959 resultados para Cellular model


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Les estrogènes sont impliqués dans plusieurs aspects de la physiologie humaine en particulier, le développement, la croissance, la différenciation des tissus reproducteurs, la reproduction, et la grossesse. Les effets cellulaires des estrogènes sont transmis via l'interaction avec les récepteurs des estrogènes ERα et ERβ. L’activation de ERα et ERβ contrôle directement la transcription des gènes cibles nécessaires pour médier les effets physiologiques des estrogènes. L’effet des estrogènes peut aussi être mitogénique et devient la cause de plusieurs pathologies surtout dans les tissus qui présentent une sensibilité accrue à l’hormone tel que les tissus mammaires, les ovaires et l’utérus. De ce fait, une surexposition de ces tissus à l’estrogène augmente le risque de développer le cancer. Dans une lignée cellulaire qui coexprime les deux récepteurs, nous avons identifié la chimiokine SDF-1 qui interagit avec le récepteur CXCR4 et qui décrit une boucle de régulation autocrine/paracrine entre la voie des chimiokines et celle des estrogènes. Cette régulation induit une augmentation de l’expression des gènes cibles prolifératifs du cancer du sein. Cependant, les mécanismes exacts de cette régulation restent inconnus. Afin d'identifier les cibles exactes de cette régulation au niveau génomique, nous avons développé un modèle cellulaire pour discriminer le rôle respectif de ERα et ERβ au niveau du contrôle transcriptionnel de cette boucle de régulation des chimiokines. En partant d’une lignée cellulaire ER-, nous avons généré un système cellulaire qui exprime l’un ou l’autre des isoformes en plus du mutant ERβ-S87A. Nous avons construit le promoteur CXCR4bLuc qu’on a testé dans les lignées cellulaires générées. En utilisant la construction du promoteur CXCR4bLuc, nous avons démontré une voie de régulation des récepteurs des chimiokines par les récepteurs des estrogènes. L’activation membranaire de CXCR4 par SDF-1 implique l’activation directe du récepteur de l’estrogène ERβ par phosphorylation de la sérine 87. Cette phosphorylation active ERβ et favorise l’expression du gène de CXCR4. La transcription de CXCR4 passe par la liaison de ERβ au niveau d’un élément de liaison ERE que nous avons identifié dans ce travail par la technique de ChIP. Ainsi, nous avons identifié une cible exacte de la régulation des récepteurs des chimiokines CXCR4 par le récepteur des estrogènes ERβ qui peut constituer une approche prometteuse pour contrer les pathologies associées au cancer du sein et ses métastases.

