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Development of synthetic sphingolipids for prostate cancer therapy

Development of synthetic sphingolipids for prostate cancer therapy
开发用于前列腺癌治疗的合成鞘脂
批准号:
10269032
负责人:
Alison Nicole McCracken
金额:
$98.94万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-09-24 至 2023-12-31
关键词:
AddressAmino AcidsAndrogen ReceptorAntigensBenchmarkingBone MarrowCancer PatientCanis familiarisCardiovascular systemCause of DeathCell NucleusCellsCharacteristicsClinical ResearchClinical Trials DesignCombined Modality TherapyCross PresentationCytotoxic ChemotherapyDataDendritic CellsDevelopmentDoseDose-LimitingDrug KineticsDrug SensitizationDrug resistanceEffectivenessEvaluationFDA approvedFastingFundingGenesGenetic TranscriptionGenetically Engineered MouseGlucoseGoalsGovernmentGrowthImmunologicsImmunotherapyImportinsIn VitroIn complete remissionLeadLipidsMalignant NeoplasmsMalignant neoplasm of prostateMaximum Tolerated DoseMeasuresModelingMorbidity - disease rateMusNormal CellNormal tissue morphologyNuclearNuclear ImportNutrientOncogenicOncologyOralOrganoidsOutcomePatientsPersonsPharmaceutical PreparationsPharmacologic SubstancePharmacologyPhasePhase I Clinical TrialsPopulationPre-Clinical ModelProliferatingProstateProstate Cancer therapyProstate-Specific AntigenProtein Phosphatase 2A Regulatory Subunit PR53Protocols documentationRattusRecurrenceResistanceRiskSafetySignal TransductionSphingolipidsStressStructure-Activity RelationshipTelemetryTestingTherapeutic IndexToxic effectToxicologyTumor VolumeTumor stageWorkaddictionanticancer activitycancer cellcancer therapychemotherapyclinical applicationefficacy evaluationfirst-in-humanin vivoinnovationmortalityneoplastic cellnovelpatient derived xenograft modelpatient populationpharmacodynamic biomarkerphase I trialpreventprostate cancer modelresponserisk minimizationstandard of caretargeted agenttherapy resistanttraffickingtumortumor growthtumor metabolismtumor-immune system interactions

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中文摘要
翻译
项目摘要 该项目的目标是将合成鞘脂SGE-893(893)开发成FDA批准的癌症 最终目标是降低终末期耐药前列腺的死亡率和发病率。 癌893在临床前研究中显示出良好的药理学特性和有效的抗癌活性 模型,同时保留正常组织。893和相关分子具有新的作用机制, 同时使用两个经过验证的肿瘤学靶点。这种双靶点方法对癌细胞是致命的, 预计会降低耐药性的风险。尽管其多效性作用,893是良好的耐受性正常 增殖细胞因此,893显示出作为单药治疗的潜力,可以产生持久的反应 即使是像晚期前列腺癌这样难以治疗的癌症,全身化疗仍然是标准, 耐药性导致了高复发率和高死亡率。AS 893的作用机制 进一步表明,它可以使耐药肿瘤对FDA批准的药物敏感,893可能具有额外的 作为联合治疗的组成部分的临床应用。随着关键的降低风险研究的完成,我们 提出了直接进入第二阶段的方法。目标1的目标是通过以下方式扩展目标产品概况: 评估与FDA批准的药物联合使用的疗效,并验证药效学标志物, 可用于测量1期试验中的目标参与。目标2提出了一项毒理学研究, IND申请。预期结果将成为证明可接受毒性的强大组合的一部分 与FDA分享。如果它被批准用于患者使用,这种创新分子将成为第一个 类化合物,提供了希望,并降低死亡率的PC患者的肿瘤没有反应或成为 抗SOC。
英文摘要
PROJECT SUMMARY The objective of this project is to develop the synthetic sphingolipid SGE-893 (893) into an FDA-approved cancer therapy, with the ultimate goal of reducing mortality and morbidity rates in end-stage, drug-resistant prostate cancer. 893 shows promising pharmacological characteristics and potent anti-cancer activity in pre-clinical models while sparing normal tissues. 893 and related molecules have a novel mechanism of action, simultaneously engaging two validated oncology targets. This dual-target approach is deadly to cancer cells and predicted to reduce the risk of resistance. Despite its pleiotropic actions, 893 is well-tolerated by normal proliferating cells. Thus, 893 shows potential as a single-agent therapy that could produce a durable response even in hard-to-treat cancers like late-stage prostate, for which systemic chemotherapy remains the standard- of-care (SOC) and high recurrence and mortality rates are driven by resistance. As 893’s mechanism of action further suggests that it could sensitize drug-resistant tumors to FDA-approved agents, 893 may have additional clinical applications as a component of combination therapy. With key de-risking studies completed, we are proposing a Direct-to-Phase II approach. The objectives of Aim 1 are to extend the Target Product Profile by evaluating efficacy in combination with FDA-approved agents and to validate pharmacodynamics markers that can be used to measure target engagement in a phase 1 trial. Aim 2 proposes toxicology studies required for an IND application. The expected results would become part of a strong portfolio demonstrating acceptable toxicity to share with the FDA. Were it to be approved for patient use, this innovative molecule would become a first-in- class compound, offering hope and reducing mortality in PC patients whose tumors fail to respond to or become resistant to SOC.
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Evaluating the efficacy of a novel NASH therapeutic
  • 批准号:
    10698971
  • 项目类别:
  • 资助金额:
    $29.82万
  • 财政年份:
    2023
  • 负责人:
    Alison Nicole McCracken
  • 依托单位:
海外基金