros hematológicos em sangue, aminotransferases, fosfatase alcalina, dosagens de glicose e colesterol total no plasma, antioxidantes enzimáticos e não enzimáticos e marcador de dano lipídico foram avaliados em diferentes tecidos, além de análises genotóxicas e histopatológicas. RESULTADOS: No extrato de folhas de Carica papaya foram identificados os flavonoides quercetina-3ß-D-glicosídeo e rutina, além de resultados positivos para alcaloides, saponinas e taninos. Este extrato aumentou a atividade das enzimas glutationa-S-transferase e catalase no fígado e diminuiu os níveis de glutationa reduzida nos rins, a concentração do hematócrito, a contagem dos glóbulos vermelhos e a hemoglobina. Promoveu a diminuição das espécies reativas de ácido tiobarbitúrico (TBARS) nos rins, a atividade da enzima aspartato aminotransferase no plasma e foi antimuta-gênico no teste do micronúcleo. CONCLUSÕES: O estudo mostrou que o extrato de Carica papaya foi benéfico contra eventos oxidativos e preveniu danos no DNA. O extrato também mostrou hepatotoxicidade, portanto, a infusão prolongada de folhas de mamão não é aconselhável.


Subject(s)
Oxidative Stress , Pharmacology , Ethnobotany , Cyclophosphamide , Carica , Metabolism
3.
Environ Toxicol Pharmacol ; 56: 241-248, 2017 Dec.
Article in English | MEDLINE | ID: mdl-29031220

ABSTRACT

Roundup Original® is an herbicide widely used in Mato Grosso's agriculture and it may contamine water bodies, being an unforeseen xenobiotic to aquatic organisms, particularly fish. This study investigated the effects on the hybrid fish jundiara (Leiarius marmoratus×Pseudoplatystoma reticulatum) of an environmentally relevant exposure to this herbicide. Glucose levels in liver, muscle and plasma decreased after exposure to 1.357mgL-1 of Roundup Original® (glyphosate nominal concentration), while glycogen levels reduced in liver and muscle for different times. Elevated cholesterol and triglycerides revealed an adaptive response. Protein and lactate levels also increased during the experiment, however no changes were observed for muscle lactate. Increment of the transaminases suggests damage to the liver cells. After 96hours of exposure, reductions in all hematological parameters were observed, whereas the micronucleus test findings showed genotoxic scenery. Histological analysis did not display pathological alterations of the hepatic tissue. The results obtained provide valuable data for noticing the effects of pollutants on non-target organisms.


Subject(s)
Fishes/genetics , Fishes/metabolism , Glucose/metabolism , Glycine/analogs & derivatives , Herbicides/toxicity , Animals , DNA Damage , Environmental Monitoring , Fish Proteins/metabolism , Fishes/blood , Gene Expression Regulation/drug effects , Glycine/toxicity , Lactic Acid/metabolism , Liver/drug effects , Liver/metabolism , Muscles/drug effects , Muscles/metabolism , Mutagenicity Tests , Water Pollutants, Chemical/toxicity , Glyphosate
4.
Int J Sports Med ; 38(4): 263-269, 2017 Apr.
Article in English | MEDLINE | ID: mdl-28219103

ABSTRACT

Cardiotonic drugs and exercise training promote cardiac inotropic effects, which may affect training-induced cardiac adaptations. This study investigated the effects of long-term administration of digoxin on heart structure and function, and physical performance of rats submitted to high-intensity interval training (HIIT). Male Wistar rats, 60 days old, were divided into control (C), digoxin (DIGO), trained (T), and trained with digoxin (TDIGO). Digoxin was administered by gavage (30 µg/kg/day) for 75 days. The HIIT program consisted of treadmill running 60 min/day (8 min at 80% of the maximum speed (MS) and 2 min at 20% of the MS), 5 days per week during 60 days. The main cardiac parameters were evaluated by echocardiograph and cardiomyocyte area was determined by histology. There were no group x time effects of digoxin, HIIT or interactions (digoxin and HIIT) on functional echocardiographic parameters (heart rate; ejection fraction) or in the maximum exercise test. There was a group x time interaction, as evidenced by observed cardiac hypertrophy in the TDIGO group evaluated by ratio of left ventricle weight to body weight (p<0.002) and cardiomyocyte area (p<0.000002). Long-term administration of digoxin promoted cardiac hypertrophy without affecting cardiac function and physical performance in rats submitted to HIIT.