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Le cancer du col utérin (CCU) est dans plus de 99% des cas provoqué par une infection avec le virus du papillome humain (VPH), dont le potentiel oncogénique réside dans l'expression des proto-oncogènes viraux E6/E7. Le potentiel carcinogénique de ces protéines virales réside essentiellement dans leurs actions sur les produits des gènes suppresseurs de tumeur p53 et RB. Les produits de ces gènes, p53 et Rb, font parti des voies de signalisation de réponse aux dommages de l'ADN cellulaire (RDA) et leur perte entraine une perte de fonctionnalité qui mène à une instabilité génomique. À long terme et en présence de d'autres facteurs ceux-ci mèneront au développement d'un cancer. Les protéines E6 et E7 sont constitutivement exprimées dans les cellules du CCU ainsi que dans les cellules de tout autre cancer induit par le VPH et seulement dans ces dernières. La prise en charge des cas avancés de ces cancers se fait principalement par radiothérapie et chimiothérapie concomitante. La chimio-radiothérapie utilisée en traitement est efficace mais résulte en un taux élevé de morbidité et un nombre important de patientes récidiveront. Nous proposons que l'exploitation de l'expression spécifique d’E6 et d’E7 dans les cellules du CCU permette d’envisager une stratégie de létalité synthétique afin d'amplifier l'effet létal de l'irradiation sur les cellules CCU. Ceci permettrait potentiellement d'augmenter l'efficacité du traitement et de diminuer les récidives, ainsi que la morbidité liée au traitement. En s'appuyant sur cette hypothèse, notre objectif est d’identifier des composés dont l'action seule ou couplée à l'irradiation provoquerait préférentiellement la mort des cellules exprimant les protéines E6 et E7 du VPH. Les cellules testées comprennent des cellules isogéniques humaines issues de kératinocytes normaux que nous avons modifiées séquentiellement pour obtenir les modifications associées aux cellules CCU (hTERT, E6 et E7), ainsi que les lignées de cellules de CCU HeLa et CaSki .Nous avons procédé à la mise au point et à la validation du protocole de criblage et des méthodes d’évaluation de la sensibilisation, qui se définit comme une perte de viabilité, un arrêt ou ralentissement de la croissance, par détection d’ATP ainsi que par coloration d’ADN génomique au DRAQ5. Suite à un criblage ciblé impliquant des inhibiteurs connus de la voie de réparation des dommages à l’ADN, nous avons identifié l’inhibiteur de mdm2, Nutlin-3, comme étant un composé sensibilisant et radio-sensibilisant préférentiellement les cellules exprimant E6 et E7 du VPH. La Nutlin-3 a été testée sur des cellules HEKn-hTERT-E6-E7, des cellules CaSki et HeLa. L’effet de sensibilisation et de radio-sensibilisation a été confirmé dans ces trois lignées. Tel que suggéré par son action sur mdmd2, la Nutlin-3 permet la stabilisation de p53 dans les cellules HEKn-hTERT-E6-E7 et CaSki et sa réactivation dans les lignées cellulaires HeLa et CaSki. Malgré cette stabilisation de p53, de façon surprenante, l’effet de la Nutlin-3 sur la sensibilisation et la radio-sensibilisation des cellules HeLa et CaSki semble indépendant de p53, tel qu’observé en utilisant des cellules HeLa-GSE et CaSki-GSE dont le p53 est déficient. In vivo la Nutlin-3a montre dans un essai préliminaire l’inhibition de la croissance tumorale des xénogreffes HeLa chez des souris RAG2γc. Ce résultat reste à confirmer avec un essai impliquant un nombre d’échantillons plus grand. À plus long terme, nous comptons étudier l’implication de mdm2 dans l’effet de sensibilisant de la Nutlin-3 dans les cellules CCUs, ainsi que les autres cibles pouvant être impliquées dans la création de cet effet sensibilisant observé.

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Problématique: Le virus du papillome humain (VPH) est présent dans près de 50% des cancers de l’oropharynx. Le potentiel oncogénique du VPH est encodé dans les oncoprotéines E6 et E7, qui agissent en modulant différents gènes, dont les gènes suppresseurs de tumeur p53 et pRb. Les cellules VPH positives démontrent une altération au niveau de la signalisation de la réponse aux dommages à l’ADN (RDA), un mécanisme de contrôle dans l’arrêt de la croissance des cellules ayant subit des dommages au niveau de leur ADN. Hypothèse et objectifs : Nous croyons que les défauts au niveau de la RDA des cancers VPH positifs peuvent être exploités afin de sensibiliser préférentiellement les cellules cancéreuses aux traitements de radiothérapie. Cette stratégie de recherche nécessite l’élaboration d’un modèle cellulaire de carcinogenèse isogénique pour le cancer de l’oropharynx que nous proposons de développer et de caractériser. L’étude vise à dériver des lignées isogéniques à partir de kératinocytes primaires et cellules épithéliales de l’oropharynx pour ensuite valider la carcinogenèse de notre modèle in vitro & in vivo Méthodologie : Des lignées cellulaires de kératinocytes primaires et de cellules épithéliales de l’oropharynx ont été successivement modifiées par transduction afin de présenter les mutations associées aux cancers de l’oropharynx induits par le VPH. Les cellules ont été modifiées avec des lentivirus codants pour la télomérase (hTERT), les oncogènes E6, E7 et RasV12. Afin de valider la cancérogenèse in vitro de notre modèle, des études d’invasion en matrigel et de croissance sans ancrage en agar mou ont été réalisées. Les populations cellulaires transformées ont été ensuite introduites dans des souris immunodéficientes afin d’évaluer leur tumorogénicité in vivo. Résultats : À partir des plasmides recombinés construits par méthodes de clonage traditionnelle et de recombinaison « Gateway », nous avons produit des lentivirus codants pour la télomérase humaine (hTERT), les oncogènes viraux E6 et E7 et l’oncogène Ras. Les kératinocytes primaires et cellules épithéliales de l’oropharynx ont été infectés successivement par transduction et sélectionnés. Nous avons validé l’expression de nos transgènes par méthode d’immunofluorescence, de Western Blot et de réaction de polymérisation en chaîne quantitative en temps réel (qRT-PCR). Nous avons établi trois lignées des cellules épithéliales de l’oropharynx (HNOE) à partir d’échantillons tissulaires prélevés lors d’amygdalectomie (HNOE42, HNO45, HNOE46). Les cellules transduites avec le lentivirus exprimant le promoteur fort CMV/TO de l’oncogène RasV12 ont présenté un changement morphologique compatible avec une sénescence prématurée induite par l’oncogène Ras. En exprimant des quantités plus faibles du RasV12 mutant, la lignée cellulaire HEKn hTERT-E6-E7 PGK RasV12 a réussi à échapper à la sénescence induite par l’oncogène Ras. La population cellulaire exprimant HEKn hTERT-E6-E7-PGK RasV12 a présenté un phénotype malin en culture et à l’étude d'invasion, mais n’a pas démontré de résultats positifs à l’étude de croissance sans ancrage en agar mou ni en xénogreffe en souris immunodéficientes. Conclusion : Nos résultats démontrent qu’en présence des oncogènes viraux E6 et E7, il y a un troisième mécanisme suppresseur de tumeur qui médie la sénescence induite par l’oncogène Ras. Nous avons identifié que la présence de E6 seule ne suffit pas à immortaliser les kératinocytes primaires humains (HEKn). Nous n’avons pas réussi à créer un modèle in vitro de carcinogenèse pour les cancers de l’oropharynx induits par le VPH.

