197 resultados para steatosis


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Microsomal triglyceride transfer protein (MTP) is a protein that exerts a central regulatory role in very-low-density lipoprotein (VLDL) assembly and secretion. The purpose of the study was to investigate the effects of all exercise-training program oil hepatic content of MTP and its relation to hepatic VLDL-triglyceride (VLDL-TG) production in response to lipid infusion. Female rats either fed a standard (SD) or all obesity-induced high-fat (HF; 43% as energy) diet for 8 weeks were Subdivided into sedentary (Sed) and trained (Tr) groups. Exercise training consisted Of Continuous running on a motor-driven rodent treadmill 5 times/week for 8 weeks. At the end of this period, all rats in the fasted state were intravenously infused with a 20% Solution of intralipid for 3 h followed by all injection of Triton WR1339 to block lipoprotein lipase. An additional control grout) consisting of Sed rats fed the SD diet was infused with saline (0.9% NaCl). Plasma TG accumulation was thereafter measured during 90 min to estimate VLDL-TG production. Under HF diet, hepatic MTP content and plasma TG accumulation after Triton blockade (thus reflecting VLDL-TG synthesis and secretion) were not changed in Sed rats, whereas liver TG content was highly increased (similar to 90%; p<0.01). Oil the other hand, training reduced liver MTP protein content in both SD(-18%) and HF(-23%) fed rats(p<0.05). Plasma VLDL-TG accumulation was also lower (p<0.05) in Tr than in Sed rats fed the HF diet. This effect was not observed in SD fed rats. Furthermore, the exercise training-induced decrease in VLDL-TG production in HF rats was associated with a decrease in liver TG levels. It is Concluded that in addition to a reduction in liver TG content, exercise training reduces VLDL synthesis and/or secretion in HF fed rats probably via MTP regulation.

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High fat diets are extensively associated with health complications within the spectrum of the metabolic syndrome. Some of the most prevalent of these pathologies, often observed early in the development of high-fat dietary complications, are non-alcoholic fatty liver diseases. Mitochondrial bioenergetics and redox state changes are also widely associated with alterations within the metabolic syndrome. We investigated the mitochondrial effects of a high fat diet leading to non-alcoholic fatty liver disease in mice. We found that the diet does not substantially alter respiratory rates, ADP/O ratios or membrane potentials of isolated liver mitochondria. However, H(2)O(2) release using different substrates and ATP-sensitive K(+) transport activities are increased in mitochondria from animals on high fat diets. The increase in H(2)O(2) release rates was observed with different respiratory substrates and was not altered by modulators of mitochondrial ATP-sensitive K(+) channels, indicating it was not related to an observed increase in K(+) transport. Altogether, we demonstrate that mitochondria from animals with diet-induced steatosis do not present significant bioenergetic changes, but display altered ion transport and increased oxidant generation. This is the first evidence, to our knowledge, that ATP-sensitive K(+) transport in mitochondria can be modulated by diet.

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Caveolin-1 (CAV1) is a structural protein of caveolae involved in lipid homeostasis and endocytosis. Using newly generated pure Balb/C CAV1 null (Balb/CCAV1−/−) mice, CAV1−/− mice from Jackson Laboratories (JAXCAV1−/−), and CAV1−/− mice developed in the Kurzchalia Laboratory (KCAV1−/−), we show that under physiological conditions CAV1 expression in mouse tissues is necessary to guarantee an efficient progression of liver regeneration and mouse survival after partial hepatectomy. Absence of CAV1 in mouse tissues is compensated by the development of a carbohydrate-dependent anabolic adaptation. These results were supported by extracellular flux analysis of cellular glycolytic metabolism in CAV1-knockdown AML12 hepatocytes, suggesting cell autonomous effects of CAV1 loss in hepatic glycolysis. Unlike in KCAV1−/− livers, in JAXCAV1−/− livers CAV1 deficiency is compensated by activation of anabolic metabolism (pentose phosphate pathway and lipogenesis) allowing liver regeneration. Administration of 2-deoxy-glucose in JAXCAV1−/− mice indicated that liver regeneration in JAXCAV1−/− mice is strictly dependent on hepatic carbohydrate metabolism. Moreover, with the exception of regenerating JAXCAV1−/− livers, expression of CAV1 in mice is required for efficient hepatic lipid storage during fasting, liver regeneration, and diet-induced steatosis in the three CAV1−/− mouse strains. Furthermore, under these conditions CAV1 accumulates in the lipid droplet fraction in wildtype mouse hepatocytes. Conclusion: Our data demonstrate that lack of CAV1 alters hepatocyte energy metabolism homeostasis under physiological and pathological conditions.

