981 resultados para Fármacos inhibidores de mTOR


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The mammalian target of rapamycin (mTOR), which exists in two functionally distinct complexes, mTORC1 and mTORC2 plays an important role in tumor growth. Whereas the role of mTORC1 has been well characterized in this process, little is known about the functions of mTORC2 in cancer progression. In this study, we explored the specific role of mTORC2 in colon cancer using a short hairpin RNA expression system to silence the mTORC2-associated protein rictor. We found that downregulation of rictor in HT29 and LS174T colon cancer cells significantly reduced cell proliferation. Knockdown of rictor also resulted in a G1 arrest as observed by cell cycle analysis. We further observed that LS174T cells deficient for rictor failed to form tumors in a nude mice xenograft model. Taken together, these results show that the inhibition of mTORC2 reduces colon cancer cell proliferation in vitro and tumor xenograft formation in vivo. They also suggest that specifically targeting mTORC2 may provide a novel treatment strategy for colorectal cancer.

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Astrocytes exhibit a prominent glycolytic activity, but whether such a metabolic profile is influenced by intercellular communication is unknown. Treatment of primary cultures of mouse cortical astrocytes with the nitric oxide (NO) donor DetaNONOate induced a time-dependent enhancement in the expression of genes encoding various glycolytic enzymes as well as transporters for glucose and lactate. Such an effect was shown to be dependent on the hypoxia-inducible factor HIF-1α, which is stabilized and translocated to the nucleus to exert its transcriptional regulation. NO action was dependent on both the PI3K/Akt/mTOR and MEK signaling pathways and required the activation of COX, but was independent of the soluble guanylate cyclase pathway. Furthermore, as a consequence of NO treatment, an enhanced lactate production and release by astrocytes was evidenced, which was prevented by downregulating HIF-1α. Several brain cell types represent possible sources of NO. It was found that endothelial cells, which express the endothelial NO synthase (eNOS) isoform, constitutively produced the largest amount of NO in culture. When astrocytes were cocultured with primary cultures of brain vascular endothelial cells, stabilization of HIF-1α and an enhancement in glucose transporter-1, hexokinase-2, and monocarboxylate transporter-4 expression as well as increased lactate production was found in astrocytes. This effect was inhibited by the NOS inhibitor l-NAME and was not seen when astrocytes were cocultured with primary cultures of cortical neurons. Our findings suggest that endothelial cell-derived NO participates to the maintenance of a high glycolytic activity in astrocytes mediated by astrocytic HIF-1α activation.