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The secoiridoids 3,4-dihydroxyphenylethanol-elenolic acid (3,4-DHPEA-EA) and 3,4-dihydroxyphenylethanol-elenolic acid dialdehyde (3,4-DHPEA-EDA) account for approximately 55 % of the phenolic content of olive oil and may be partly responsible for its reported human health benefits. We have investigated the absorption and metabolism of these secoiridoids in the upper gastrointestinal tract. Both 3,4-DHPEA-EDA and 3,4-DHPEA-EA were relatively stable under gastric conditions, only undergoing limited hydrolysis. Both secoiridoids were transferred across a human cellular model of the small intestine (Caco-2 cells). However, no glucuronide conjugation was observed for either secoiridoid during transfer, although some hydroxytyrosol and homovanillic alcohol were formed. As Caco-2 cells are known to express only limited metabolic activity, we also investigated the absorption and metabolism of secoiridoids in isolated, perfused segments of the jejunum and ileum. Here, both secoiridoids underwent extensive metabolism, most notably a two-electron reduction and glucuronidation during the transfer across both the ileum and jejunum. Unlike Caco-2 cells, the intact small-intestinal segments contain NADPH-dependent aldo-keto reductases, which reduce the aldehyde carbonyl group of 3,4-DHPEA-EA and one of the two aldeydic carbonyl groups present on 3,4-DHPEA-EDA. These reduced forms are then glucuronidated and represent the major in vivo small-intestinal metabolites of the secoiridoids. In agreement with the cell studies, perfusion of the jejunum and ileum also yielded hydroxytyrosol and homovanillic alcohol and their respective glucuronides. We suggest that the reduced and glucuronidated forms represent novel physiological metabolites of the secoiridoids that should be pursued in vivo and investigated for their biological activity.

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The proneural transcription factor Ascl1 coordinates gene expression in both proliferating and differentiating progenitors along the neuronal lineage. Here, we used a cellular model of neurogenesis to investigate how Ascl1 interacts with the chromatin landscape to regulate gene expression when promoting neuronal differentiation. We find that Ascl1 binding occurs mostly at distal enhancers and is associated with activation of gene transcription. Surprisingly, the accessibility of Ascl1 to its binding sites in neural stem/progenitor cells remains largely unchanged throughout their differentiation, as Ascl1 targets regions of both readily accessible and closed chromatin in proliferating cells. Moreover, binding of Ascl1 often precedes an increase in chromatin accessibility and the appearance of new regions of open chromatin, associated with de novo gene expression during differentiation. Our results reveal a function of Ascl1 in promoting chromatin accessibility during neurogenesis, linking the chromatin landscape at Ascl1 target regions with the temporal progression of its transcriptional program.