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Background and AimsA major impediment to establishing new treatments for non-alcoholic steatohepatitis is the lack of suitable animal models that accurately mimic the biochemical and metabolic characteristics of the disease. The aim of this study was to explore a unique polygenic animal model of metabolic disease as a model of non-alcoholic steatohepatitis by determining the effects of 2% dietary cholesterol supplementation on metabolic and liver endpoints in Psammomys obesus (Israeli sand rat).MethodsP. obesus were provided ad libitum access to either a standard rodent diet (20% kcal/fat) or a standard rodent diet supplemented with 2% cholesterol (w/w) for 4 weeks. Histological sections of liver from animals on both diets were examined for key features of non-alcoholic steatohepatitis. The expression levels of key genes involved in hepatic lipid metabolism were measured by real-time PCR.ResultsP. obesus fed a cholesterol-supplemented diet exhibited profound hepatomegaly and steatosis, and higher plasma transaminase levels. Histological analysis identified extensive steatosis, inflammation, hepatocyte injury and fibrosis. Hepatic gene expression profiling revealed decreased expression of genes involved in delivery and uptake of lipids, and fatty acid and triglyceride synthesis, and increased expression of genes involved in very low density lipoprotein cholesterol synthesis, triglyceride and cholesterol export.ConclusionsP. obesus rapidly develop non-alcoholic steatohepatitis when fed a cholesterol-supplemented diet that appears to be histologically and mechanistically similar to patients.

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Protein kinase R (PKR) has previously been suggested to mediate many of the deleterious consequences of a high-fat diet (HFD). However, previous studies have observed substantial phenotypic variability when examining the metabolic consequences of PKR deletion. Accordingly, herein, we have re-examined the role of PKR in the development of obesity and its associated metabolic complications in vivo as well as its putative lipid-sensing role in vitro. Here we show that the deletion of PKR does not affect HFD-induced obesity, hepatic steatosis or glucose metabolism, and only modestly affects adipose tissue inflammation. Treatment with the saturated fatty acid palmitate in vitro induced comparable levels of inflammation in WT and PKR KO macrophages, demonstrating that PKR is not necessary for the sensing of pro-inflammatory lipids. These results challenge the proposed role for PKR in obesity, its associated metabolic complications and its role in lipid-induced inflammation.

