29 resultados para Lipotoxicity


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Chronic intake of saturated free fatty acids is associated with diabetes and may contribute to the impairment of functional beta cell mass. Mitogen activated protein kinase 8 interacting protein 1 also called islet brain 1 (IB1) is a candidate gene for diabetes that is required for beta cell survival and glucose-induced insulin secretion (GSIS). In this study we investigated whether IB1 expression is required for preserving beta cell survival and function in response to palmitate. Chronic exposure of MIN6 and isolated rat islets cells to palmitate led to reduction of the IB1 mRNA and protein content. Diminution of IB1 mRNA and protein level relied on the inducible cAMP early repressor activity and proteasome-mediated degradation, respectively. Suppression of IB1 level mimicked the harmful effects of palmitate on the beta cell survival and GSIS. Conversely, ectopic expression of IB1 counteracted the deleterious effects of palmitate on the beta cell survival and insulin secretion. These findings highlight the importance in preserving the IB1 content for protecting beta cell against lipotoxicity in diabetes.

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The potential lipotoxic effect of intramyocellular triglyceride (IMTG) accumulation has been suggested to be a major component in the development of insulin resistance. Increased levels of IMTGs correlate with insulin resistance in both obese and diabetic patients, but this relationship does not exist in endurance trained (ETr) subjects. This may be, in part, related to differences in the gene expression and activities of key enzymes involved in fatty acid transport and oxidation as well as in the perodixation status of the IMTGs in obese/diabetic patients as compared with ETr subjects. Disruptions in fat and lipid homeostasis in skeletal muscle have been shown to activate protein kinase C (PKC), which acts on several downstream signalling pathways, including the insulin and the IB kinase (IKK)/NFB signalling pathways. Additionally, an increased peroxidation of IMTGs may reduce insulin sensitivity by increasing TNF, which is known to increase the expression of suppressor of cytokine signalling proteins (SOCS). A common characteristic observed when activating both PKC and TNF/SOCS3 is the inhibition of tyrosine phosphorylation of IRS-1 and subsequently an inhibition of its activation of downstream signalling molecules. These may be important players in the development of insulin resistance and understanding their activation and expression in both obese and ETr humans should assist in understanding how and why IMTGs become lipotoxic.


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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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

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A leptospirose humana é uma doença infecciosa aguda de amplo espectro clínico e que cursa com alterações metabólicas e dislipidêmicas envolvendo colesterol total e frações, triglicerídeos e ácidos graxos não esterificados (AGNEs). Dentre os mecanismos celulares envolvidos na sua fisiopatologia encontram-se a inibição da enzima Na, K ATPase pela endotoxina GLP e a lipotoxicidade, ambos agravados pela redução dos níveis circulantes da albumina, molécula que exerce um papel fundamental na adsorção de moléculas lipídicas. Neste estudo observacional, determinamos as concentrações séricas de bilirrubina, creatinina e albumina e, pela técnica de cromatografia líquida de alta performance, a concentração sérica dos AGNEs de cadeia longa (C16: C18) de 27 pacientes com síndrome de Weil durante o período de internação hospitalar, dos quais cinco vieram a falecer. Verificamos correlações significantes (p<0,05) ao longo da internação hospitalar, nas concentrações séricas de marcadores bioquímicos de gravidade da doença (bilirrubina, creatinina e albumina), AGNEs, ácido oléico e ácido linoléico, e relação molar ácido oléico/ albumina, com r (Pearson) de -0,7981, -0,7699, 0,9014, -0,8795 -0,9816, -0,9694, -0,9821, respectivamente. A relação molar ácido oléico/ albumina e ácido oléico+ linoléico/albumina foi significantemente mais elevada nos pacientes que faleceram (p<0,001), retornando aos valores semelhantes aos do grupo controle nos pacientes que evoluíram para a cura. Na análise por Curva Roc, a relação molar ácido oléico/albumina se mostrou um bom teste preditivo, com valor de corte 0,705 associado com maior especificidade e sensibilidade prognóstica. Nossos resultados sugerem que a utilização parenteral da albumina humana em pacientes com leptospirose pode ser uma potente ferramenta terapêutica nos casos mais graves ao interferir positivamente no resgate do equilíbrio bioquímico das relações molares ácido oléico/ albumina e ácido oléico+linoléico/albumina.