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Despite advances in antibiotic therapy, bacterial meningitis (BM) remains with high mortality and morbidity rates in worldwide. One important mechanism associated to sequels during disease is the intense inflammatory response which promotes an oxidative burst and release of reactive oxygen species, consequently leading to cell death. Activation of DNA repair enzymes during oxidative stress has been demonstrated in several neurological disorders. APE1/Ref-1 is a multifunctional protein involved in DNA repair and plays a redox function on transcription factors such as NFkB and AP-1.The aim of this study was assess the role of APE1/Ref-1 on inflammatory response and the possibility of its modulation to reduce the sequels of the disease. Firstly it was performed an assay to measure cytokine in cerebrospinal fluid of patients with BM due to Streptococcus pneumoniae and Neisseriae meningitides. Further, a cellular model of inflammation was used to observe the effect of the inhibition of the endonuclease and redox activity of APE1/Ref-1 on cytokine levels. Additionally, APE1/Ref-1 expression in cortex and hippocampus of rat with MB after vitamin B6 treatment was evaluated. Altogether, results showed a similar profile of cytokines in the cerebrospinal fluid of patients from both pathogens, although IFNy showed higher expression in patients with BM caused by S. pneumoniae. On the other hand, inhibitors of APE1/Ref-1 reduced cytokine levels, mainly TNF-α. Reduction of oxidative stress markers was also observed after introduction of inhibitors in the LPS-stimulated cell. In the animal model, BM increased the expression of the protein APE1/Ref-1, while vitamin B6 promoted reduction. Thereby, this data rise important factors to be considered in pathogenesis of BM, e.g., IFNy can be used as prognostic factor during corticosteroid therapy, APE1/Ref-1 can be an important target to modulate the level of inflammation and VIII oxidative stress, and vitamin B6 seems modulates several proteins related to cell death. So, this study highlights a new understanding on the role of APE1/Ref-1 on the inflammation and the oxidative stress during inflammation condition

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Accumulating evidence demonstrates that chronic inflammation plays an important role in heart hypertrophy and cardiac diseases. However, the fine-tuning of cellular and molecular mechanisms that connect inflammatory process and cardiac diseases is still under investigation. Many reports have demonstrated that the overexpression of the cyclooxygenase-2 (COX-2), a key enzyme in the conversion of arachidonic acid to prostaglandins and other prostanoids, is correlated with inflammatory processes. Increased level of prostaglandin E2 was also found in animal model of left ventricle of hypertrophy. Based on previous observations that demonstrated a regulatory loop between COX-2 and the RNA-binding protein CUGBP2, we studied cellular and molecular mechanisms of a pro-inflammatory stimulus in a cardiac cell to verify if the above two molecules could be correlated with the inflammatory process in the heart. A cellular model of investigation was established and H9c2 was used.We also demonstrated a regulatory connection between COX-2 and CUGBP2 in the cardiac cells. Based on a set of different assays including gene silencing and fluorescence microscopy, we describe a novel function for the RNA-binding protein CUGBP2 in controlling the pro-inflammatory stimulus: subcellular trafficking of messenger molecules to specific cytoplasmic stress granules to maintain homeostasis. © 2013 International Federation for Cell Biology.

