Inducing Chromosomal Damage Responses in Pancreatic Cancer
Inducing Chromosomal Damage Responses in Pancreatic Cancer
批准号:
7740054
负责人:
Douglas V Faller
金额:
$17.88万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-08-01 至 2011-07-31
关键词:
AdultAdverse effectsAnimalsApoptosisApoptoticCancer cell lineCell Cycle ArrestCellsClinicalClinical ResearchDNADNA DamageDNA SequenceDataDevelopmentEpithelialEpithelial CellsExposure toFoundationsFundingGenesGrantGrowthHumanIn VitroInjectableKnowledgeLightLymphomaMalignant - descriptorMalignant Epithelial CellMalignant NeoplasmsMalignant neoplasm of pancreasMediatingModelingMolecularMusNormal CellNormal tissue morphologyOligonucleotidesOperative Surgical ProceduresOrphan DrugsPancreasPancreatic DiseasesPancreatic carcinomaPhasePhase II Clinical TrialsProstate carcinomaRadiation therapyRodentRouteSafetySignal TransductionSmall Business Technology Transfer ResearchSolidTaxane CompoundTelomeraseTelomere ShorteningTestingTherapeuticTimeTissuesToxic effectTumor Suppressor GenesUncertaintyXenograft Modelbasecancer cellchemotherapeutic agentchemotherapyconventional therapycytotoxiccytotoxicitydesignexperiencegenotoxicityin vivointerdisciplinary approachmelanomaneoplastic cellnovelnovel strategiesnovel therapeuticsoutcome forecastpancreatic neoplasmpre-clinicalprogramsprotein complexpublic health relevancerepairedresponsesmall moleculestemtaxanetelomeretreatment strategytumortumor specificitytumor xenograft
中文摘要
描述(由申请人提供):我们和我们的合作者已经证明,与端粒3'悬悬序列互补的11-或16-碱基寡核苷酸(T-oligos)在大多数谱系的正常人类细胞中诱导短暂的细胞周期阻滞,但在人类胰腺癌细胞,以及人类淋巴瘤,黑色素瘤和前列腺癌中导致细胞凋亡。在初步数据中,我们发现t寡核苷酸增强了紫杉烷对胰腺癌细胞的活性。在体内研究中,我们还证明,在人类异种移植模型和侵袭性人类淋巴瘤自发小鼠模型中,给予IV、SC或IP的11或16聚t寡核苷酸产生了显著的全身抗肿瘤反应,而且没有毒性。我们假设这些t -寡核苷酸可能为治疗胰腺恶性肿瘤提供一种新的途径。在我们的初步研究中,我们已经证明了新的16-mer t寡核苷酸对多种恶性人类胰腺癌细胞系(晚期胰腺恶性肿瘤的代表)具有显著的靶向细胞毒性。同样的寡聚物对培养的正常人上皮细胞没有影响。我们建议:1)证明和优化t寡核苷酸对胰腺癌细胞的细胞毒性/细胞病变作用;2)阐明细胞毒性的分子机制和t寡核苷酸与化疗的协同能力;3)在人胰腺癌异种移植瘤模型上检测t寡核苷酸的体内抗肿瘤活性和安全性。本文提出的研究将为该方法治疗胰腺癌的临床发展提供坚实的临床前基础。公共卫生相关性:目前晚期胰腺癌的治疗相对无效,也相对非特异性,因为它们既损害正常组织,也损害恶性组织,导致与放射治疗和化疗相关的副作用和毒性。我们开发了一种新的靶向治疗胰腺癌的方法,使用一种小的DNA分子,并在初步研究中表明,这种药物对动物无毒,并产生很强的抗癌作用,并增强了胰腺癌化疗药物的活性。我们提出的研究将为这种新型治疗方法的后续临床开发提供坚实的临床前基础。
英文摘要
DESCRIPTION (provided by applicant): We and our collaborators have demonstrated that 11- or 16-base oligonucleotides complementary to the 3' overhang sequence of the telomere (T-oligos) induce transient cell cycle arrest in normal human cells of most lineages, but cause apoptosis in human pancreatic cancer cells, as well as human lymphoma, melanoma, and prostate carcinomas. In preliminary data, we show that the T-oligos enhance the activity of taxanes on pancreatic carcinoma cells. In in vivo studies, we have also demonstrated that 11- or 16-mer T-oligos given IV, SC or IP generate dramatic systemic anti-tumor responses, without toxicity, in human xenograft models, and in a spontaneous murine model of aggressive human lymphoma. We hypothesize that these T-oligos may offer a new approach to treatment of pancreatic malignancies. We have demonstrated dramatic targeted cytotoxicity by the new 16-mer T-oligos towards multiple malignant human pancreatic cancer cell lines, representative of advanced pancreatic malignancies, in our preliminary studies. The same oligos had no effects on normal human epithelial cells in culture. We propose to: 1) demonstrate and optimize the cytotoxic / cytopathic effects of T-oligos on pancreatic cancer cells; 2) elucidate the molecular mechanisms of cytotoxicity and the ability of the T-oligos to synergize with chemotherapy; and 3) test the anti-tumor activity and safety of T-oligos in vivo on human pancreatic cancer xenograft tumor models. The studies proposed here will provide a solid preclinical basis for the clinical development of this approach for the treatment of pancreatic cancer. PUBLIC HEALTH RELEVANCE: Current treatments for advanced pancreatic cancer are relatively ineffective and also relatively non-specific, in that they damage normal tissues as well as malignant tissues, leading to the side-effects and toxicities associated with radiation therapy and chemotherapy. We have developed a new targeted approach to the treatment of pancreatic cancer using a small DNA molecule, and have shown in preliminary studies that this agent is non-toxic to animals and produces a strong anti-cancer effect, and enhances the activity of the chemotherapeutic agents used in pancreatic cancer. We propose studies that will provide a solid preclinical basis for the subsequent clinical development of this novel therapeutic.
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会议论文
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