Paracrine TGF-Beta Signaling in Tumor Initiation and Progression
Paracrine TGF-Beta Signaling in Tumor Initiation and Progression
批准号:
7232518
负责人:
LYNN M MATRISIAN
金额:
$155.0万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-09-25 至 2011-08-31
中文摘要
该提案旨在建立范德比尔特大学肿瘤微环境网络(VUTMEN),
有助于全面了解肿瘤间质在癌症中的作用
启动、进展和转移。VUTMEN使用的策略是将我们的努力集中在
了解宿主的关键生物介质:肿瘤的下游机制
interactions.TGFbeta.项目1使用复杂的小鼠遗传学和先进的蛋白质组学技术,
鉴定肿瘤和间质TGF的下游效应物|影响乳腺癌的3种信号通路
腺体肿瘤发生项目2使用人类前列腺癌和小鼠模型衍生的组合
细胞和组织重组模型来检查调节前列腺的TGF β的效应物
致癌作用TGF β在驱动调节乳腺转移瘤生长的恶性循环中的作用
是Project 3的主题。所有结果将在人肿瘤样本中进行随访。VUTMEN
支持3个“综合共享资源”,带来最先进的技术和系统生物学
三个VUTMEN项目的方法。蛋白质收集和蛋白质组学核心提供蛋白质组学
与肿瘤微环境特别相关的技术,包括微透析和成像质量
谱图像融合核心致力于新的成像策略,增强
了解肿瘤微环境,包括多参数和多模态方法
称为图像融合。生物数学和生物信息学核心开发了新的方法,
分析复杂的数据集,并生成用于迭代假设生成的数学模型,
试验.我们认为,肿瘤微环境的公认复杂性可以通过以下方法来解开:
将我们的努力集中在TGF β的关键调节途径上的策略。这将通过以下方式实现:
对已知的TGF β下游的分子调节剂的系统检查和
利用蛋白质组学方法,在真实的时间内检查体内生物效应,
结果与分子参数使用遗传操作和图像融合技术,使用
数学建模,以迭代地生成假设,并通过实验对其进行测试,并将
导致三个不同但相关的器官部位我们的目标是全面了解
TGF β用于控制肿瘤及其周围组织之间相互作用的机制,
微环境
英文摘要
This proposal seeks to establish the Vanderbilt University Tumor Microenvironment Network (VUTMEN) to
contribute to the generation of a comprehensive understanding of the role of the tumor stroma in cancer
initiation, progression, and metastasis. The strategy used by the VUTMEN is to focus our efforts on
understanding the downstream mechanisms used by a critical biological mediator of host:tumor
interactions.TGFbeta. Project 1 uses sophisticated mouse genetics and advanced proteomic technologies to
identify the downstream effectors of tumor and stromal TGF|3 signaling pathways that influence mammary
gland tumorigenesis. Project 2 uses a combination of human prostate cancer and mouse model-derived
cells and the tissue recombination model to examine the effectors of TGFp that modulate prostatic
carcinogenesis. The role of TGFbeta in driving the vicious cycle that regulates the growth of breast metastases
in bone is the topic of Project 3. All results will be followed up in human tumor samples. The VUTMEN
supports 3 "Integrative Shared Resources" that bring state-of-the-art technologies and a systems biology
approach to the three VUTMEN projects. The Protein Collection and Proteomics Core provides proteomic
technologies specifically relevant to the tumor microenvironment, including microdialysis and imaging mass
spectroscopy. The Image Fusion Core is devoted to novel imaging strategies that enhance the
understanding of the tumor microenvironment, including a multi-parametric and multi-modality approach
known as image fusion. The Biomathematics and Bioinformatics Core develops new approaches to
analyzing complex data sets and generates mathematical models for iterative hypothesis generation and
testing. We propose that the acknowledged complexity of the tumor microenvironment can be unraveled by
the strategy of focusing our efforts on the key regulatory pathway of TGFbeta. This will be achieved through the
systematic examination of known molecular modulators that are downstream of TGFbeta and the discovery of
new ones using proteomic approaches, examining biological effects in vivo in real time and correlating the
results with molecular parameters using genetic manipulation and image fusion technologies, using
mathematical modeling to iteratively generate hypotheses and test them experimentally, and comparing the
results in three distinct but related organ sites. Our goal is to generate a comprehensive understanding of
the mechanisms used by TGFbeta to control the reciprocal interactions between a tumor and its
microenvironment.
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批准号:8340449
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依托单位:
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批准号:8340448
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资助金额:$2.85万
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依托单位:
Host Microenvironment and Bone Metastases
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依托单位:
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批准号:7289826
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资助金额:$10.45万
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批准号:7496880
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