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O tratamento cirúrgico dos tumores hepáticos tem sido um grande desafio na história evolutiva da cirurgia. No passado, as altas taxas de morbidade e mortalidade limitavam sua aplicação como opção terapêutica. O refinamento da técnica de ressecção hepática está associado a menores índices de mortalidade e morbidade peri-operatória e, embora, a mortalidade tenha sido reduzida a menos de 10% nos serviços especializados, a morbidade ainda é bastante significativa, sendo que a hemorragia grave e a embolia aérea permanecem como complicações graves das hepatectomias. O controle da perda sanguínea é o objetivo primordial durante este tipo de cirurgia. As técnicas descritas, com a finalidade de conter a hemorragia transoperatória, são aquelas associadas à redução do fluxo sanguíneo ao fígado, seja através da oclusão vascular aferente ou manobra de Pringle por clampeamento do pedículo hepático, seja por exclusão vascular total do órgão. Hepatectomias parciais podem ser realizadas com pequeno sangramento e, mesmo quando associadas a períodos prolongados de isquemia tecidual, não foram identificadas lesões parenquimatosas ou falência hepática persistente. A redução na necessidade de reposição de sangue, no período peri-operatório, está associada a menor morbidade e à diminuição significativa na incidência de sepse abdominal. O objetivo deste estudo foi o de avaliar uma série de hepatectomias parciais com oclusão do fluxo sanguíneo aferente, em pacientes portadores de patologias benignas e neoplasias malignas. Foram analisadas 60 hepatectomias em 59 pacientes com oclusão do fluxo sanguíneo aferente quanto a possíveis fatores de risco para morbidade e mortalidade, bem como a relação entre o tempo de isquemia hepática e a variação das transaminases, tempo de protrombina e bilirrubinas, e destes, com a evolução pós-operatória. A prevalência de complicações pós-operatórias foi de 43,3% e a mortalidade de 6,7%. O fator de risco significativo para mortalidade foi tempo cirúrgico mais prolongado, quando comparado com os pacientes que não foram a óbito. Para a morbidade pós-operatória, foram identificados como fatores de risco a idade acima de 60 anos, cirurgia por neoplasia maligna, parênquima hepático anormal, ou seja, presença de cirrose, esteatose ou colestase, perda sanguínea necessitando reposição de mais de uma unidade de sangue e outros procedimentos cirúrgicos concomitantes. Na análise multivariada por regressão logística, estes fatores de risco foram reduzidos, apenas, para presença de cirrose, esteatose ou colestase. O tempo de isquemia não apresentou relação com a morbi-mortalidade pós-operatória. A variação das transaminases foram mais acentuadas nos casos com maior tempo de isquemia, porém, retornaram aos níveis pré-operatórios em, aproximadamente, uma semana. Não houve variação de tempo de protrombina e bilirrubinas quanto ao tempo de isquemia. A variação de AST e ALT não foram diferentes entre os pacientes com e sem morbidade pós-operatória.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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The present study evaluated the hepatoprotective effect of an N-acetyl or-methionine + choline chloride + caffeine + thiamine hydrochloride + nicotinamide + pyridoxine hydrochloride compound at doses of 0.2, 0.6 and 1.0 mL/kg of b.w., and the assessment was done by the investigation of serum-enzymatic activity, metabolic functions of the liver and histophatological changes in female Wistar rats, which were subjected to experimental intoxication with CCl4. One hundred and nineteen rats were randomly distributed into 17 groups, performing five different treatments, being evaluated seven animals per treatment in four periods: 2, 4, 6 and 8 days after CCl4-induced intoxication. Treated rats with the hepatoprotective medicine (HM) presented a significant reduction in infiltration of inflammatory cells, steatosis, necrosis and liver congestion when compared to non-treated rats (control). Beside these results, the treatment showed a positive effect on circulatory alterations in the intoxicated animals, with reduction of spleen and renal congestion, as well as, promotion of a significant improvement in ALT, AST, LDH, ALP, GGT enzymatic serum activity reduction and in recovering liver function regarding the metabolism of urea, triglycerides and glucose. These findings indicate therapeutic usefulness of the compound when administered at dose 0.6 and 1.0 mL/kg of b.w. in female Wistar rats. (C) 2010 Elsevier GmbH. All rights reserved.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Nonalcoholic fatty liver disease (NAFLD) is a clinical-pathological syndrome that encompasses a wide spectrum of morphologic alterations, ranging from simple hepatic steatosis to a more severe stage, known as nonalcoholic steatohepatitis (NASH). The purpose of this clinical report was to contribute to the understanding of mitochondrial alterations in NAFLD. The child (13-month-old) underwent initial biopsy in the year 2000 and was diagnosed with diffuse macro and microvesicular steatosis. Two additional biopsies were performed in 2001 and 2004. A high percentage of microvesicular steatosis was observed in the biopsies performed in 2000 and 2001. Mitochondrial size was slightly increased in the biopsy performed in the year 2000, significantly increased in 2001 and decreased in 2004. The presence of "mitochondrial hypertrophy" in the hepatocytes of an asymptomatic pediatric patient whose disease presentation was typical of NAFLD, excluding other pathological processes, allowed us to suspect that such a defect was considered the primary mitochondrial disorder.