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Abstract : The term "muscle disuse" is often used to refer collectively to reductions in neuromuscular activity as observed with sedentary lifestyles, reduced weight bearing, cancer, chronic obstructive pulmonary disease, chronic heart failure, spinal cord injury, sarcopenia or exposure to microgravity (spaceflight). Muscle disuse atrophy, caused by accelerated proteolysis, is predominantly due to the activation of the ATP-dependent ubiquitin (Ub) proteasome pathway. The current advances in understanding the molecular factors contributing to the Ub-dependent proteolysis process have been made mostly in rodent models of human disease and denervation with few investigations performed directly in humans. Recently, in mice, the genes Atrogin-1 and MuRF1 have been designated as primary candidates in the control of muscle atrophy. Additionally, the decreased activity of the Akt/GSK-3ß and Akt/mTOR pathways has been associated with a reduction in protein synthesis and contributing to skeletal muscle atrophy. Therefore, it is now commonly accepted that skeletal muscle atrophy is the result of a decreased protein synthesis concomitant with an increase in protein degradation (Glass 2003). Atrogin-1 and MuRF1 are genes expressed exclusively in muscle. In mice, their expression has been shown to be directly correlated with the severity of atrophy. KO-mice experiments showed a major protection against atrophy when either of these genes were deleted. Skeletal muscle hypertrophy is an important function in normal postnatal development and in the adaptive response to exercise. It has been shown, in vitro, that the activation of phosphatidylinositol 3-kinase (PI-3K), by insulin growth factor 1 (IGF-1), stimulates myotubes hypertrophy by activating the downstream pathways, Akt/GSK-3ß and Akt/mTOR. It has also been demonstrated in mice, in vivo, that activation of these signalling pathways causes muscle hypertrophy. Moreover, the latter were recently proposed to also reduce muscle atrophy by inhibiting the FKHR mediated transcription of several muscle atrophy genes; Atrogin-1 and MuRF1. Therefore, these targets present new avenues for developing further the understanding of the molecular mechanisms involved in both skeletal muscle atrophy and hypertrophy. The present study proposed to investigate the regulation of the Akt/GSK-3ß and Akt/mTOR signalling pathways, as well as the expression levels of the "atrogenes", Atrogin-1 and MuRF1, in four human models of skeletal muscle atrophy. In the first study, we measured the regulation of the Akt signalling pathway after 8 weeks of both hypertrophy stimulating resistance training and atrophy stimulation de-training. As expected following resistance training, muscle hypertrophy and an increase in the phosphorylation status of the different members of the Akt pathway was observed. This was paralleled by a concomitant decrease in FOXO1 nuclear protein content. Surprisingly, exercise training also induced an increase in the, expression of the atrophy genes and proteins involved in the ATP-dependant ubiquitin-proteasome system. On the opposite, following the de-training period a muscle atrophy, relative to the post-training muscle size, was measured. At the same time, the phosphorylation levels of Akt and GSK-3ß were reduced while the amount of FOXO1 in the nucleus increased. After the atrophy phase, there was also a reduction in Atrogin-1 and MuRF1 contents. In this study, we demonstrate for the first time in healthy human skeletal muscle, that the regulation of Akt and its downstream targets GSK-3ß, mTOR and FOXO1 are associated with both thé skeletal muscle hypertrophy and atrophy processes. Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disease characterized by the loss of both upper and lower motor neurons, which leads to severe muscle weakness and atrophy. All measurements were performed in biopsies from 22 ALS patients and 16 healthy controls. ALS patients displayed an increase in Atrogin-1 mRNA and protein content which was associated with a decrease in Akt activity. However there was no difference in the mRNA and phospho-protein content of FOXO1, FOXO3a, p70S6K and GSK-3ß. The transcriptional regulation of human Atrogin-1 may be controlled by an Akt-mediated transcription factor other than FKHR or via an other signalling pathway. Chronic complete spinal cord injury (SCI) is associated with severe muscle atrophy which is linked to co-morbidity factors such as diabetes, obesity, lipid disorders and cardiovascular diseases. Molecular mechanisms associated with chronic complete SCI-related muscle atrophy are not well understood. The aim of the present study was to determine if there was an increase in catabolic signalling targets such as Atrogin-1, MuRF1, FOXO and myostatin, and decreases in anabolic signalling targets such as IGF, Akt, GSK-3ß, mTOR, 4E-BP1 and p-70S6K in chronic complete SCI patients. All measurements were performed in biopsies taken from 8 complete chronic SCI patients and 7 age matched healthy controls. In SCI patients when compared with controls, there was a significant reduction in mRNA levels of Atrogin1, MuRF1 and Myostatin. Protein levels for Atrogin-1, FOX01 and FOX03a were also reduced. IGF-1 and both phosphorylated GSK-3ß and 4E-BP1 were decreased; the latter two in an Akt and mTOR independent manner, respectively. Reductions in Atrogin-1, MuRF1, FOXO and myostatin suggest the existence of an internal mechanism aimed at reducing further loss of muscle proteins during chronic SCI. The downregulation of signalling proteins regulating anabolism such as IGF, GSK3ß and 4E-BP1 would reduce the ability to increase protein synthesis rates in this chronic state of muscle wasting. The molecular mechanisms controlling age-related skeletal muscle loss in humans are poorly understood. The present study aimed to investigate the regulation of several genes and proteins involved in the activation of key signalling pathways promoting muscle hypertrophy such as GH/STAT5/IGF, IGF/Akt/GSK-3ß/4E-BP1 and muscle atrophy such as TNFα/SOCS3 and Akt/FOXO/Atrogin-1 or MuRF1 in muscle biopsies from 13 young and 16 elderly men. In the older, as compared with the young subjects, TNFα and SOCS-3 were increased while growth hormone receptor protein (GHR) and IGF-1 mRNA were both decreased. Akt protein levels were increased however no change in phosphorylated Akt content was observed. GSK-3ß phosphorylation levels were increased while 4E-BP1 was not changed. Nuclear FKHR and FKHRL1 protein levels were decreased, with no changes in their atrophy target genes, Atrogin-1 and MuRF1. Myostatin mRNA and protein levels were significantly elevated. Human sarcopenia may be linked to a reduction in the activity or sensitivity of anabolic signalling proteins such as GHR, IGF and Akt. TNFα, SOCS-3 and myostatin are potential candidates influencing this anabolic perturbation. In conclusion our results support those obtained in rodent or ín vitro models, and demonstrate Akt plays a pivotal role in the control of muscle mass in humans. However, the Akt phosphorylation status was dependant upon the model of muscle atrophy as Akt phosphorylation was reduced in all atrophy models except for SCI. Additionally, the activity pattern of the downstream targets of Akt appears to be different upon the various human models. It seems that under particular conditions such as spinal cord injury or sarcopenia, .the regulation of GSK-3ß, 4eBP1 and p70S6K might be independent of Akt suggesting alternative signalling pathways in the control of these the anabolic response in human skeletal muscle. The regulation of Atrogin-1 and MuRF1 in some of our studies has been shown to be also independent of the well-described Akt/FOXO signalling pathway suggesting that other transcription factors may regulate human Atrogin-1 and MuRF1. These four different models of skeletal muscle atrophy and hypertrophy have brought a better understanding concerning the molecular mechanisms controlling skeletal muscle mass in humans.