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A Indústria Farmacêutica utiliza polímeros em forma de nanopartículas em formulações de liberação controlada e vetorizada por possuírem baixo custo em relação a demais métodos de preparações de formas farmacêuticas, aparentemente não serem reconhecidos pelo sistema de defesa do organismo, proporcionar melhora da eficácia, diminuição da toxicidade e da dose de fármaco administrado. O sulfato de condroitina-co-Nisopropilacrilamida (SCM + NIPAAm) é um copolímero proposto para este fim, a partir da reação de um polímero sintético, o poli N-isopropilacrilamida (PNIPAAm), com características termossensíveis, com um natural, o Sulfato de Condroitina (SC), com características bioadesivas. Assim, a copolimerização pode ser capaz de somar estas propriedades e aperfeiçoar o seu uso como um veículo para liberação controlada. Este trabalho objetivou, portanto, realizar a caracterização fisico-quimica das partículas de sulfato de condroitina e Nisopropilacrilamida e do copolímero SCM+NIPAAm (2,5 % e 5%) e do SCM+PNIPAAm 2,5% e uma avaliação toxicológica parcial de um destes copolímeros que apresentar as melhores propriedades de um eficiente carreador de fármacos, selecionado a partir dos ensaios de caracterização físico-química. Para determinar a estrutura química dos sistemas particulados e analisar os seus componentes químicos, foi realizada a Espectroscopia de Ressonância Magnética Nuclear (RMN) e Espectroscopia do Infravermelho com Transformada de Fourrier (FTIR); Para analisar a morfologia das partículas, foi usado a Microscopia Eletrônica de Varredura (MEV); A Termogravimetria/ Termogravimetria Derivada e Análise Térmica Diferencial (TG/DTG) foi usada para avaliar o comportamento térmico dos sistemas particulados, bem como auxiliar na análise de Cinética de Degradação (CD, método de Flynn-Wall-Ozawa); Foi ainda realizado a técnica de degradação in vitro e a determinação carga superficial e tamanho de partículas (análise do Potencial Zeta, PZ). Para avaliar a toxicidade, foi realizado o bioensaio em microcrustáceo Artemia salina (24 e 48 h), viabilidade celular (citotoxicidade) em células PC-12 (método do MTT) e também a toxicidade aguda oral em camundongos. As análises de RMN, FTIR e MEV demonstraram semelhança quanto ao aspecto estrutural e morfológico entre os copolímeros estudados. As análises de TG demonstraram que o SCM+NIPAAm 5% apresentou maior estabilidade térmica em relação aos demais copolímeros avaliados, uma vez que sua decomposição polimérica ocorre em temperaturas superiores, em torno de 233ºC. O DTA demonstrou valores de temperaturas concordantes com os eventos térmicos de decomposição apresentados pelas curvas das análises TG. Sua estabilidade foi confirmada através da CD e estudo de degradação in vitro, apresentando, respectivamente, Ea > 100 kJ mol-1 e perda de 48% da sua massa inicial após três meses. Além disso, SCM+NIPAAm 5% apresentou diâmetro de partícula inferior a 200 nm e índice de polidispersão de 0,35, além do PZ > -30mV, caracteristicas de um promissor candidato a carreador de fármacos. Em relação às avaliações toxicológicas, o SCM+NIPAAm 5% não apresentou toxicidade no bioensaio de A. salina (CL50 > 1000) e no modelo celular avaliado, dentro das concentrações e circunstâncias de exposição estudadas. O SCM+NIPAAm 5%, na dose oral de 2000 mg/kg, não apresentou nenhum sinal evidente de toxicidade em camundongos, o que foi corroborado pela ausência de alterações anatomo-histopatológicas. A copolimerização do Sulfato de Condroitina e N-isopropilacrilamida na concentração estudada, dada suas características físico-químicas e toxicológicas preliminares, apresenta propriedades que contribuem para a proposta de um sistema que constitui uma nova forma de liberação controlada, especialmente de fármacos.

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Abstract Background The implication of post-transcriptional regulation by microRNAs in molecular mechanisms underlying cancer disease is well documented. However, their interference at the cellular level is not fully explored. Functional in vitro studies are fundamental for the comprehension of their role; nevertheless results are highly dependable on the adopted cellular model. Next generation small RNA transcriptomic sequencing data of a tumor cell line and keratinocytes derived from primary culture was generated in order to characterize the microRNA content of these systems, thus helping in their understanding. Both constitute cell models for functional studies of microRNAs in head and neck squamous cell carcinoma (HNSCC), a smoking-related cancer. Known microRNAs were quantified and analyzed in the context of gene regulation. New microRNAs were investigated using similarity and structural search, ab initio classification, and prediction of the location of mature microRNAs within would-be precursor sequences. Results were compared with small RNA transcriptomic sequences from HNSCC samples in order to access the applicability of these cell models for cancer phenotype comprehension and for novel molecule discovery. Results Ten miRNAs represented over 70% of the mature molecules present in each of the cell types. The most expressed molecules were miR-21, miR-24 and miR-205, Accordingly; miR-21 and miR-205 have been previously shown to play a role in epithelial cell biology. Although miR-21 has been implicated in cancer development, and evaluated as a biomarker in HNSCC progression, no significant expression differences were seen between cell types. We demonstrate that differentially expressed mature miRNAs target cell differentiation and apoptosis related biological processes, indicating that they might represent, with acceptable accuracy, the genetic context from which they derive. Most miRNAs identified in the cancer cell line and in keratinocytes were present in tumor samples and cancer-free samples, respectively, with miR-21, miR-24 and miR-205 still among the most prevalent molecules at all instances. Thirteen miRNA-like structures, containing reads identified by the deep sequencing, were predicted from putative miRNA precursor sequences. Strong evidences suggest that one of them could be a new miRNA. This molecule was mostly expressed in the tumor cell line and HNSCC samples indicating a possible biological function in cancer. Conclusions Critical biological features of cells must be fully understood before they can be chosen as models for functional studies. Expression levels of miRNAs relate to cell type and tissue context. This study provides insights on miRNA content of two cell models used for cancer research. Pathways commonly deregulated in HNSCC might be targeted by most expressed and also by differentially expressed miRNAs. Results indicate that the use of cell models for cancer research demands careful assessment of underlying molecular characteristics for proper data interpretation. Additionally, one new miRNA-like molecule with a potential role in cancer was identified in the cell lines and clinical samples.