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Introdução: A atual epidemia de obesidade tem chamado a atenção para a doença hepática gordurosa não alcoólica (DHGNA). Atualmente não existe um medicamento para o tratamento da esteatose hepática, embora as estatinas sejam muito prescritas para pacientes obesos, este medicamento destina-se ao tratamento da hipercolesterolemia. Este trabalho teve como objetivo investigar os efeitos da rosuvastatina em um modelo de obesidade induzida por dieta, como foco principal a DHGNA e os marcadores hepáticos da lipogênese e beta-oxidação e ativação de células estreladas hepáticas (CEHs) em camundongos. Métodos: Camundongos machos C57BL/6 receberam dieta padrão (SC, 10% de energia como lipídios) ou dieta rica em gorduras (HF, 50% de energia como lipídios) durante 12 semanas. Em seguida, 7 semanas de tratamento, foram feitas, formando os grupos: SC, SCR (SC + rosuvastatina), HF e HFR (HF + rosuvastatina). As análises bioquímicas e técnicas moleculares foram aplicadas para abordar os resultados plasmáticos e moleculares. Resultados: O grupo HF apresentou maiores valores de insulina, colesterol total, triglicerídeos e leptina que o grupo SC, todos os quais foram reduzidos significativamente após o tratamento com Rosuvastatina no grupo HFR. O grupo HF apresentou maior percentual de esteatose, assim como maior ativação das CEHs, enquanto que a rosuvastatina provocou uma redução de 21% na esteatose hepática e atenuou a ativação das CEHs no grupo HFR. Em concordância com os achados histológicos, as expressões de SREBP-1 e PPAR-gama foram aumentados nos animais HF e reduzido após o tratamento no grupo HFR. Por outro lado, a expressão reduzida de PPAR-alfa e CPT-1 foram encontrados nos animais HF, sendo tais parâmetros restaurados após o tratamento no grupo HFR. Conclusão: A rosuvastatina atenua significativamente a ativação das células estreladas na obesidade induzida por dieta, afetando o equilíbrio dos PPARs na lipotoxicidade. Diante desses achados a Rosuvastatina pode ser indicada como alternativa para auxiliar o tratamento da esteatose hepática.

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increasing prevalence of obesity combined with longevity will produce an epidemic of Type 2 (non-insulin-dependent) diabetes in the next 20 years. This. disease is associated with defects in insulin secretion, specifically abnormalities of insulin secretory kinetics and pancreatic beta-cell glucose responsiveness. Mechanisms underlying beta-cell dysfunction include glucose toxicity, lipotoxicity and beta-cell hyperactivity. Defects at various sites in beta-cell signal transduction pathways contribute, but no single lesion can account for the common form of Type 2 diabetes. Recent studies highlight diverse beta-cell actions of GLP-1 (glucagon-like peptide-1) and GIP (glucose-dependent insulinotropic polypeptide). These intestinal hormones target the beta-cell to stimulate glucose-dependent insulin secretion through activation of protein kinase A and associated pathways. Both increase gene expression and proinsulin biosynthesis, protect against apoptosis and stimulate replication/neogenesis of beta-cells. Incretin hormones therefore represent an exciting future multi-action solution to correct beta-cell defect in Type 2 diabetes.

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Purpose: Diabetic myocardium is particularly vulnerable to develop heart failure in response to chronic stress conditions including hypertension or myocardial infarction. We have recently observed that angiotensin II (Ang II)-mediated downregulation of the fatty acid oxidation pathway favors occurrence of heart failure by myocardial accumulation of lipids (lipotoxicity). Because diabetic heart is exposed to high levels of circulating fatty acid, we determined whether insulin resistance favors development of heart failure in mice with Ang II-mediated myocardial remodeling.Methods: To study the combined effect of diabetes and Ang II-induced heart remodeling, we generated leptin-deficient/insulin resistant (Lepob/ob) mice with cardiac targeted overexpression of angiotensinogen (TGAOGN). Left ventricular (LV) failure was indicated by pulmonary congestion (lung weight/tibial length>+2SD of wild-type mice). Myocardial metabolism and function were assessed during in vitro isolated working heart perfusion.Results: Forty-eight percent of TGAOGN mice without insulin resistance exhibited pulmonary congestion at the age of 6 months associated with increased myocardial BNP expression (+375% compared with WT) and reduced LV power (developed pressure x cardiac output; -15%). The proportion of mice presenting heart failure was markedly increased to 71% in TGAOGN mice with insulin resistance (TGAOGN/Lepob/ob). TGAOGN/Lepob/ob mice with heart failure exhibited further increase of BNP compared with failing non-diabetic TGAOGN mice (+146%) and further reduction of cardiac power (-59%). Mice with insulin resistance alone (Lepob/ob) did not exhibit signs of heart failure or LV dysfunction. Myocardial fatty acid oxidation measured during in vitro perfusion was markedly increased in non-failing hearts from Lepob/ob mice (+380% compared with WT) and glucose oxidation decreased (-72%). In contrast, fatty acid and glucose oxidation did not differ from Lepob/ob mice in hearts from TGAOGN/Lepob/ob mice without heart failure. However, both fatty acid and glucose oxidation were markedly decreased (-47% and -48%, respectively, compared with WT/Lepob/+) in failing hearts from TGAOGN/Lepob/ob mice. Reduction of fatty acid oxidation was associated with marked reduction of protein expression of a number of regulatory enzymes implied in fatty acid oxidation.Conclusions: Insulin resistance favors the progression to heart failure during chronic exposure of the myocardium to Ang II. Our results are compatible with a role of Ang II-mediated downregulation of fatty acid oxidation, potentially promoting lipotoxicity.

