课题基金 / 基金详情

Growth and patterning in the gut mesenchyme

Growth and patterning in the gut mesenchyme
肠道间质的生长和模式
批准号:
9247172
负责人:
Junhao Mao
金额:
$36.18万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-04-15 至 2019-03-31

项目摘要

项目成果

Junhao Mao的其他基金

相关文献

中文摘要
翻译
描述(由申请人提供):胃肠道内的器官发生和组织稳态需要内皮上皮和相邻间质之间的连续串扰。我们对胃肠道发育的了解大多来自于对内胚层及其衍生物的研究;然而,对控制肠道间充质发育的遗传和细胞机制知之甚少。这项拨款申请旨在揭示这一重要但却鲜为人知的发展系统背后的机制。提出的研究集中在表征肠道间质生长和模式的分子基础上。我们将使用小鼠遗传学和细胞方法的结合来解决三个主要问题。首先,我们将定义一个依赖于sox的分子开关,它负责协调早期原始祖细胞的扩展和随后的间质分化。在拨款的第二部分,我们将确定协同控制平滑肌生长和肠道器官大小的信号通路。在拨款的第三部分,我们将探索一种新的间充质机制,参与肠息肉病的抑制。我们相信这些研究的完成将极大地促进我们对控制肠道发育和体内平衡的基本机制的理解。从我们的研究中获得的知识最终将有助于开发治疗gi相关疾病和癌症的新疗法。
英文摘要
DESCRIPTION (provided by applicant): Organogenesis and tissue homeostasis within the gastrointestinal (GI) tract require continuous crosstalk between the endodermal epithelium and adjacent mesenchyme. Much of what is known about GI development has been learned from studies of the endoderm and its derivatives; however, little is known about the genetic and cellular mechanisms governing gut mesenchymal development. This grant application is designed to uncover the mechanisms that underlie this important, yet poorly understood developmental system. The proposed studies are centered on charactering on the molecular basis of growth and patterning in the gut mesenchyme. We will use a combination of mouse genetics and cellular approaches to address three principle questions. First, we will define a Sox-dependent molecular switch that is responsible for coordinating early primitive progenitor expansion and subsequent mesenchymal differentiation. In the second part of the grant, we will identify the signaling pathways that act in concert to control smooth muscle growth and intestinal organ size. In the third part of the grant, we will explore a novel mesenchymal mechanism that is involved in suppression of intestinal polyposis. We believe that completion of the proposed studies will significantly further our understanding of the fundamental mechanisms controlling gut development and homeostasis. This knowledge gained from our studies will ultimately contribute to the development of new therapies for treating GI-related diseases and cancers.
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