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Introduction: Apoptotic cell death of cardiomyocytes is involved in several cardiovascular diseases including ischemia, hypertrophy and heart failure, thus representing a potential therapeutic target. Apoptosis of cardiac cells can be induced experimentally by several stimuli including hypoxia, serum withdrawal or combination of both. Several lines of research suggest that neurohormonal mechanisms play a central role in the progression of heart failure. In particular, excessive activation of the sympathetic nervous system or the renin-angiotensin-aldosterone system is known to have deleterious effects on the heart. Recent studies report that norepinephrine (NE), the primary transmitter of sympathetic nervous system, and aldosterone (ALD), which is actively produced in failing human heart, are able to induce apoptosis of rat cardiomyocytes. Polyamines are biogenic amines involved in many cellular processes, including apoptosis. Actually it appears that these molecules can act as promoting, modulating or protective agents in apoptosis depending on apoptotic stimulus and cellular model. We have studied the involvement of polyamines in the apoptosis of cardiac cells induced in a model of simulated ischemia and following treatment with NE or ALD. Methods: H9c2 cardiomyoblasts were exposed to a condition of simulated ischemia, consisting of hypoxia plus serum deprivation. Cardiomyocyte cultures were prepared from 1-3 day-old neonatal Wistar rat hearts. Polyamine depletion was obtained by culturing the cells in the presence of α-difluoromethylornithine (DFMO). Polyamines were separated and quantified in acidic cellular extracts by HPLC after derivatization with dansyl chloride. Caspase activity was measured by the cleavage of the fluorogenic peptide substrate. Ornithine decarboxylase (ODC) activity was measured by estimation of the release of 14C-CO2 from 14C-ornithine. DNA fragmentation was visualized by the method of terminal transferase-mediated dUTP nick end-labeling (TUNEL), and DNA laddering on agarose gel electophoresis. Cytochrome c was detected by immunoflorescent staining. Activation of signal transduction pathways was investigated by western blotting. Results: The results indicate that simulated ischemia, NE and ALD cause an early induction of the activity of ornithine decarboxylase (ODC), the first enzyme in polyamine biosynthesis, followed by a later increase of caspase activity, a family of proteases that execute the death program and induce cell death. This effect was prevented in the presence of DFMO, an irreversible inhibitor of ODC, thus suggesting that polyamines are involved in the execution of the death program activated by these stimuli. In H9c2 cells DFMO inhibits several molecular events related to apoptosis that follow simulated ischemia, such as the release of cytochrome c from mitochondria, down-regulation of Bcl-xL, and DNA fragmentation. The anti-apoptotic protein survivin is down-regulated after ALD or NE treatement and polyamine depletion obtained by DFMO partially opposes survivin decrease. Moreover, a study of key signal transduction pathways governing cell death and survival, revealed an involvement of AMP activated protein kinase (AMPK) and AKT kinase, in the modulation by polyamines of the response of cardiomyocytes to NE. In fact polyamine depleted cells show an altered pattern of AMPK and AKT activation that may contrast apoptosis and appears to result from a differential effect on the specific phosphatases that dephosphorylate and switch off these signaling proteins. Conclusions: These results indicate that polyamines are involved in the execution of the death program activated in cardiac cells by heart failure-related stimuli, like ischemia, ALD and NE, and suggest that their apoptosis facilitating action is mediated by a network of specific phosphatases and kinases.