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Heart transplantation remains the best therapeutic option for the treatment of end-stage heart failure. However, good survival rates can be obtained only if patients are closely monitored, particularly for their immunosuppressive regimens. Currently, a triple-drug regimen usually based on calcineurin-inhibitors (cyclosporin A or tacrolimus), anti-proliferative agents and steroids is used in most recipients. New agents such as the mTOR inhibitors, a more recently developed class of immunosuppressive drugs, can also be used in some patients. The aim of this article is to review currently used immunosuppressive regimens after heart transplantation, and to propose some individualized options depending on specific patient characteristics and recent pharmacological developments in the field.

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Objectiu: comparar la eficàcia entre Ranibizumab y Bevacizumab en el tractament de la DMAE de tipus exudatiu. Material i mètode Es tracta d’un estudi retrospectiu en el que es comparen a curt termini dos fàrmacs antiangiogènics utilitzats en el tractament de DMAE exudativa per via intravitrea: el Ranibizumab iel Bevacizumab. Hem seleccionat pacients amb DMAE exudativa tractats amb teràpia antiangiogènica i s’han distribuït en dos grups segons el tractament realitzat. Els pacients van ser tractats en el període comprés entre Gener del 2007 i Novembre del 2007, deprés d’uns mesos de l’aprovació del Ranibizumab intravitri per tractament de DMAE per la FDA. Resultats: La diferència entre l’AV mitja abans i després del tractament no era estadísticament significativa en cap dels dos grups tractats, mentre que la diferència entre el gruix macular antes i després del tractament en ambdós grups ha millorat de manera estadísticament significativa. Comparem a continuació el grau de millora per OCT en ambdós grups. Procedim a l’aplicació del test de Mann-Whitney per comparar si existeix diferència en la disminució del gruix de la màcula entre els dos grups. Evidenciem que la diferència no era clínicament significativa (p = 0.705) Conclusió: Els resultats obtinguts en el nostre estudi no mostren diferència entre els dos fàrmacs en el tractament de la DMAE exudativa a curt termini però reforcen la necessitat de futurs estudis prospectius i randomitzats