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Résumé L’augmentation de l’espérance de vie chez les patients atteints de fibrose kystique (FK) entraine une augmentation de la prévalence des anomalies de tolérance au glucose, soit l’intolérance au glucose (IGT) et le diabète (DAFK). En dépit du fait, que les anomalies de la tolérance au glucose soient associées à un mauvais prognostic, l’origine de ces troubles n’est pas encore clairement établie. Notre objectif était d’examiner le rôle de l’insulinopénie et de la résistance à l’insuline dans la détérioration de la tolérance au glucose dans une cohorte prospective observationelle patients FK non diabétique. Nos résultats démontrent une réduction marquée de la phase précoce de la sécrétion de l’insuline ainsi qu’une augmentation de l’aire sous la courbe de la glycémie (AUC) chez tous les groupes de patients. Nous avons aussi démontré qu’une variation de la sensibilité à l’insuline joue un rôle prépondérant dans les changements de catégorie de tolérance au glucose dans cette population. Finalement, il semblerait que l’augmentation de l’AUC du glucose et la réduction de la phase précose de la sécrétion d’insuline sont des meileurs prédicateurs du status clinique que les catégories de tolérance au glucose. Il existe plusieurs indices pour évaluer la sécrétion d’insuline et pourtant aucun n’a été validé chez les patients FK. Nous avons examiné la validité des index de la sécrétion de l’insuline dérivés de l’hyperglycémie provoquée par voie orale (HGPO) ainsi que des valeurs à jeun par rapport au test de référence. Alors que la plupart des index calculés à partir de l’HGPO corrèlent significativement avec les valeurs du test de référence, cela n’est pas le cas pour les index calculés à partir des valeurs à jeun. La validation de ces index nous permet d’évaluer la sécrétion de l’insuline prospectivement dans notre cohorte de FK à partir de l’HGPO, est un test recommandé pour le dépistage du DAFK. Les recommandations nutritionnelles suggèrent aux patients FK une diète comprenant environ 40% de lipides afin d’éviter la malnutrition. Nous avons examiné le profil lipidique des patients FK diabétiques et non diabétiques après une HGPO et un repas hyperlipidique (RT). Nos résultats démontrent que la FK est associée à des augmentations de l’excursion glycémique lors de l’HGPO ou d’un RT comparativement aux témoins. Cependant, le RT provoque 1) une plus faible excursion glycémique comparativement à l’HGPO ; 2) une meilleure suppression de la production hépatique de glucose et 3) l’excursion lipidique postprandiale des patients FK reste normale. Il est donc peu probable que les anomalies de la sécrétion de l’insuline par les cellules  soient secondaires à une lipotoxicité. Nous avons aussi examiné les taux d’adiponectine, une hormone sécrétée par le tissu adipeux et pouvant moduler l’action de l’insuline. Les niveaux d’adiponectine corrèlent négativement avec plusieurs facteurs présents chez les patients FK incluant l’IGT, l’inflammation et une adiposité centrale en dépit d'un faible poids corporel. Les patients FK ne présentaient aucune altération des taux d’adiponectine malgré la présence d’une résistance à l’insuline, une inflammation sub-clinique et de l’IGT. La FK apparaît donc comme une condition où il existe une discordance entre les taux d’adiponectine et la résistance à l’insuline ou l’inflammation. En conclusion la prévalence de l’IGT est élevée dans cette population caractérisée par une excursion glycémique anormalement plus élevée, due principalement à une altération de la sécrétion de l’insuline exacerbée par une résistance à l’insuline. Mots clés : Adiponectine, Hyperglycémie par voie oral (HGPO), intolérance au glucose, fibrose kystique, diabète, résistance à l’insuline, sécrétion de l’insuline.