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Dystrophin is a subsarcolemmal protein critical for the integrity of muscle fibers by linking the actin cytoskeleton to the extracellular matrix via the dystroglycan complex. It is reported that dystroglycans are also localized in the skin, at dermal-epidermal junction. Here we show that epidermal melanocytes express dystrophin at the interface with the basement membrane. The full-length muscle isoform mDp427 was clearly detectable in epidermis and in melanocyte cultures as assessed by RNA and western blot analysis. Dystrophin was absent in Duchenne Muscular Dystrophy (DMD) patients melanocytes, and the ultrastructural analysis revealed mitochondrial alterations, similar to those occurring in myoblasts from the same patients. Interestingly, mitochondrial dysfunction of DMD melanocytes reflected the alterations identified in dystrophin-deficient muscle cells. In fact, mitochondria of melanocytes from DMD patients accumulated tetramethylrhodamine methyl ester but, on the contrary of control donor, mitochondria of DMD patients readily depolarized upon the addition of oligomycin, suggesting either that they are maintaining the membrane potential at the expense of glycolytic ATP, or that they are affected by a latent dysfunction unmasked by inhibition of the ATP synthase. Melanocyte cultures can be easily obtained by conventional skin biopsies, less invasive procedure than muscular biopsy, so that they may represent an alternative cellular model to myoblast for studying and monitoring dystrophinopathies also in response to pharmacological treatments.

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Le alterazioni della funzionalità mitocondriale detengono un ruolo cruciale nella patogenesi della malattia di Alzheimer (AD), sostenendo il processo neurodegenerativo attraverso meccanismi quali la riduzione della disponibilità energetica e la iperproduzione di ROS. Alle numerose ipotesi di patogenesi dell’AD, si è recentemente affiancata la cosiddetta ipotesi vascolare. Nei soggetti AD è stata riscontrata una significativa riduzione della disponibilità di ossigeno a livello neuronale (ipossia neuronale). Da numerosi studi è poi emerso che l’ipossia gioca un ruolo fondamentale nello sviluppo dell’AD contribuendo a più vie patogenetiche contemporaneamente. Tuttavia, non sono stati ancora chiariti tutti i meccanismi attraverso cui l’ipossia esplica la sua azione di danno. Lo scopo di questo studio è stato quello di contribuire a chiarire il ruolo patologico dell’ipossia nell’AD, analizzando principalmente le alterazioni della funzionalità mitocondriale indotte dalla riduzione della disponibilità di ossigeno. Nella prima fase dello studio cellule PC12 sono state coltivate in presenza di β-amiloide e ipossia. In questo modello abbiamo osservato un potenziamento dei fenomeni di deplezione dell’ATP e di generazione delle ROS indotti dalla Aβ quando anche l’ipossia era presente come fonte di danno cellulare, ipotizzando per i due fattori un effetto congiunto di tipo additivo. Nella seconda fase abbiamo esposto all’ipossia fibroblasti prelevati da pazienti AD portatori di mutazioni a carico dei geni APP e PSEN. La presenza di mutazioni predisponenti ad un fenotipo AD era in grado di determinare un danno bioenergetico e ossidativo. Le alterazioni bioenergetiche riscontrate in normossia risultavano ulteriormente potenziate quando i fibroblasti erano coltivati in ipossia, mentre lo stato di stress ossidativo veniva evidenziato solo in condizioni ipossiche. Sulla base dei risultati finora conseguiti si può ipotizzare che uno dei meccanismi attraverso cui l’ipossia esplica la sua azione di danno nella AD, possa essere dovuto alla capacità di potenziare ulteriormente le alterazioni della funzionalità mitocondriale.

