Inhibition of Reflux-Induced Esophageal Adenocarcinoma by Proanthocyanidins
Inhibition of Reflux-Induced Esophageal Adenocarcinoma by Proanthocyanidins
批准号:
8434841
负责人:
Laura A Kresty
金额:
$31.09万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-02-28 至 2017-01-31
关键词:
AcidsAdenocarcinoma CellAlcohol consumptionAnastomosis - actionAnimalsApoptosisApoptoticAreaAutophagocytosisBarrett EsophagusBile AcidsBiological AssayBiological MarkersCell Cycle ArrestCell DeathCell Death InductionCell LineCell ProliferationCell SurvivalCellsCellular StructuresCessation of lifeChemopreventive AgentClinicalCranberriesDNA DamageDefectDevelopmentDietDiseaseDoseEnvironmentEnzymesEpithelialEpitheliumEsophagealEsophageal AdenocarcinomaEsophageal Intraepithelial NeoplasiaEsophageal TissueEsophagusEvaluationFoundationsFrequenciesGastroesophageal reflux diseaseGene ExpressionGene Expression ProfileGoalsGrowthHumanHuman Cell LineImageImaging technologyIn VitroInterventionInvestigationKnowledgeLesionLinkM cellMAP Kinase GeneMAPK14 geneMAPK3 geneMAPK8 geneMalignant NeoplasmsMalignant neoplasm of esophagusMeasurableMeasurementMeasuresModelingMolecularMonitorMorphologyNFKB Signaling PathwayNecrosisNuclearNude MiceObesityOperative Surgical ProceduresOptical Coherence TomographyOutcomePathologyPathway AnalysisPatientsPharmaceutical PreparationsPhasePlantsPremalignantPreventionPrevention strategyPreventiveProanthocyanidinsProceduresPropertyProteinsProto-Oncogene Proteins c-aktPublishingRattusRefluxResearchResearch Project GrantsResearch ProposalsResistanceRiskRisk FactorsRisk ReductionRodentRodent ModelS PhaseSignal PathwaySignal TransductionSignaling MoleculeStagingStomachSurgical ModelsSurvival RateTechniquesTestingTimeTissuesTobacco useToxic effectTranslatingTumor Suppressor GenesUnited StatesValidationVesicleWestern WorldXenograft procedurebasecancer typecarcinogenesisclinically relevantcohortcytokinedrinking waterimaging modalityimprovedin vivolight scatteringmetabolomicsmolecular markernoveloral cavity epitheliumoutcome forecastpre-clinicalpre-clinical researchscreeningstemtumor
中文摘要
描述(由申请人提供):食管腺癌(EAC)的发病率在过去三十年中增加了500%,导致EAC被确定为美国所有癌症类型中增长最快的。食管癌是一种极其致命的恶性肿瘤,5年生存率一直低于20%。EAC发病率上升的确切原因是一个积极的调查领域。胃和十二指肠内容物持续的、有症状的反流,被称为胃食管病(GERD),与EAC的发展密切相关,它是唯一已知的通过刺激细胞增殖和细胞凋亡抵抗的巴雷特食管(BE)的前驱病变。其他EAC风险因素包括肥胖、动物性饮食以及在较小程度上使用烟草和酒精。植物性饮食通常与EAC风险降低有关。因此,本研究项目的长期目标是开发一种标准的富含原花青素的蔓越莓提取物(C-PAC)预防食管腺癌的有效策略。这项临床前研究计划源于我们已发表的和初步未发表的结果,这些结果表明,当凋亡和自噬机制存在缺陷时,C-PAC通过凋亡、自噬和坏死诱导细胞死亡,从而降低EAC细胞的活力。C-PAC处理还诱导s期延迟,导致G2-M细胞周期阻滞,并显著抑制裸小鼠OE19 EAC异种移植物的生长。尽管有希望的结果支持C-PAC的化学预防应用,但关于C-PAC诱导细胞死亡的机制仍然存在大量的知识空白。本申请中提出的研究将告知C-PAC细胞诱导死亡能力的信号机制,利用临床相关的反流诱导的EAC啮齿动物模型确定C-PAC预防食管腺癌的体内疗效,并测试一种新的成像方式。目的1将利用一组经过验证的食管细胞系,这些细胞系基于病理、肿瘤抑制基因状态和酸敏感性而不同,以解剖与C- PACs癌症抑制潜力相关的信号通路;正常食管细胞系(HET1A)、Barrett癌前细胞系(CP- A、CP- b、CP- c、CP- d)和食管腺癌细胞系(fl -1、JHEso-AD1、OE19、OE33)将被用于研究与C-PAC治疗相关的癌症抑制机制。目的2将重点评估C-PAC在大鼠食管胃十二指肠吻合(EGDA)模型中对EAC的化学预防潜力,并提高我们对C-PAC在体内潜力的机制理解。目标3将评估一种新型成像技术的使用,平行频域光学相干断层扫描(FDOCT),以检测与肿瘤前期发展相关的核形态或亚细胞结构的早期变化,生物标志物调节,并潜在地检测早期化学预防效果。该研究的积极结果将为快速将这些临床前研究结果转化为EAC风险增加的队列(包括BE患者或食管发育不良患者)的临床干预奠定基础。
英文摘要
DESCRIPTION (provided by applicant): Esophageal adenocarcinoma (EAC) rates have increased 500% over the last three decades resulting in EAC being identified as the fastest increasing of all cancer types in the US. Esophageal cancer is an extremely deadly malignancy with 5-year survival rates consistently under 20%. The precise reasons for increasing rates of EAC are an active area of investigation. Persistent, symptomatic, reflux of gastric and duodenal contents, known as gastroesophageal disease (GERD), strongly correlate with EAC development and it's only known precursor lesion Barrett's esophagus (BE) via stimulation of cellular proliferation and apoptosis resistance. Other EAC risk factors include obesity, animal-based diets and