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Role of Bacteria in Colitis-associated Colon Cancer

Role of Bacteria in Colitis-associated Colon Cancer
细菌在结肠炎相关结肠癌中的作用
批准号:
7264917
负责人:
Christian Jobin
金额:
$29.93万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-04-01 至 2011-03-31
关键词:
8-hydroxy-2&apos-deoxyguanosineA MouseAddressAnimal ModelAzoxymethaneBacteriaCancer EtiologyCarcinogensCell ProliferationCell SurvivalCellsCessation of lifeChromatinChronicColitisColon CarcinomaColorectal CancerComplicationConditionCpG IslandsCrohn&aposs diseaseDNADNA MethylationDataDevelopmentDiagnosisDiseaseDysplasiaEnteralEnterococcusEnterocytesEnvironmentEpigenetic ProcessEscherichia coliEventExperimental Animal ModelExperimental ModelsGene SilencingGenerationsGeneticGenomicsGnotobioticGrowthGrowth FactorGuanosineHealthIL10 geneImmuneImmune responseInflammationInflammatoryInflammatory Bowel DiseasesInflammatory disease of the intestineInterdisciplinary StudyInterleukin-1Interleukin-10InterventionIntestinesIrritable Bowel SyndromeKnowledgeLeadLinkLiteratureMalignant NeoplasmsMediatingMediator of activation proteinMethylationModelingMolecularMusMyelogenousNF-kappa BNeoplasmsNitric OxideNon-Steroidal Anti-Inflammatory AgentsPathway interactionsPatientsPlayPopulationPositioning AttributePreventiveProcessProductionRadialRateReactive Oxygen SpeciesResearchResearch PersonnelResourcesReview LiteratureRiskRisk FactorsRodentRoleSeveritiesSignal PathwaySignal TransductionSodium Dextran SulfateStudy SectionTestingTherapeuticTumor Suppressor GenesUlcerative ColitisWorkactivating transcription factoranticancer researchbasecarcinogenesiscolon dysplasiacommensal microbescyclophosphamide/doxorubicin/lomustine protocolcytokinedesignexpectationmedical complicationnovelnovel therapeuticspreventpromotertumortumor progression

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中文摘要
翻译
描述(由申请人提供):结肠炎相关结肠癌(CAC)是一种主要的癌症形式,也是炎症性肠病(IBD)患者的严重医学并发症。基于人群的研究表明,30岁时溃疡性结肠炎患者发生CAC的风险为18%。这两种情况的共同点是激活了促进炎症、细胞增殖和存活的信号通路。例如,激活转录因子NF-kB的信号级联可促进炎症条件并有利于细胞存活。有趣的是,在包括IL-10基因缺失小鼠在内的一些IBD实验动物模型中观察到瘤变。肠道菌群在结肠炎的发展中起着关键作用,因此细菌可能参与IL- 10-/-小鼠结肠癌的发展。在初步资料中,我们发现粪芽孢杆菌/粪芽孢杆菌。大肠杆菌双相关IL-10-/-小鼠引发肠道炎症并引起结肠发育不良。这表明,对肠道共生菌的失调免疫反应创造了有利于炎症、发育不良和癌症发展的条件。肠道持续的炎症状况可能诱发遗传和表观遗传事件(甲基化、低乙酰化等),这些事件在转录上沉默了参与控制细胞增殖、生长和存活的基因。基于这些结果,我们提出肠道共生细菌引发肠道炎症,然后产生有利于结肠癌发展的环境。以下具体目标旨在验证我们的假设。在AIM I中,鉴定与共生细菌相关的IL-10-/-小鼠炎症和致癌相关的信号通路。目的2:在IL-10-/-小鼠中,确定髓系和肠细胞来源的NF-kB依赖介质在共生细菌诱导的结肠炎相关结肠癌中的作用。目的3,建立炎症对共生菌相关IL-10-/-小鼠结肠癌表观遗传变化和发展的影响。从该项目中获得的信息将有助于制定旨在预防和/或治疗结肠炎相关结肠癌的新策略。理性:了解肠道细菌对结肠炎相关结肠癌发展的影响将有助于设计新的治疗策略来预防/治疗这种病理状况。
英文摘要
DESCRIPTION (provided by applicant): Colitis-associated colon cancer (CAC) represents a major form of cancer and a serious medical complication for patients suffering from inflammatory bowel diseases (IBD). Population-based studies indicate that the risk of CAC among patients with ulcerative colitis is 18% at 30 years. A common denominator for these two conditions is the activation of signaling pathways that promote inflammation, cellular proliferation and survival. For instance, signaling cascades that activate the transcription factor NF-kB promote inflammatory conditions and favor cell survival. Interestingly, neoplasia has been observed in some experimental animal models of IBD including the IL-10 gene deleted mouse. The luminal microflora plays a pivotal role in the development of colitis and consequently bacteria may participate in the development of colon cancer in IL- 10-/- mice. In preliminary data, we found that E.feacalis/E.coli dual associated IL-10-/- mice trigger intestinal inflammation and cause colonic dysplasia. This suggests that dysregulated immune responses to enteric commensal bacteria create conditions favorable to the development of both inflammation and dysplasia and cancer. Persistent inflammatory conditions in the intestine may induce genetic and epigenetic events (methylation, hypoacetylation, ect) that transcriptionally silence genes involved in the control of cellular proliferation, growth and survival. Based on these results, we propose that luminal commensal bacterial trigger intestinal inflammation, which then generate an environment favorable to the development of colon cancer. The following specific aims are designed to test our hypothesis. In AIM I, Identify the signaling pathways associated with inflammation and carcinogenesis in commensal bacteria-associated IL-10-/- mice. AIM 2, Establish the contribution of myeloid and enterocyte-derived NF-kB dependent mediators responsible for commensal bacterial-induced colitis-associated colon cancer in IL-10-/- mice. AIM 3, Establish the impact of inflammation on epigenetic changes and development of colon cancer in commensal bacteria-associated IL-10-/- mice. The information gained from this project will be instrumental for the generation of new strategies aimed at preventing and/or treating colitis-associated colon cancer. Rational in lay term: Understanding the impact of luminal bacteria on the development of colitis-associated colon cancer will allow the design of new therapeutic strategies to prevent/treat this pathological condition.
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Cancer Therapeutics and Host Response Research Program
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海外基金