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Fipronil, active ingredient of the acaricide Frontiline (R), is a phenyl-pyrazolic derivative, and its efficacy in the elimination of several plagues, even in low concentrations, has already been demonstrated; however, its effect on nontarget organisms has not been thoroughly explained. In this sense, the objective of this study was to evaluate the effects of different dosages of fipronil on the liver of mice in artificial conditions. Results showed that the animals exposed to fipronil present significant ultrastrucutural changes in hepatic cells with evident cellular and cytoplasm disorganization in hepatocytes characterized by an increase in the number of organelles, mainly mitochondria and rough endoplasmic reticulum, organelles that, in the case of the exposed animals, were probably responsible for the enzymes' synthesis that have the function of inactivating the toxic metabolites. A fat accumulation in the hepatocytes' cytoplasm (steatosis) was observed, in addition to extended vacuolated areas, mainly in regions next to the cell nucleus. Alterations observed in the nuclei of the hepatocytes pointed out cell death processes. Moreover, Kupffer cells increased in number (hyperplasia) suggesting an increase in the phagocytic activity of the liver in the exposed animals. Microsc. Res. Tech., 2011. (c) 2011 Wiley Periodicals, Inc.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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In the last two decades, the metabolic syndrome is in focus of many health agencies worldwide. Understanding among the most important glucose intolerance and insulin resistance, other disorders have been framed in this category. The non-alcoholic hepatic steatosis appears to be one of the components of this syndrome. Several studies point to the increased consumption of fructose linked to the onset of sedentary steatohepatitis. From that premise, this review aimed to the search for studies that suggest the role of exercise as an important weapon in the treatment and prevention of non-alcoholic hepatic steatosis.

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A doença hepática crônica cursa, freqüentemente, com anormalidades metabólicas de macronutrientes que propiciam o desenvolvimento ou agravamento da desnutrição protéico-energética. O papel central do fígado no metabolismo dos substratos energéticos e de proteínas e aminoácidos é revisto, de modo relacionado à desnutrição protéico-energética, em pacientes com hepatopatia crônica. Aceita-se que a redução da ingestão dietética seja um dos principais componentes etiológicos da desnutrição, particularmente em pacientes alcoolistas. Acresce-se a iatrogenia pela indicação de dietas restritas e jejum prolongado aos pacientes hospitalizados. Como fatores agravantes, há má absorção intestinal de gorduras e o hipermetabolismo associado ao alcoolismo agudo. Hipoglicemia, resistência insulínica, esteatose e hipertrigliceridemia constituem achados comuns, assim como níveis elevados de alguns aminoácidos com conseqüências neurológicas. O entendimento desses mecanismos fisiopatológicos permite a intervenção nutricional apropriada reduzindo a morbidade e mortalidade desses pacientes.

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A doença hepática, alcoolismo e desnutrição são condições comumente associadas que interferem no metabolismo de micronutrientes. Como resultado da doença hepática pode ocorrer menor estocagem e conversão de vitaminas nas suas formas ativas, e má digestão e/ou má absorção. Há ainda o agravante do álcool diminuindo a ingestão e absorção de micronutrientes em virtude da redução da ingestão dietética e de sua associação com doença do intestino delgado ou pancreática. Outras causas de deficiências seriam: tratamento com drogas, peroxidação lipídica, déficit protéico, maior excreção urinária e aumento da necessidade e degradação de nutrientes. Como conseqüências dessas deficiências, esses pacientes apresentam usualmente anemia, esteatose hepática, estresse oxidativo e imunossupressão.