205 resultados para Aby Warburg


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Prezentacja do wykładu wygłoszonego w Bibliotece Uniwersyteckiej w Toruniu 9 stycznia 2014 r.

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It is proposed that select oligomers of polymer d-lactic acid (PDLA) will form a stereocomplex with l-lactate in vivo, producing lactate deficiency in tumor cells. Those cancer cells that utilize transport of lactate to maintain electrical neutrality may cease to multiply or die because of lactate trapping, and those cancer cells that benefit from utilization of extracellular lactate may be impaired. Intracellular trapping of lactate produces a different physiology than inhibition of LDH because the cell loses the option of shuttling pyruvate to an alternative pathway to produce an anion. Conjugated with stains or fluorescent probes, PDLA oligomers may be an agent for the diagnosis of tissue lactate and possibly cell differentiation in biopsy specimens. Preliminary experimental evidence is presented confirming that PDLA in high concentrations is cytotoxic and that l-lactate forms a presumed stereocomplex with PDLA. Future work should be directed at isolation of biologically active oligomers of PDLA.

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Cette thèse propose une analyse de la question de la survivance – notion ayant retenu l’attention de penseurs issus de différentes disciplines tels que Janine Altounian, Jacques Derrida et Georges Didi-Huberman – dans l’œuvre de Sarah Kofman, plus particulièrement dans son récit autobiographique intitulé Rue Ordener, rue Labat, paru en 1994. Quatre grandes orientations guident ce travail dont l’approche théorique se situe à la croisée de la littérature, de la philosophie, de la psychanalyse, de l’histoire (tant sociale que de l’art) et du juridique. Premièrement, nous nous intéressons à ce qu’implique non seulement le fait d’« échapper à la mort », en observant les moyens mis en œuvre pour y parvenir, mais aussi celui de « continuer à vivre » après l’événement de la Shoah. Deuxièmement, nous étudions les différentes manifestations de « la survivance active de l’enfant en nous » (J.-B. Pontalis) de même que celle de « l’objet perdu » dans le travail de deuil impossible, encore autrement « interminable », qui a pris corps dans l’œuvre de Sarah Kofman. Troisièmement, nous abordons la « survivance » au sens du Nachleben d’Aby Warburg et repérons la trace des autres écrits de la philosophe, elliptiquement condensés dans son récit par la reprise de thèmes, le retour de sujets antérieurement évoqués. Quatrièmement, nous interrogeons la locution pronominale « se survivre » et la portée de ses compléments : « dans son œuvre », « dans son témoignage », « dans les mémoires ». Parmi les points qui sont analysés en profondeur dans les chapitres de cette thèse, notons les motifs du ressentiment, du double tragique, du pardon et de l’oubli, de la « disgrâce », de la honte et de la culpabilité, ainsi que les différentes modalités de la survivance – la capacité d’adaptation et le rôle des mères, la lecture, le rire, les arts visuels – mises en œuvre par Sarah Kofman. Dans cette « œuvre-vie » (Pleshette DeArmitt), ce corpus singulier et unique, il s’est toujours agi de ceci, quoi qu’il lui en coûta : « affirmer sans cesse la survie », selon l’expression de Derrida.

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Diabetes, obesity, and cancer affect upward of 15% of the world’s population. Interestingly, all three diseases juxtapose dysregulated intracellular signaling with altered metabolic state. Exactly which genetic factors define stable metabolic set points in vivo remains poorly understood. Here, we show that hedgehog signaling rewires cellular metabolism. We identify a cilium-dependent Smo-Ca2+-Ampk axis that triggers rapid Warburg-like metabolic reprogramming within minutes of activation and is required for proper metabolic selectivity and flexibility. We show that Smo modulators can uncouple the Smo-Ampk axis from canonical signaling and identify cyclopamine as one of a new class of “selective partial agonists,” capable of concomitant inhibition of canonical and activation of noncanonical hedgehog signaling. Intriguingly, activation of the Smo-Ampk axis in vivo drives robust insulin-independent glucose uptake in muscle and brown adipose tissue. These data identify multiple noncanonical endpoints that are pivotal for rational design of hedgehog modulators and provide a new therapeutic avenue for obesity and diabetes.

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Cancer is one of the principal causes of death in the world; almost 8.2 million of deaths were counted in 2012. Emerging evidences indicate that most of the tumors have an increased glycolytic rate and a detriment of oxidative phosphorylation to support abnormal cell proliferation; this phenomenon is known as aerobic glycolysis or Warburg effect. This switching toward glycolysis implies that cancer tissues metabolize approximately tenfold more glucose to lactate in a given time and the amount of lactate released from cancer tissues is much greater than from normal ones. In view of these fundamental discoveries alterations of the cellular metabolism should be considered a crucial hallmark of cancer. Therefore, the investigation of the metabolic differences between normal and transformed cells is important in cancer research and it might find clinical applications. The aim of the project was to investigate the cellular metabolic alterations at single cell level, by monitoring glucose and lactate, in order to provide a better insight in cancer research. For this purpose, electrochemical techniques have been applied. Enzyme-based electrode biosensors for lactate and glucose were –ad hoc- optimized within the project and used as probes for Scanning Electrochemical Microscopy (SECM). The UME biosensor manufacturing and optimization represented a consistent part of the work and a full description of the sensor preparation protocols and of the characterization methods employed is reported. This set-up (SECM used with microbiosensor probes) enabled the non-invasive study of cellular metabolism at single cell level. The knowledge of cancer cell metabolism is required to design more efficient treatment strategies.

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We observed a hereditary phenotype in Alaskan Huskies, which was characterized by polyneuropathy with ocular abnormalities and neuronal vacuolation (POANV). The affected dogs developed a progressive severe ataxia, which led to euthanasia between 8 and 16 months of age. The pedigrees were consistent with a monogenic autosomal recessive inheritance. We localized the causative genetic defect to a 4 Mb interval on chromosome 19 by a combined linkage and homozygosity mapping approach. Whole genome sequencing of one affected dog, an obligate carrier and an unrelated control revealed a 218 bp SINE insertion into exon 7 of the RAB3GAP1 gene. The SINE insertion was perfectly associated with the disease phenotype in a cohort of 43 Alaskan Huskies and it was absent from 541 control dogs of diverse other breeds. The SINE insertion induced aberrant splicing and led to a transcript with a greatly altered exon 7. RAB3GAP1 loss-of-function variants in humans cause Warburg Micro Syndrome 1 (WARBM1), which is characterized by additional developmental defects compared to canine POANV, whereas Rab3gap1 deficient mice have a much milder phenotype than either humans or dogs. Thus the RAB3GAP1 mutant Alaskan Huskies provide an interesting intermediate phenotype that may help to better understand the function of RAB3GAP1 in development. Furthermore, the identification of the presumed causative genetic variant will enable genetic testing to avoid the non-intentional breeding of affected dogs.

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Boris Schatz

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Scan von Monochrom-Mikroform

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Scan von Monochrom-Mikroform