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Dans les cellules somatotropes, la liaison du facteur de libération de l’hormone de croissance (GHRH) à son récepteur (GHRH-R) stimule la synthèse et la sécrétion de l’hormone de croissance (GH) ainsi que la prolifération cellulaire. Chez les mammifères, le vieillissement est caractérisé par une diminution de la sécrétion de GH, liée à une perte de sensibilité des somatotropes au GHRH. Chez le rat âgé, des modifications de niveaux d'ARNm du GHRH-R et une diminution d'affinité et de capacité de liaison du GHRH sont rapportés. Au cours du vieillissement, une augmentation des niveaux de glucose et d’acides gras libres sérique suggère qu’une gluco- ou lipotoxicité puisse contribuer au dysfonctionnement de la fonction somatotrope. À ce jour, la restriction calorique modérée de longue durée (RCMLD) constitue l’intervention la plus efficace pour prévenir ou retarder les détériorations liées à l’âge. Des études ont montré des effets bénéfiques de la RCMLD sur l’axe somatotrope au cours du vieillissement via un maintien des paramètres de liaison du GHRH-R. Compte tenu de l’importance de cet axe, la compréhension des mécanismes menant à la somatopause ainsi que ceux associés aux effets bénéfiques de la RCMLD s’avère importante. Les objectifs principaux de la présente thèse étaient : 1) de déterminer les effets de la RCMLD chez le rat, sur le GHRH-R hypophysaire et la sensibilité des somatotropes au GHRH, 2) d’identifier les mécanismes associés à la somatopause et aux effets bénéfiques de la RCMLD, et 3) de préciser les effets d’une gluco-ou lipotoxicité sur l’axe somatotrope de rats et leur implication dans la somatopause. Des rats de 8 mois ont été soumis à une restriction calorique de 40% jusqu’à l’âge de 18-20 mois et ont été comparés à des rats jeunes et âgés nourris ad libitum. Cette étude a permis de mettre en évidence des effets bénéfiques de la RCMLD sur la régulation et la fonctionnalité du GHRH-R et de proposer que le glucose et les acides gras libres (AGL) circulants soient impliqués dans le vieillissement de la somatotrope. Une étude de micro-puce à ADN à permis d’identifier des gènes associés à des mécanismes de protection et de réparation des dommages cellulaires mis en place dans l’hypophyse antérieure au cours du vieillissement et par la RCMLD. Finalement, les effets d’un stress gluco- ou lipotoxique sur la fonction somatotrope ont été étudiés chez des rats de 2 et 6 mois, infusés 72 h avec une solution de glucose ou d’Intralipides, mimant les niveaux circulants de glucose et d’AGL retrouvés chez le rat âgé. Les résultats obtenus montrent que la glucotoxicité affecte la régulation de certains gènes de la somatotrope, dont le GHRH-R, et suggèrent que la capacité de réponse à ce type de stress est altérée. Les mécanismes par lesquels la glucotoxicité exerce ces effets pourraient inclure la génération de stress oxydant. L’ensemble de ces résultats proposent de nouvelles pistes mécanistiques qui pourraient contribuer au retardement de la somatopause et, ultimement, à l’élaboration de nouvelles stratégies d’intervention nutritionnelles ou pharmacologiques ciblant les mêmes voies que la RCMLD, avec une efficacité similaire ou supérieure.