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Alternative fuels are increasingly combusted in diesel- and gasoline engines and the contribution of such exhausts to the overall air pollution is on the rise. Recent findings on the possible adverse effects of biodiesel exhaust are contradictive, at least partly resulting from the various fuel qualities, engine types and different operation conditions that were tested. However, most of the studies are biased by undesired interactions between the exhaust samples and biological culture media. We here report how complete, freshly produced exhausts from fossil diesel (B0), from a blend of 20% rapeseed-methyl ester (RME) and 80% fossil diesel (B20) and from pure rapeseed methyl ester (B100) affect a complex 3D cellular model of the human airway epithelium in vitro by exposing the cells at the air–liquid interface. The induction of pro-apoptotic and necrotic cell death, cellular morphology, oxidative stress, and pro-inflammatory responses were assessed. Compared to B0 exhaust, B20 exhaust decreased oxidative stress and pro-inflammatory responses, whereas B100 exhaust, depending on exposure duration, decreased oxidative stress but increased pro-inflammatory responses. The effects are only very weak and given the compared to fossil diesel higher ecological sustainability of biodiesel, it appears that – at least RME – can be considered a valuable alternative to pure fossil diesel.

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While cancer is one of the greatest challenges to public health care, prostate cancer was chosen as cancer model to develop a more accurate imaging assessment than those currently available. Indeed, an efficient imaging technique which considerably improves the sensitivity and specificity of the diagnostic and predicting the cancer behavior would be extremely valuable. The concept of optoacoustic imaging using home-made functionalized gold nanoparticles coupled to an antibody targeting PSMA (prostate specific membrane antigen) was evaluated on different cancer cell lines to demonstrate the specificity of the designed platform. Two commonly used microscopy techniques (indirect fluorescence and scanning electron microscopy) showed their straightforwardness and versatility for the nanoparticle binding investigations regardless the composition of the investigated nanoobjects. Moreover most of the research laboratories and centers are equipped with fluorescence microscopes, so indirect fluorescence using Quantum dots can be used for any active targeting nanocarriers (polymers, ceramics, metals, etc.). The second technique based on backscattered electron is not only limited to gold nanoparticles but also suits for any study of metallic nanoparticles as the electronic density difference between the nanoparticles and binding surface stays high enough. Optoacoustic imaging was finally performed on a 3D cellular model to assess and prove the concept of the developed platform.

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CYP4F enzymes metabolize endogenous molecules including arachidonic acid, leukotrienes and prostaglandins. The involvement of these eisosanoids in inflammation has led to the hypothesis that CYP4Fs may modulate inflammatory conditions after traumatic brain injury (TBI). In rat, TBI elicited changes in mRNA expression of CYP4Fs as a function of time in the cerebrum region. These changes in CYP4F mRNA levels inversely correlated with the cerebral leukotriene B4 (LTB4) level following injury at the same time points. TBI also resulted in changes in CYP4F protein expression and localization around the injury site, where CYP4F1 and CYP4F6 immunoreactivity increased in surrounding astrocytes and CYP4F4 immunoreactivity shifted from endothelia of cerebral vessels to astrocytes. The study with rat primary astrocytes indicated that pro-inflammatory cytokines TNFα and IL-1β could affect the transcription of CYP4Fs to a certain degree, whereas the changing pattern in the primary astrocytes appeared to be different from that in the in vivo TBI model.^ In addition, the regulation of CYP4F genes has been an unsolved issue although factors including cytokines and fatty acids appear to affect CYP4Fs expression in multiple models. In this project, HaCaT cells were used as an in vitro cellular model to define signaling pathways involved in the regulation of human CYP4F genes. Retinoic acids inhibited CYP4F11 expression, whereas cytokines TNFα and IL-1β induced transcription of CYP4F11 in HaCaT cells. The induction of CYP4F11 by both cytokines could be blocked by a JNK specific inhibitor, indicating the involvement of the JNK pathway in the up-regulation of CYP4F11. Retinoic acids are known to function in gene regulation through nuclear receptors RARs and RXRs. The RXR agonist LG268 greatly induced transcription of CYP4F11, whereas RAR agonist TTNPB obviously inhibited CYP4F11 transcription, indicating that the down-regulation of CYP4F11 by retinoic acid was mediated by RARs, and that inhibition of CYP4F11 by retinoic acid may also be related to the competition for RXR receptors. Thus, the CYP4F11 gene is regulated by signaling pathways including the RXR pathway and the JNK pathway. In contrast, the regulation mechanism of other CYP4Fs by retinoic acids appears to be different from that of CYP4F11.^