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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
61

Shrinkage, Swelling and Macromolecular Crowding in Cell Death

Rana, Priyanka Shailendra 28 July 2020 (has links)
No description available.
62

Funktionelle Charakterisierung der Chemokinrezeptoren CXCR7 und CCR7 in der Pathogenese lymphatischer Erkrankungen

Mensen, Angela 24 October 2011 (has links)
Die Expression homöostatischer Chemokinrezeptoren auf hämatopoetischen Neoplasien wird zunehmend mit tumorpathogenen Funktionen in Zusammenhang gebracht. In der Arbeit wurden Funktionen der Rezeptoren CXCR7 und CCR7 in der Pathogenese lymphatischer Erkrankungen anhand von Mausmodellen charakterisiert. Für CXCR7 konnte in der normalen Differenzierung von T-Zellen eine schwache Expression in murinen Thymozyten, dagegen eine verstärkte, vor allem intrazellulär lokalisierte Expression in peripheren aktivierten T-Zellen identifiziert werden. Eine aberrante Überexpression lag in humanen Zelllinien, aber auch in primären Fällen von T-ALL und klassischen Hodgkin-Lymphomen vor. Die Analyse eines retroviralen Überexpressionsmodells ergab für CXCR7 die Funktion als anti-apoptotischer Kostimulator während der thymischen beta-Selektion. Im Signaltransduktionskomplex mit CXCR4 und dem präTCR vermittelte CXCR7 einen effizienteren DN3-zu-DN4 Übergang. Unreife Thymozyten waren durch eine verstärkte Apoptoseresistenz und Expression von anti-apoptotischen Bcl2-Molekülen charakterisiert. Dies könnte CXCR7 überexprimierende Thymozyten putativ empfänglicher für die Entwicklung von T-ALLs machen. Für CCR7 konnten in der Arbeit bedeutende Funktionen in der organspezifischen Dissemination von B-Zelllymphomen identifiziert werden. Unter Verwendung des Eµ-Myc-Mausmodells wurde gezeigt, dass Eµ-Myc Lymphomzellen CCR7-abhängig in die T-Zellzone von Milz und Lymphknoten einwandern und dort durch reziproke Interaktionen mit gp38+ FRCs und DCs entscheidende Überlebenfaktoren, darunter Ihh, Igf-1 und VCAM-1, erhalten. Die Lymphomzellen vermittelten darüber hinaus eine aktive Veränderung der Stromazellzusammensetzung, welche durch ein expandiertes FRC-Netzwerk, durch die Induktion putativ immunsupprimierender DCs und durch ein inflammatorisches Milieu charakterisiert war. Eine Inhibition der Lymphom-Stroma-Interaktionen könnte daher eine neue Strategie der Lymphomtherapie darstellen. / In recent years the expression of homeostatic chemokine receptors on hematological tumors was increasingly associated with tumor pathogenic functions. Within this thesis, functions of the chemokine receptors CXCR7 und CCR7 in the pathogenesis of lymphoid diseases were characterized using different mouse models. For CXCR7, low expression levels were detected in murine thymocytes during normal T cell development. Enhanced expression was found mainly intracellularly in peripheral activated T cells. An aberrant overexpression was identified in human cell lines and primary cases of T-ALL and classical Hodgkin lymphoma. The analysis of a retroviral overexpression model suggested a function of CXCR7 as an anti-apoptotic costimulator during thymic beta-selection. In a functional complex with CXCR4 and the preTCR CXCR7 mediated a more efficient DN3-to-DN4 transition. CXCR7 expressing thymocytes were characterized by enhanced apoptosis resistance and expression of anti-apoptotic Bcl2-family genes. Thus, CXCR7 could putatively make immature thymocytes more susceptible to develop T-ALL. In addition, new insights into the function of CCR7 in the context B cell lymphoma dissemination were gained within this thesis. Applying the Eµ-Myc mouse model, CCR7 was shown to mediate the specific homing of Eµ-Myc lymphoma cells into the T cell zone of spleen and lymph nodes. Here, lymphoma cells received pivotal survival signals following reciprocal interactions with gp38+ FRCs and DCs, amongst them Ihh, Igf-1 and VCAM-1. Moreover, the lymphoma cells induced a survival promoting active remodelling of the T cell zone stroma, which was characterized by the expansion of the FRC network, by the induction of putatively immune suppressive DCs and by the induction of a pro-inflammatory milieu. Therefore, an inhibition of lymphoma-stroma interactions could provide a new strategy in lymphoma therapy.
63