Subject(s)
Cardiomegaly/chemically induced , Digoxin/adverse effects , Heart/drug effects , Physical Conditioning, Animal , Animals , Echocardiography , Exercise Test , Heart Rate , High-Intensity Interval Training , Male , Random Allocation , Rats , Rats, Wistar
5.
Rev. bras. med. esporte ; 22(5): 398-402, set.-out. 2016. tab, graf
Article in Portuguese | LILACS | ID: lil-798054

ABSTRACT

RESUMO Introdução: Cardiotônicos e bloqueadores de canais de cálcio são fármacos que alteram o Ca2+ intracelular e afetam o coração. Objetivo: Avaliar os efeitos da administração de verapamil e digoxina sobre a morfologia cardíaca de ratos submetidos ao treinamento intervalado (TAI). Métodos: Ratos Wistar machos divididos em seis grupos (N = 8): Controle, Digoxina (30,0 µg.kg-1/dia), Verapamil (5,0 mg.kg-1/dia), Treinado, Treinado+digoxina e Treinado+verapamil. O TAI foi realizado em esteira rolante (60 min/dia/60 dias) concomitantemente com a administração dos fármacos. Fragmentos do ventrículo esquerdo (VE) foram coletados para análise histológica. Resultados: A digoxina e o verapamil aumentaram a área total do VE (p < 0,002), capilares/área VE (p < 0,01) e área de cardiomiócitos (p < 2,8e-10), sendo que, nesta última variável, o verapamil promoveu efeito ainda maior que a digoxina. O TAI aumentou VE/PC (p < 4e-05), o diâmetro interno do VE (p < 2,7e-6), a área de cardiomiócitos (p < 1,8e-6) e reduziu o [Lac] (p < 2,6e-5). Houve interação entre TAI e fármacos na área total (p < 9,8e-5), capilares (p < 0,04), células/área (p < 0,004) e área de cardiomiócitos (p < 2e-16). Conclusão: A digoxina promoveu hipertrofia de cardiomiócitos e, quando associada ao TAI, potencializou a hipertrofia. O verapamil foi mais eficiente em aumentar a área de cardiomiócitos em comparação com a digoxina, porém somente de forma isolada.


ABSTRACT Introduction: Cardiotonics and calcium channel blockers are drugs that alter intracellular Ca2+ and can affect the heart. Objective: To evaluate the effects of administration of verapamil and digoxin on heart morphology of rats subjected to interval training (IT). Methods: Male Wistar rats were divided into groups (n = 8): Control, Digoxin (30.0µg.kg-1/day), Verapamil (5.0 mg.kg-1/day), Trained, Trained+digoxin and Trained+verapamil. The IT was performed on a treadmill (60 min/day/60 days) concurrently with the drugs administration. Fragments of the left ventricle (LV) were collected for histological analysis. Results: Digoxin and verapamil increased the total area of the LV (p<0.002), capillary/LV area (p<0.01) and cardiomyocytes area (p<2.8e-10), and in the latter variable, verapamil promoted even greater effect than digoxin. The IT increased LV/BW (p<4e-05), the inner diameter of the LV (p<2.7e-6), the area of cardiomyocytes (p<1.8e-6), and reduced the [Lac] (p<2.6e-5). There was interaction between IT and drugs in the total area (p<9.8e-5), capillaries (p<0.04), cell/area (p<0.004) and cardiomyocytes area (p <2.0e-16). Conclusions: Digoxin promoted cardiomyocyte hypertrophy and when associated with IT, potentiated the hypertrophy. Verapamil was more efficient in increasing the cardiomyocytes area compared with digoxin, but only when isolated.