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La preeclàmpsia greu és una malaltia multisistemàtica que es caracteritza per tenir presents alguns dels següents símptomes: PA ≥160 / 110, proteïnúria & 5 g/ 24 h, creatinina plasmàtica elevada, oligúria & 500 cc / 24 h, plaquetes & 100.000 /L, elevació de las transaminases, hemòlisis, dolor epigàstric o hipocondri dret, cefalea, alteracions visuals, mentals, edema agut de pulmó., Sd. Hellp, RCIU o oligoamnis; que apareixen durant l’embaràs. Els factors de risc més comuns entre les pacients estudiades a l’àrea matern infantil de l’ Hospital La Vall d´Hebron de Barcelona són la nuliparidat , l’obesitat i l’ edat &35 anys. Hi ha també uns altres factors menys freqüents com la HTA crònica i la gestació múltiple. En la majoria de les gestants es va seguir el protocol de l’ hipertensió arterial d’aquesta àrea. Totes van ser tractades amb sulfato de magnesi per a prevenir les convulsions i antihipertensiu. Sobre el 70% de les pacients va rebre també un tractament per a l’hipertensió amb labetalol e.v. i hidralacina e.v. Aquests fàrmacs són eficaços per al tractament de l’hipertensió en la preeclàmpsia severa. Es va comprovar que les pacients que van rebre el tractament amb hidralacina van presentar un major nombre de manifestacions clíniques i complicacions. L’anestèsia regional és el tipus d’anestèsia escollida. L’anestèsia intradural produeix el major descens de la TA en les pacients amb preeclàmpsia greu tractades amb anestèsia peridural Per altra banda, la cefalea és més freqüent desprès de l’anestèsia intradural que de l’epidural.

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MCT2 is the predominant neuronal monocarboxylate transporter allowing lactate use as an alternative energy substrate. It is suggested that MCT2 is upregulated to meet enhanced energy demands after modifications in synaptic transmission. Brain-derived neurotrophic factor (BDNF), a promoter of synaptic plasticity, significantly increased MCT2 protein expression in cultured cortical neurons (as shown by immunocytochemistry and western blot) through a translational regulation at the synaptic level. Brain-derived neurotrophic factor can cause translational activation through different signaling pathways. Western blot analyses showed that p44/p42 mitogen-activated protein kinase (MAPK), Akt, and S6 were strongly phosphorylated on BDNF treatment. To determine by which signal transduction pathway(s) BDNF mediates its upregulation of MCT2 protein expression, the effect of specific inhibitors for p38 MAPK, phosphoinositide 3-kinase (PI3K), mammalian target of rapamycin (mTOR), mitogen-activated protein kinase (MAPK)/extracellular signal-regulated kinase (ERK) kinase (MEK), p44/p42 MAPK (ERK), and Janus kinase 2 (JAK2) was evaluated. It could be observed that the BDNF-induced increase in MCT2 protein expression was almost completely blocked by all inhibitors, except for JAK2. These data indicate that BDNF induces an increase in neuronal MCT2 protein expression by a mechanism involving a concomitant stimulation of PI3K/Akt/mTOR/S6, p38 MAPK, and p44/p42 MAPK. Moreover, our observations suggest that changes in MCT2 expression could participate in the process of synaptic plasticity induced by BDNF.

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Un 5-10% de hipertensos no controlan las cifras de TA a pesar de tomar 3 o más fármacos (uno de ellos un diurético), definiendo la HTA refractaria. Estos pacientes presentan un riesgo cardiovascular más elevado. Se trata de un estudio descriptivo y observacional de 101 casos con TA sistólica por MAPA &140 mmHg. El 75% presenta patrón nictemeral alterado. El 54% presentó algún nuevo evento cardiovascular. La HVI es un factor predictor de mortalidad cardiovascular. La causa principal de HTA refractaria es la esencial, siendo la IRC la etiología más prevalente de HTA secundaria.

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• Identificar els possibles factors de risc de mortalitat en els pacients amb un primer episodi de diarrea associada a Clostridium difficile (DACD) mitjançant un estudi observacional retrospectiu. Després d’una anàlisi uni i multivariant amb les següents variables (sexe, edat, índex de Charlson, número d’antibiòtics previs i la seva retirada, ús de corticoids, inhibidors de la bomba de protons o antihistamínics antiH2, antiàcids, procedència de residència geriàtrica, dies de tractament per a la DACD, duració de l’ingrés, presència de recidiva i servei d’hospitalització), únicament l’aparició de recidiva va ser un factor de risc independent de mortalitat.

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INTRODUCCIÓ: nasofaringitis aguda (NFA) malaltia infecciosa amb elevada morbiditat-demanda en Atenció Primària. OBJECTIUS: adherència dels metges a la guia semfyc, conèixer patró epidemiològic i despesa en NFA. MATERIAL: Disseny descriptiu, anys 2009-2010. Càlcul mostral Epidat, 269 pacients. Mostreig aleatori simple. Tractament estadístic SPSS. RESULTATS: No prescripció d'antibiòtics 86,1% (p &0,05). Prevalença NFA 14%. 1 consulta mèdica (85,4%). Complicacions (2,2%). Paracetamol-AINEs (62,9%), genèrics (65%). Diferències entre prescripció antibiòtica i edat (p = 0,025) menor no prescripció a & 80años (p = 0,025). Cost mitjà total 69.6 euros (54,7-188,8; DT 22,8). CONCLUSIONS: bona adherència, alta prevalença, poques complicacions, elevada prescripció de fàrmacs simptomàtics. Cost considerable.