Premières pharmacomodulations de la meiogynine A, un sesquiterpène dimère inhibiteur de l’interaction Bcl-xL/Bak, régulant l’apoptose / First pharmacomodulations of meiogynin A, an inhibitor of the Bcl-xL/Bak interaction which controls the apoptosis

Dardenne, Jérémy 15 November 2012 (has links)
La régulation de l’apoptose fait partie des nouvelles cibles thérapeutiques dans la lutte contre le cancer. L’apoptose est l’autodestruction programmée des cellules qui, suite à un besoin physiologique, permet de réguler le développement des cellules. Dans de nombreux cancers, ce mécanisme est inhibé par une surexpression des protéines anti-apoptotiques de la famille Bcl-2 comme Bcl-xL et Mcl-1. Ce phénomène entraîne le développement des cellules tumorales et des résistances aux chimiothérapies. Dans cette optique, notre équipe à l’Institut de Chimie des Substances Naturelles a développé un criblage de plantes tropicales sur ces cibles. Des écorces d’une annonacée de Malaisie, Meiogyne Cylindrocarpa, a été isolé un sesquiterpène dimère, la meiogynine A, présentant une bonne affinité vis-à-vis de Bcl-xL (Ki = 10.7 M). Sa synthèse totale a été réalisée au laboratoire afin de déterminer sa configuration absolue et d’étudier les premières relations structure activité. Un de ses diastéréoisomères a également présenté une bonne affinité vis-à-vis de la protéine Bcl-xL.Afin d’étudier et d’approfondir les premières relations structure activité, la modulation de la meiogynine A a été réalisée. La synthèse des diénophiles acides a été optimisée afin de conduire majoritairement aux diénophiles précurseurs des composés actifs. Différents triènes ont également été synthétisés au laboratoire en vue de modifier la partie Sud de la meiogynine A. Plusieurs analogues ont ainsi pu être obtenus et ont été évalués biologiquement sur des tests in vitro et ex vivo. Des études de modélisation moléculaire et de RMN structurale ont également été réalisées. / The control of the apoptosis is one of the new modern key to fight against the cancer. The apoptosis is the self destruction of cells, part of the homeostasis, which regulates the cell developement. In several cancers, the over-expression of anti-apoptotic proteins, as Bcl-xL and Mcl-1 parts of the Bcl-2 proteins family, inhibate this naturel process. This phenomenum induce the tumoral cells developement and the chemotherapy’s resistance. In order to find new compounds which can regulate the apoptosis, our group in the Institut de Chimie des Substances Naturelles has screened different tropical plants on these targets. A Malaysian plant, Meiogynine Cylindrocarpa, was selected and the phyotchemist work on this plant gave us a new sesquiterpen , the meiogynin A (Ki = 10.7 M on Bcl-xL). Its total synthesis was realised in our laboratory in order to determine its absolute configuration and find the first structure activity relation. One of the synthetised diastereoisomers has presented a better affinity toward the protein. In order to precise these first structure activity relations, the modulation of the meiogynin A was initiated. The synthesis of the acid dienophiles was optimised, the main compounds are the precursors of the active decalins. New triene was also obtained in order to modulate the South Part of the meiogynin A. Thanks to a Diels-Alder reaction, these precursors were combined in order to form new analogues of the meiogynin A. All these compounds were biologically tested (in vitro et ex vivo). Experiments of molecular docking and 2D NMR were also realised.
64

Death is Not the End: The Role of Reactive Oxygen Species in Driving Apoptosis-induced Proliferation

Fogarty, Caitlin E. 02 June 2015 (has links)
Apoptosis-induced proliferation (AiP) is a compensatory mechanism to maintain tissue size and morphology following unexpected cell loss during normal development, and may also be a contributing factor to cancer growth and drug resistance. In apoptotic cells, caspase-initiated signaling cascades lead to the downstream production of mitogenic factors and the proliferation of neighboring surviving cells. In epithelial Drosophila tissues, the Caspase-9 homolog Dronc drives AiP via activation of Jun N-terminal kinase (JNK); however, the specific mechanisms of JNK activation remain unknown. Using a model of sustained AiP that produces a hyperplastic phenotype in Drosophila eye and head tissue, I have found that caspase-induced activation of JNK during AiP depends on extracellular reactive oxygen species (ROS) generated by the NADPH oxidase Duox. I found these ROS are produced early in the death-regeneration process by undifferentiated epithelial cells that have initiated the apoptotic cascade. I also found that reduction of these ROS by mis-expression of extracellular catalases was sufficient to reduce the frequency of overgrowth associated with our model of AiP. I further observed that extracellular ROS attract and activate Drosophila macrophages (hemocytes), which may in turn trigger JNK activity in epithelial cells by signaling through the TNF receptor Grindelwald. We propose that signaling back and forth between epithelial cells and hemocytes by extracellular ROS and Grindelwald drives compensatory proliferation within the epithelium, and that in cases of persistent signaling, such as in our sustained model of AiP, hemocytes play a tumor promoting role, driving overgrowth.
65

