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TLR-induzierte Signalwege bei der Differenzierung und Aktivierung humaner mononukleärer Phagozyten

TLR-induzierte Signalwege bei der Differenzierung und Aktivierung humaner mononukleärer Phagozyten
TLR诱导的人单核吞噬细胞分化和激活的信号通路
批准号:
5358247
负责人:
Professor Dr. Michael Rehli
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Priority Programmes
财政年份:
2002
资助国家:
德国
项目状态:
已结题
起止时间:
2001-12-31 至 2003-12-31

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中文摘要
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英文摘要
Effector cells of the myeloid lineage (monocytes, macrophages, myeloid dendritic cells, granulocytes) represent a first line of defense against microbial challenges. Through a limited number of pattern recognition receptors, including the recently discovered family of toll-like receptors (TLR) they recognize microbial structures that are present in many pathogens but absent from host tissues and respond to microbial infection in a cell-type specific manner. The main purpose of our project is to investigate TLR signaling pathways in primary human innate immune cells, which have rarely been studied so far. We propose to establish a differentiation model based on peripheral blood stem cells which are transduced with retroviral constructs to express dominant negative forms of TLR signaling pathway components and are subsequently differentiated into mature myeloid cell types in vitro. This approach should allow the investigation of several important aspects of TLR biology. These include among others the identification of signaling pathways used by particular microbial patterns or the role of TLR-induced signaling pathways during differentiation and activation of human myeloid cells (e g the maturation of dendritic cells which represent an important link between innate and adaptive immunity). The proposed project will further our understanding of innate immune defense mechanisms in humans and may lead to new therapeutic strategies for a number of inflammatory diseases.
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Modelling DNA methylation in the systemic progression of cancer
Differentiation-associated, macrophage-specific gene expression: Mechanisms of transcription regulation
Mechanism and relevance of active DNA methylation during monocyte differentiation
Evolution of genetic & epigenetic aberrations during malignant progression of breast cancerand the impact of the local environment
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