RESUMEN Introducción: Cardiotónicos y bloqueadores de los canales de calcio son fármacos que alteran el Ca2+ intracelular y afectan al corazón. Objetivo: Evaluar los efectos de la administración de verapamilo y digoxina sobre la morfología del corazón de ratas sometidas a entrenamiento a intervalos (EI). Métodos: Ratas Wistar macho, divididas en seis grupos (N = 8): Control, Digoxina (30,0 µg.kg-1/día), Verapamilo (5,0 mg.kg-1/día), Entrenado, Entrenado+digoxina y Entrenado+verapamilo. El entrenamiento a intervalos se realizó en una cinta de correr (60 min/día/60 días), con la administración concomitante de fármacos. Se recogieron fragmentos del ventrículo izquierdo (VI) para el análisis histológico. Resultados: La digoxina y el verapamilo aumentaron el área total del VI (p < 0,002), capilares/área VI (p < 0,01) y el área de los cardiomiocitos (p < 2,8e-10) y, en esta última variable, el verapamilo promovió un efecto aún mayor que la digoxina. EI entrenamiento a intervalos aumentó VI/PC (p < 4e-05), el diámetro interior del VI (p < 2,7e-6), el área de los cardiomiocitos (p < 1,8e-6) y redujo el [Lac] (p < 2,6e-5). Hubo una interacción entre fármacos y el EI en el área total (p < 9,8e-5), capilares (p<0,04), células/área (p < 0,004) y el área de los cardiomiocitos (p < 2e-16). Conclusión: La digoxina promovió la hipertrofia de los cardiomiocitos y, cuando al asociarse con el EI, potenció la hipertrofia. El verapamilo fue más eficiente en el aumento de la zona de los cardiomiocitos en comparación con la digoxina, pero sólo de forma aislada.

6.
Nutr Res ; 31(8): 652-7, 2011 Aug.
Article in English | MEDLINE | ID: mdl-21925351

ABSTRACT

The purpose of this study was to test the hypothesis that creatine (Cr) supplementation may promote an additional hypertrophic effect on skeletal muscle independent of a higher workload on Cr-supplemented trained muscle compared with Cr-nonsupplemented trained muscle. Male Wistar rats (2-3 months old, 250-300 g) were divided randomly into 4 groups (n = 8 per group): nontrained without Cr supplementation (CO), nontrained with Cr supplementation (CR), trained without Cr supplementation (TR), and trained with Cr supplementation (TRCR). Creatine supplementation was given at 0.5 g/kg per day. Trained groups were submitted to a 5-week resistance training program (5 d/wk). The progressive workloads were similar between the Cr-supplemented (TRCR) and Cr-nonsupplemented (TR) trained groups; the only difference between groups was the Cr treatment. After the 5-week experiment, the soleus muscle was dissected to analyze the cross-sectional area (CSA) of the muscle fibers. Resistance training promoted a significant (P < .05) increase in the muscle fibers CSA in the TR group compared with the CO group. However, no additional hypertrophic effect was found when Cr supplementation was added to training (TRCR vs TR comparison, P > .05). In addition, Cr supplementation alone did not promote significant alterations in muscle fiber CSA (CR vs CO comparison, P > .05). We conclude that Cr supplementation does not promote any additional hypertrophic effect on skeletal muscle area when Cr-supplemented trained muscles are submitted to same training regimen than Cr-nonsupplemented trained muscles. Specifically, any benefits of Cr supplementation on hypertrophy gains during resistance training may not be attributed to a direct anabolic effect on the skeletal muscle.


Subject(s)
Creatine/pharmacology , Dietary Supplements , Muscle Fibers, Skeletal/drug effects , Muscle, Skeletal/drug effects , Physical Conditioning, Animal/physiology , Resistance Training , Weight-Bearing/physiology , Animals , Hypertrophy , Male , Muscle Fibers, Skeletal/pathology , Muscle Fibers, Skeletal/physiology , Muscle, Skeletal/pathology , Organ Size , Random Allocation , Rats , Rats, Wistar , Workload
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