Development of Sensitive In Vitro Assays to Assess the Ocular Toxicity Potential of Chemicals and Ophthalmic Products

McCanna, David January 2009 (has links)
The utilization of in vitro tests with a tiered testing strategy for detection of mild ocular irritants can reduce the use of animals for testing, provide mechanistic data on toxic effects, and reduce the uncertainty associated with dose selection for clinical trials. The first section of this thesis describes how in vitro methods can be used to improve the prediction of the toxicity of chemicals and ophthalmic products. The proper utilization of in vitro methods can accurately predict toxic threshold levels and reduce animal use in product development. Sections two, three and four describe the development of new sensitive in vitro methods for predicting ocular toxicity. Maintaining the barrier function of the cornea is critical for the prevention of the penetration of infections microorganisms and irritating chemicals into the eye. Chapter 2 describes the development of a method for assessing the effects of chemicals on tight junctions using a human corneal epithelial and canine kidney epithelial cell line. In Chapter 3 a method that uses a primary organ culture for assessing single instillation and multiple instillation toxic effects is described. The ScanTox system was shown to be an ideal system to monitor the toxic effects over time as multiple readings can be taken of treated bovine lenses using the nondestructive method of assessing for the lens optical quality. Confirmations of toxic effects were made with the utilization of the viability dye alamarBlue. Chapter 4 describes the development of sensitive in vitro assays for detecting ocular toxicity by measuring the effects of chemicals on the mitochondrial integrity of bovine cornea, bovine lens epithelium and corneal epithelial cells, using fluorescent dyes. The goal of this research was to develop an in vitro test battery that can be used to accurately predict the ocular toxicity of new chemicals and ophthalmic formulations. By comparing the toxicity seen in vivo animals and humans with the toxicity response in these new in vitro methods, it was demonstrated that these in vitro methods can be utilized in a tiered testing strategy in the development of new chemicals and ophthalmic formulations.
66

Development of Sensitive In Vitro Assays to Assess the Ocular Toxicity Potential of Chemicals and Ophthalmic Products

McCanna, David January 2009 (has links)
The utilization of in vitro tests with a tiered testing strategy for detection of mild ocular irritants can reduce the use of animals for testing, provide mechanistic data on toxic effects, and reduce the uncertainty associated with dose selection for clinical trials. The first section of this thesis describes how in vitro methods can be used to improve the prediction of the toxicity of chemicals and ophthalmic products. The proper utilization of in vitro methods can accurately predict toxic threshold levels and reduce animal use in product development. Sections two, three and four describe the development of new sensitive in vitro methods for predicting ocular toxicity. Maintaining the barrier function of the cornea is critical for the prevention of the penetration of infections microorganisms and irritating chemicals into the eye. Chapter 2 describes the development of a method for assessing the effects of chemicals on tight junctions using a human corneal epithelial and canine kidney epithelial cell line. In Chapter 3 a method that uses a primary organ culture for assessing single instillation and multiple instillation toxic effects is described. The ScanTox system was shown to be an ideal system to monitor the toxic effects over time as multiple readings can be taken of treated bovine lenses using the nondestructive method of assessing for the lens optical quality. Confirmations of toxic effects were made with the utilization of the viability dye alamarBlue. Chapter 4 describes the development of sensitive in vitro assays for detecting ocular toxicity by measuring the effects of chemicals on the mitochondrial integrity of bovine cornea, bovine lens epithelium and corneal epithelial cells, using fluorescent dyes. The goal of this research was to develop an in vitro test battery that can be used to accurately predict the ocular toxicity of new chemicals and ophthalmic formulations. By comparing the toxicity seen in vivo animals and humans with the toxicity response in these new in vitro methods, it was demonstrated that these in vitro methods can be utilized in a tiered testing strategy in the development of new chemicals and ophthalmic formulations.

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