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OBJECTIF: L’apoB plasmatique prédit le diabète de type 2 chez l’humain. Une clairance ralentie des triglycérides (TG) favorise la lipotoxicité et la résistance à l’insuline (RI). Nous avons démontré ex vivo que les LDL, forme majeure d’apoB-lipoprotéines, altèrent le stockage des gras dans le tissu adipeux blanc (TAB) humain. Nous émettons l’hypothèse que le lien reliant l’apoB plasmatique à la RI et l’hyperinsulinémie est médié par un retard de clairance des gras diététiques. MÉTHODE/RÉSULTATS: Nous avons examiné la sécrétion d’insuline (SI), puis la RI lors d’un test de tolérance au glucose intraveineux suivi d’un clamp hyperinsulinémique-euglycémique chez des sujets obèses normoglycémiques (N=29, 45%hommes, indice de masse corporelle (IMC)≥27kg/m2, 45-74ans, post-ménopausés). La clairance des TG diététiques a été mesurée suivant l’ingestion d’un repas gras marqué au 13C. La fonction d’une biopsie de TAB (à jeun) a été mesurée comme la capacité à stocker un substrat de 3H-TG. L’apoB était de 1,03±0,05g/L et corrélait avec la RI, la 2ième phase de SI, un délai de clairance des TG diététiques et une réduction de la fonction du TAB. Un retard de clairance des TG diététiques était associé à la RI et la 2ième phase de SI. Une correction pour la clairance des TG diététiques ou la fonction du TAB a éliminé l’association entre l’apoB et la RI et la 2ième phase de SI. CONCLUSION: L’association entre l’apoB plasmatique et la RI et la SI chez les sujets obèses est médiée par une clairance ralentie des gras diététiques et une dysfonction du TAB.

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Background FFAR1 receptor is a long chain fatty acid G-protein coupled receptor which is expressed widely, but found in high density in the pancreas and central nervous system. It has been suggested that FFAR1 may play a role in insulin sensitivity, lipotoxicity and is associated with type 2 diabetes. Here we investigate the effect of three common SNPs of FFAR1 (rs2301151; rs16970264; rs1573611) on pancreatic function, BMI, body composition and plasma lipids. Methodology/Principal Findings For this enquiry we used the baseline RISCK data, which provides a cohort of overweight subjects at increased cardiometabolic risk with detailed phenotyping. The key findings were SNPs of the FFAR1 gene region were associated with differences in body composition and lipids, and the effects of the 3 SNPs combined were cumulative on BMI, body composition and total cholesterol. The effects on BMI and body fat were predominantly mediated by rs1573611 (1.06 kg/m2 higher (P = 0.009) BMI and 1.53% higher (P = 0.002) body fat per C allele). Differences in plasma lipids were also associated with the BMI-increasing allele of rs2301151 including higher total cholesterol (0.2 mmol/L per G allele, P = 0.01) and with the variant A allele of rs16970264 associated with lower total (0.3 mmol/L, P = 0.02) and LDL (0.2 mmol/L, P<0.05) cholesterol, but also with lower HDL-cholesterol (0.09 mmol/L, P<0.05) although the difference was not apparent when controlling for multiple testing. There were no statistically significant effects of the three SNPs on insulin sensitivity or beta cell function. However accumulated risk allele showed a lower beta cell function on increasing plasma fatty acids with a carbon chain greater than six. Conclusions/Significance Differences in body composition and lipids associated with common SNPs in the FFAR1 gene were apparently not mediated by changes in insulin sensitivity or beta-cell function.

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The endocannabinoid system (ECS) was only 'discovered' in the 1990s. Since then, many new ligands have been identified, as well as many new intracellular targets--ranging from the PPARs, to mitochondria, to lipid rafts. It was thought that blocking the CB-1 receptor might reverse obesity and the metabolic syndrome. This was based on the idea that the ECS was dysfunctional in these conditions. This has met with limited success. The reason may be that the ECS is a homeostatic system, which integrates energy seeking and storage behaviour with resistance to oxidative stress. It could be viewed as having thrifty actions. Thriftiness is an innate property of life, which is programmed to a set point by both environment and genetics, resulting in an epigenotype perfectly adapted to its environment. This thrifty set point can be modulated by hormetic stimuli, such as exercise, cold and plant micronutrients. We have proposed that the physiological and protective insulin resistance that underlies thriftiness encapsulates something called 'redox thriftiness', whereby insulin resistance is determined by the ability to resist oxidative stress. Modern man has removed most hormetic stimuli and replaced them with a calorific sedentary lifestyle, leading to increased risk of metabolic inflexibility. We suggest that there is a tipping point where lipotoxicity in adipose and hepatic cells induces mild inflammation, which switches thrifty insulin resistance to inflammation-driven insulin resistance. To understand this, we propose that the metabolic syndrome could be seen from the viewpoint of the ECS, the mitochondrion and the FOXO group of transcription factors. FOXO has many thrifty actions, including increasing insulin resistance and appetite, suppressing oxidative stress and shifting the organism towards using fatty acids. In concert with factors such as PGC-1, they also modify mitochondrial function and biogenesis. Hence, the ECS and FOXO may interact at many points; one of which may be via intracellular redox signalling. As cannabinoids have been shown to modulate reactive oxygen species production, it is possible that they can upregulate anti-oxidant defences. This suggests they may have an 'endohormetic' signalling function. The tipping point into the metabolic syndrome may be the result of a chronic lack of hormetic stimuli (in particular, physical activity), and thus, stimulus for PGC-1, with a resultant reduction in mitochondrial function and a reduced lipid capacitance. This, in the context of a positive calorie environment, will result in increased visceral adipose tissue volume, abnormal ectopic fat content and systemic inflammation. This would worsen the inflammatory-driven pathological insulin resistance and inability to deal with lipids. The resultant oxidative stress may therefore drive a compensatory anti-oxidative response epitomised by the ECS and FOXO. Thus, although blocking the ECS (e.g. via rimonabant) may induce temporary weight loss, it may compromise long-term stress resistance. Clues about how to modulate the system more safely are emerging from observations that some polyphenols, such as resveratrol and possibly, some phytocannabinoids, can modulate mitochondrial function and might improve resistance to a modern lifestyle.

