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Defining the Contributions of Pancreatic Ductal and Acinar Cells to Tumorigenesis

Defining the Contributions of Pancreatic Ductal and Acinar Cells to Tumorigenesis
定义胰管和腺泡细胞对肿瘤发生的贡献
批准号:
7545709
负责人:
Sam C. Wang
金额:
$5.13万
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-07-03 至 2010-07-02

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):胰腺癌是美国癌症死亡的第四大原因。5%的五年生存率表明需要改进治疗方法。为了满足这一需求,需要更好地了解胰腺癌发生的机制。可以决定肿瘤表型的几个因素包括:1)肿瘤来源的细胞类型,2)由转化细胞获得的聚集遗传突变,和3)获得遗传突变的序列。基于以前的研究和我们的初步数据,我的假设是细胞来源是决定胰腺肿瘤表型的重要因素。虽然胰腺导管腺癌(PDA)是胰腺癌最常见的形式,但我们仍然不知道哪种细胞类型会引起它。这种缺乏洞察力的情况对于其他类型的胰腺肿瘤也是如此。我的目标是研究成人胰腺腺泡细胞(AC)或导管细胞(DC)特异性表达的突变的致瘤作用。我将使用两个鼠标模型。第一个通过k-ras和Trp 53的同时突变复制PDA;第二个是我们实验室最近开发的实体假乳头状瘤(SPT)的新模型,该模型基于通过Cre重组切除外显子3(<$-catex 3)的外源激活的<$-catenin。我的第一个目标是在成年小鼠中只针对AC进行突变。我将携带突变的k-ras和Trp 53(k-rasG 12 D/Trp 53 R172 H)或<$-连环蛋白(<$-catex 3)的条件表达等位基因的小鼠与携带他莫昔芬激活的Cre的小鼠杂交,Cre通过来自弹性蛋白酶基因的启动子表达为AC。将采用组织学和免疫组织化学对肿瘤进行表征。将通过定量PCR分析基因表达谱。我的第二个目标是评估k-rasG 12 D/Trp 53 R172 H或<$-catex 3在DC中的作用。目前,没有启动子指导Cre仅导管上皮。相反,我将从成年krasG 12 D/Trp 53 R172 H或<$-catex 3小鼠中分离和培养DC,并用慢病毒递送的Cre体外激活它们。将同时引入荧光素酶,以允许通过发光在体内监测肿瘤生长。我们将这些细胞重新植入裸鼠体内,并以与目标1相同的方式表征形成的肿瘤。公共卫生相关性:确定引起胰腺肿瘤的细胞类型有几个重要的意义。首先,我们将能够将更多的研究工作集中在特定的细胞类型上,并对胰腺肿瘤发生背后的机制进行更详细的研究。其次,我们可能能够提供更有针对性的治疗,提高疗效,减少副作用。
英文摘要
DESCRIPTION (provided by applicant): Pancreatic cancer is the fourth-leading cause of cancer deaths in the United States. The 5% five-year survival rate demonstrates the need for improved treatments. To address that need, a better understanding of the mechanisms of pancreatic carcinogenesis is needed. Several factors that may determine tumor phenotype include: 1) cell type of tumor origin, 2) aggregate genetic mutations acquired by transformed cells, and 3) sequence by which genetic mutations are acquired. Based on previous studies and our preliminary data, my hypothesis is that cellular origin is an important factor in determining pancreatic tumor phenotype. Although pancreatic ductal adenocarcinoma (PDA) is the most common form of pancreatic cancer, we still do not know which cell type gives rise to it. This lack of insight is also true for other types of pancreatic tumors. My objectives are to study the tumorigenic effects of mutations expressed specifically to adult pancreatic acinar cells (AC) or ductal cells (DC). I will use two mouse models. The first reproduces PDA via concurrent mutations in k-ras and Trp53; the second is a novel model for solid pseudopapillary tumor (SPT) that our laboratory recently developed and is based on exogenously activated ¿-catenin via Cre recombination-excision of exon 3 (¿-catex3). My first aim is to target mutations to only AC in adult mice. I will cross mice carrying conditionally expressed alleles of mutated k-ras and Trp53 (k-rasG12D/Trp53R172H) or ¿-catenin (¿-catex3) to mice carrying tamoxifen-activated Cre that are expressed to AC via a promoter derived from the elastase gene. Tumors will be characterized with histology and immunohistochemistry. Gene expression profiles will be analyzed by quantitative PCR. My second aim is to evaluate the effects of k-rasG12D/Trp53R172H or ¿-catex3 in DC. Currently, there is no promoter to direct Cre to only ductal epithelium. Instead, I will isolate and culture DC from adult krasG12D/Trp53R172H or ¿-catex3 mice and activate them in vitro with lentiviral delivered Cre. Luciferase will be concurrently introduced to allow in vivo monitoring of tumor growth via luminescence. We will re-implant these cells into nude mice and characterize formed tumors in the same manner as in Aim 1. PUBLIC HEALTH RELEVANCE: Identifying the types of cells that give rise to pancreatic tumors has several important implications. First, we will be able to focus additional research efforts towards that particular cell type and pursue more detailed studies into the mechanisms behind pancreatic tumorigenesis. Secondly, we may be able to deliver more targeted therapy that has increased efficacy and reduced side effects.
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