to a lesser extent tobacco and alcohol use. Plant-based diets have generally been associated with a reduction of risk for EAC. Thus, the long-term goal of this research project is to develop efficacious strategies for the prevention of esophageal adenocarcinoma using a standardized proanthocyanidin rich cranberry extract (C-PAC). This preclinical research proposal stems from our published and preliminary unpublished results demonstrating that C-PAC decreases EAC cell viability by inducing cell death via apoptosis, autophagy and necrosis when apoptotic and autophagy machinery is defective. C-PAC treatment also induces an S-phase delay, causes G2-M cell cycle arrest, and significantly inhibits the growth of OE19 EAC xenografts in nude mice. Despite promising results supporting the chemopreventive application of C-PAC, substantial knowledge gaps remain with regard to the mechanisms of C-PAC-induced cell death. Studies proposed in this application will inform the signaling mechanisms involved in C-PACs cell death-inducing capacity, determine the in vivo efficacy of C-PAC for the prevention of esophageal adenocarcinoma utilizing a clinically relevant reflux-induced rodent model of EAC and test a novel imaging modality. Aim 1 will utilize a panel of authenticated esophageal cell lines that differ based on pathology, tumor suppressor gene status and acid sensitivity to dissect signaling pathways associated with C- PACs cancer inhibitory potential; the normal esophageal cell line (HET1A), Barrett's premalignant lines (CP- A,CP-B,CP-C,CP-D) and esophageal adenocarcinoma lines (FLO-1,JHEso-AD1,OE19,OE33) will be used to access cancer inhibitory mechanisms associated with C-PAC treatment. Aim 2 will focus on assessing the chemopreventive potential of C-PAC against EAC in the rat esophagogastroduodenal anastomosis (EGDA) model and improve our mechanistic understanding of C-PACs in vivo potential. Aim 3 will evaluate the use of a novel imaging technology, parallel frequency-domain optical coherence tomography (FDOCT), to detect early changes in nuclear morphology or sub-cellular structures linked with the development of preneoplasia, biomarker modulation and potentially to detect early chemopreventive efficacy. Positive outcomes of the proposed research will lay the foundation to rapidly translate these preclinical findings to clinical interventions in cohorts at increased risk for EAC, including BE patients or patients with esophageal dysplasia.
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会议论文
Inhibition of Reflux-Induced Esophageal Adenocarcinoma by Proanthocyanidins
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批准号:8657015
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项目类别:
-
资助金额:$30.8万
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财政年份:2012
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负责人:Laura A Kresty
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依托单位:
Targeting Histone Deacetylation: A Tool for Chemopevention of Esophageal Cancer
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批准号:7479872
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项目类别:
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资助金额:$15.0万
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财政年份:2007
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负责人:Laura A Kresty
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依托单位:
Targeting Histone Deacetylation: A Tool for Chemopevention of Esophageal Cancer
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批准号:7313116
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项目类别:
-
资助金额:$18.0万
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财政年份:2007
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负责人:Laura A Kresty
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依托单位:
海外基金