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: La elección del tratamiento adecuado para la estenosis aterosclerótica de arterias renales es controvertida. Los ensayos clínicos recientes demuestran que los resultados de la revascularización y el tratamiento farmacológico no son superiores a los del tratamiento con fármacos únicamente por lo que al final de un seguimiento promedio de 4 años, en 49 pacientes en el Servicio de Nefrología del Hospital Valle de Hebrón se consigue una estabilización de la función renal. A pesar de esta buena evolución la mortalidad global y las complicaciones CV siguen siendo muy elevadas.

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El tractament actual de la malaltia de Wilson amb afectació neurològica és controvertit. Els fàrmacs actuals s’associen a risc de deteriorament neurològic (50% amb penicilamina i 26% amb trientine). El nou medicament tetratiomolibdat s’està estudiant perquè sembla tenir menor freqüència d’empitjorament neurològic. S’associa a efectes secundaris lleus i generalment reversibles. A la nostra sèrie de cinc pacients vàrem observar una milloria significativa dels símptomes després del tractament amb tetratiomolibdat. No es va detectar cap empitjorament neurològic. En dos casos va haver també una millora radiològica. Un pacient va presentar lleu anèmia, leucopènia i elevació de les transaminases reversible.

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L’ús d’agents citotòxics ha incrementat la incidència de leucèmies agudes secundàries (LAS). De 23 LAS diagnosticades en 20 anys, s’analitzaren els agents citotòxics, caraterístiques clínico-biològiques, tractament i pronòstic. Els agents rebuts a la neoplàsia prèvia fóren: alquilants, inhibidors de la DNA topoisomerasa II, antitubulina i radioteràpia. El 95% de les LAS presentàven alteracions citogenètiques. Tretze pacients reberen quimioteràpia intensiva (amb un trasplantament de progenitors hematopoètics [TPH] en 3) i 10 només suport (supervivència mediana de 3 en front a 0,079 anys, p=0,004). El pronòstic i la resposta al tractament fóren dolents, però associaciar quimioteràpia i TPH podria perllongar la supervivència.

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Using genome-wide data from 253,288 individuals, we identified 697 variants at genome-wide significance that together explained one-fifth of the heritability for adult height. By testing different numbers of variants in independent studies, we show that the most strongly associated ∼2,000, ∼3,700 and ∼9,500 SNPs explained ∼21%, ∼24% and ∼29% of phenotypic variance. Furthermore, all common variants together captured 60% of heritability. The 697 variants clustered in 423 loci were enriched for genes, pathways and tissue types known to be involved in growth and together implicated genes and pathways not highlighted in earlier efforts, such as signaling by fibroblast growth factors, WNT/β-catenin and chondroitin sulfate-related genes. We identified several genes and pathways not previously connected with human skeletal growth, including mTOR, osteoglycin and binding of hyaluronic acid. Our results indicate a genetic architecture for human height that is characterized by a very large but finite number (thousands) of causal variants.

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Mechanical load-induced intracellular signaling events are important for subsequent skeletal muscle hypertrophy. We previously showed that load-induced activation of the cation channel TRPV1 caused an increase in intracellular calcium concentrations ([Ca ( 2+) ]i) and that this activated mammalian target of rapamycin (mTOR) and promoted muscle hypertrophy. However, the link between mechanical load-induced intracellular signaling events, and the TRPV1-mediated increases in [Ca ( 2+) ]i are not fully understood. Here we show that administration of the TRPV1 agonist, capsaicin, induces phosphorylation of mTOR, p70S6K, S6, Erk1/2 and p38 MAPK, but not Akt, AMPK or GSK3β. Furthermore, the TRPV1-induced phosphorylation patterns resembled those induced by mechanical load. Our results continue to highlight the importance of TRPV1-mediated calcium signaling in load-induced intracellular signaling pathways.