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The peroxisomal proliferating-activated receptors (PPARs) are lipid-sensing transcription factors that have a role in embryonic development, but are primarily known for modulating energy metabolism, lipid storage, and transport, as well as inflammation and wound healing. Currently, there is no consensus as to the overall combined function of PPARs and why they evolved. We hypothesize that the PPARs had to evolve to integrate lipid storage and burning with the ability to reduce oxidative stress, as energy storage is essential for survival and resistance to injury/infection, but the latter increases oxidative stress and may reduce median survival (functional longevity). In a sense, PPARs may be an evolutionary solution to something we call the 'hypoxia-lipid' conundrum, where the ability to store and burn fat is essential for survival, but is a 'double-edged sword', as fats are potentially highly toxic. Ways in which PPARs may reduce oxidative stress involve modulation of mitochondrial uncoupling protein (UCP) expression (thus reducing reactive oxygen species, ROS), optimising forkhead box class O factor (FOXO) activity (by improving whole body insulin sensitivity) and suppressing NFkB (at the transcriptional level). In light of this, we therefore postulate that inflammation-induced PPAR downregulation engenders many of the signs and symptoms of the metabolic syndrome, which shares many features with the acute phase response (APR) and is the opposite of the phenotype associated with calorie restriction and high FOXO activity. In genetically susceptible individuals (displaying the naturally mildly insulin resistant 'thrifty genotype'), suboptimal PPAR activity may follow an exaggerated but natural adipose tissue-related inflammatory signal induced by excessive calories and reduced physical activity, which normally couples energy storage with the ability to mount an immune response. This is further worsened when pancreatic decompensation occurs, resulting in gluco-oxidative stress and lipotoxicity, increased inflammatory insulin resistance and oxidative stress. Reactivating PPARs may restore a metabolic balance and help to adapt the phenotype to a modern lifestyle.

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Background: Obese adults are prone to develop metabolic and cardiovascular diseases. Furthermore, over-weight expectant mothers give birth to large babies who also have increased likelihood of developing metabolic and cardiovascular diseases. Fundamental advancements to better understand the pathophysiology of obesity are critical in the development of anti-obesity therapies not only for this but also future generations. Skeletal muscle plays a major role in fat metabolism and much work has focused in promoting this activity in order to control the development of obesity. Research has evaluated myostatin inhibition as a strategy to prevent the development of obesity and concluded in some cases that it offers a protective mechanism against a high-fat diet. Results: We hypothesised that myostatin inhibition should protect not only the mother but also its developing foetus from the detrimental effects of a high-fat diet. Unexpectedly, we found muscle development was attenuated in the foetus of myostatin null mice raised on a high-fat diet. We therefore re-examined the effect of the high-fat diet on adults and found myostatin null mice were more susceptible to diet-induced obesity through a mechanism involving impairment of inter-organ fat utilization. Conclusions: Loss of myostatin alters fatty acid uptake and oxidation in skeletal muscle and liver. We show that abnormally high metabolic activity of fat in myostatin null mice is decreased by a high-fat diet resulting in excessive adipose deposition and lipotoxicity. Collectively, our genetic loss-of-function studies offer an explanation of the lean phenotype displayed by a host of animals lacking myostatin signalling. Keywords: Muscle, Obesity, High-fat diet, Metabolism, Myostatin