Activating p53 for colorectal cancer prevention
Activating p53 for colorectal cancer prevention
批准号:
10170288
负责人:
Xiangwei Wu
金额:
$42.48万
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-06-12 至 2023-05-31
关键词:
AffectApcMin/+ miceBenignBiochemicalCancer EtiologyCancer PatientCardiovascular systemCessation of lifeChemopreventionChemopreventive AgentColonColonic PolypsColorectal CancerDataDevelopmentDoseDrug KineticsEffectivenessElephantsExcisionFamilial Adenomatous Polyposis SyndromeFoundationsFutureGenesGeneticGenetic studyGenomeHistologicHumanIn VitroInterventionInvestigational TherapiesLeftLesionMDM2 geneMalignant NeoplasmsMediatingMedical ResearchModelingMusMutant Strains MiceMutationMutation DetectionNon-Steroidal Anti-Inflammatory AgentsNormal tissue morphologyNude MiceOperative Surgical ProceduresOralPatientsPharmaceutical PreparationsPharmacodynamicsPhase I Clinical TrialsPlayPolypsPrevention trialReportingRoleSmall IntestinesSolidTP53 geneTestingToxic effectTumor SuppressionTumor Suppressor ProteinsTumor TissueTumor stageUnited StatesUpper digestive tract structureadenomacancer chemopreventioncancer clinical trialcancer preventioncancer therapycell growthcohortcolon growthcolon tumorigenesiscolorectal cancer preventionconditional mutantdesignexperimental studyimprovedinhibitor/antagonistintestinal tumorigenesislifetime riskmouse modelmutantnovel strategiespreclinical toxicitypreventprotein protein interactionresponseside effectsmall moleculetumortumor growthtumor initiationtumor progressiontumor xenograft
中文摘要
项目总结:
P53是一种重要的肿瘤抑制因子,在大多数物种中可以阻止肿瘤的发展,是最常见的
人类癌症中的失活基因。尽管大约50%的癌症患者携带突变的P53,但许多肿瘤位于
肿瘤发展的早期阶段保留了野生型p53。癌前病变组织中野生型P53的表达
病变是通过激活P53抑制肿瘤进行化学预防的绝佳机会
进步。MDM2蛋白是P53的关键负性调节因子,在拮抗P53中起主要作用
通过直接互动。阻断MDM2-P53蛋白的小分子MDM2抑制剂
相互作用将使p53从MDM2中解放出来,从而恢复野生型p53的肿瘤抑制功能。
我们假设通过阻断MDM2-P53相互作用增强野生型P53的功能。
使用MDM2抑制剂的前驱病变是预防癌症的有效方法。我们建议
在家族性腺瘤性息肉病模型ApcMin/+小鼠身上测试这一假设。如果成功,我们的研究将为
癌症化学预防的新方法。
英文摘要
PROJECT SUMMARY:
p53 is a crucial tumor suppressor that stops tumor development in most species and is the most frequently
inactivated gene in human cancers. Although about 50% of cancer patients harbor mutant p53, many tumors at
early stages of tumor development retain wild type p53. The presence of wild-type p53 in cancer precursor
lesions presents an excellent opportunity for chemoprevention by activating p53 to suppress tumor
progression. The MDM2 protein is a key negative regulator of p53 and plays a primary role in antagonizing p53
through direct interaction. Small molecule MDM2 inhibitors that block the MDM2–p53 protein–protein
interaction would liberate p53 from MDM2, thereby restoring the tumor suppressor function of wild-type p53.
We hypothesize that enhancement of wild-type p53 functions by blocking MDM2-p53 interaction in
precursor lesions using MDM2 inhibitor is an effective approach for cancer prevention. We propose to
test this hypothesis in ApcMin/+ mice, a model for familial adenomatous polyposis. If succeed, our study will pave
a new way for cancer chemoprevention.
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