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Phosphosulindac, miRNAs and cancer racial disparity

Phosphosulindac, miRNAs and cancer racial disparity
磷舒酸、miRNA 和癌症种族差异
批准号:
8322936
负责人:
JENNIE L WILLIAMS
金额:
$1.14万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-02-05 至 2012-07-13

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中文摘要
翻译
描述(由申请人提供):流行病学数据表明,高加索人和非洲裔美国人(AA)之间结肠癌的发病率和死亡率不成比例。虽然社会经济和饮食差异导致了这种差异,但必须涉及其他潜在因素。例如,这两个群体对化学预防剂的反应是不同的。由于化学预防剂通过分子靶点发挥作用,这种差异表明遗传水平上的差异。因此,产生和评价化学预防剂,解决化学抗性的问题是至关重要的。磷酸-舒林酸(phospho-sulindac,P-S)是一种很有前途的结肠癌化学预防剂,其通过抑制细胞增殖和增强细胞杀伤而比舒林酸更有效地抑制结肠癌细胞生长。然而,对癌细胞中负责这种效应的分子靶点知之甚少。基于初步结果,我们的假设是AA和高加索人之间的miRNA表达/调节不同,这种差异可能至少部分解释了a)对化学预防的不同反应和B)结直肠癌的不同发病率。为了验证这些假设,我们提出了以下三个具体目标:1)研究P-S对源自高加索人和AA的人结肠癌细胞系中的p53、NF-κ B、2-catenin和细胞动力学的影响; 2)评估P-S对结肠癌p53缺失小鼠模型中的miRNA谱的影响;和,3)确定来自AA和高加索人患者的人结肠癌样品中的miRNA谱。这些发现的结果将导致对一个全球性问题的理解,并为开发跨越不同人群的化学预防剂提供详细信息。 公共卫生相关性:我们将定义P-S对结肠癌细胞生长发挥抑制作用的机制,并解决基因突变导致的种族差异。我们将使用来自高加索人和AA结肠癌组织的细胞系,在细胞培养中评估转录因子和miRNA表达的变化(通过微阵列分析)。此外,我们将测试我们的体外研究结果是否与结肠癌的临床前模型相关。本研究将在p53 null和C57 BL/6(亲本背景)小鼠模型中直接评估P-S对转录因子和miRNA表达的影响。因此,我们将测试体外研究的关键机制发现。最后,我们将在蛋白质、RNA和DNA水平上比较和对比高加索人和AA的前瞻性和回顾性结肠癌组织。能够证明P-S在恶性结肠细胞中诱导可能与其在癌症中的药理作用相关的潜在重要分子变化,将表明在预防结肠癌方面的重要突破。此外,能够将遗传致病效应归因于对化疗药物的耐药性,将解决种族差异的问题。
英文摘要
DESCRIPTION (provided by applicant): Epidemiological data has demonstrated that colon cancer is disproportional in incidence and mortality between Caucasians and African Americans (AA). Whereas socioeconomic and dietary differences contribute to this disparity other underlying factors must be involved. For instance, the response to chemopreventive agents is different between these two populations. Since chemopreventive agents exert their effect through a molecular target, this disparity would suggest differences at the genetic level. Therefore, the generation and evaluation of chemopreventive agents that address the issue of chemo-resistance is essential. A promising colon cancer chemopreventive agent, phospho-sulindac (P-S), inhibits colon cancer cell growth more potently than sulindac by inhibiting cell proliferation and enhancing cell killing. However, very little is known about the molecular targets in the cancer cell that are responsible for this effect. Our hypothesis, based on preliminary results, is that miRNA expression/regulation differs between AA and Caucasians and this difference may account, at least in part, a) for the differential response to chemoprevention and b) for the differential incidence of colorectal cancer. To test these hypotheses, we propose the following three specific aims: 1) To study the effect of P-S on p53, NF-kB, 2-catenin, and cell kinetics in human colon cancer cell lines originating from Caucasians and AA; 2) To assess the effect of P- S on the miRNA profile in a p53 null murine model of colon cancer; and, 3) Determine the miRNA profile in human colon cancer samples from AA and Caucasian patients. The results from these findings will lead to the understanding of a worldwide issue and provide details for the development of chemopreventive agents that will span diverse populations. PUBLIC HEALTH RELEVANCE: We will define the mechanisms by which P-S exert its inhibitory effect on the growth of colon cancer cells and address racial disparities as a result of genetic mutations. We will evaluate in cell culture, using cell lines derived from Caucasians and AA colon cancer tissues, changes (by microarray analysis) in the expression of transcription factors and miRNAs. In addition, we will test whether our in vitro findings are relevant to a preclinical model of colon cancer. This study will evaluate directly in a p53 null and C57BL/6 (parent background) mice model the effect of P-S on the expressions of transcription factors and miRNAs. Thereby, we will test the key mechanistic findings from the in vitro study. Lastly, we will compare and contrast prospective and retrospective colon cancer tissue of Caucasians and AA at the protein, RNA, and DNA levels. Being able to demonstrate that P-S induces a potentially important molecular change in the malignant colonocytes that may be relevant to its pharmacological actions in cancer would indicate an important breakthrough in the prevention of colon cancer. Also, being able to attribute a genetic causative effect to resistance to chemotherapeutic agents will address the issue of racial disparity.
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Increasing Diversity in Undergraduate Cancer Biology Education and Research (INDUCER)
Increasing Diversity in Undergraduate Cancer Biology Education and Research (INDUCER)
Increasing Diversity in Undergraduate Cancer Biology Education and Research (INDUCER)
Increasing Diversity in Undergraduate Cancer Biology Education and Research (INDUCER)
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