课题基金 / 基金详情

Immunotherapy for Malignant Mesothelioma, Lung Cancer and Thymic Malignancies

Immunotherapy for Malignant Mesothelioma, Lung Cancer and Thymic Malignancies
恶性间皮瘤、肺癌和胸腺恶性肿瘤的免疫治疗
批准号:
10014453
负责人:
RAFFIT HASSAN
金额:
$150.66万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
关键词:
Alkylating AgentsAntibody-drug conjugatesAscitesAttenuatedBacterial ToxinsCategoriesCell LineCharacteristicsClinicalClinical TrialsConduct Clinical TrialsDNADNA Repair GeneDevelopmentDifferentiation AntigensDrug TargetingEpidermal Growth Factor ReceptorGeneticGerm-Line MutationGoalsHumanImmuneImmune checkpoint inhibitorImmunizeImmunocompetentImmunotherapeutic agentImmunotherapyImmunotoxinsIn VitroInfiltrationKRAS2 geneLaboratoriesLaboratory ResearchLaboratory StudyLinkLiquid substanceListeria monocytogenesLung AdenocarcinomaLymphocyteMalignant NeoplasmsMalignant Pleural MesotheliomaMalignant mesotheliomaMalignant neoplasm of lungMalignant neoplasm of ovaryMalignant neoplasm of thoraxMalignant neoplasm of thymusMaximum Tolerated DoseMembraneMesothelial CellMesotheliomaModelingMonoclonal AntibodiesMorphologyMusMutationNon-Small-Cell Lung CarcinomaOutcomePDCD1LG1 genePancreatic AdenocarcinomaPathway interactionsPatientsPeripheral Blood Mononuclear CellPeritoneumPharmaceutical PreparationsPhasePhase I Clinical TrialsPlatinumPleuraPleuralPleural MesotheliomaPrior TherapyPseudomonas aeruginosa toxA proteinResearchRoleSafetyTherapeutic AgentsThymic CarcinomaThymomaThymus GlandTranslational ResearchTumor Cell LineTumor-DerivedVaccinesWorkanti-PD-L1anti-PD1 antibodiescancer therapycheckpoint inhibitionchemotherapydifferential expressiondrug sensitivityeffective therapyfallsgraft vs host diseasehuman modelhumanized mouseimmune checkpointimmunotherapy clinical trialsimprovedin vivoin vivo Modelinhibitor/antagonistlung small cell carcinomamesothelinmouse modelmutantneoplastic cellnovelnovel therapeuticsoutcome forecastpericardial sacphase 1 studyphase 2 studyphase I trialprogramsrare cancerside effecttargeted agenttemozolomidetumortumor xenograftvector

项目摘要

项目成果

RAFFIT HASSAN的其他基金

相似基金

相关文献

中文摘要
翻译
我们项目的总体目标是为胸部癌症患者开发更有效的治疗方法。这项工作分为两大类福尔斯:1。开发间皮素用于间皮瘤的癌症治疗。2.免疫疗法和其他治疗肺癌和胸腺癌的方法。1.开发间皮素用于间皮瘤治疗和相关转化研究我们目前的研究集中于使用针对肿瘤分化抗原间皮素的免疫疗法,间皮素在胸膜、心包和腹膜内衬的正常间皮细胞上表达,但在几种人类肿瘤中高度表达,特别是间皮瘤、卵巢癌、肺癌和胰腺腺癌。间皮素的这种差异表达使其成为肿瘤特异性治疗的有吸引力的候选者。我们的努力现在集中在利用它间皮瘤治疗使用不同的方法。这些包括抗间皮素免疫毒素(LMB-100)、抗间皮素药物缀合物(BAY 94-9343)和间皮素疫苗(CRS-207)。LMB-100是由连接至截短形式的有效细菌毒素假单胞菌外毒素A的抗间皮素Fv组成的免疫毒素,所述截短形式的有效细菌毒素假单胞菌外毒素A已被去免疫化以降低其抗原性。我们最近完成了LMB-100的I期试验,并确定了其安全性和最大耐受剂量。目前,我们正在间皮瘤患者中进行II期研究,与免疫检查点抑制剂Pembrolizumab联合使用。我们最近完成了一项I期临床试验,以确定抗间皮素抗体药物缀合物BAY 94-9343的安全性和MTD,BAY 94-9343由连接至美登木素生物碱DM 4的人源化抗间皮素单克隆抗体组成,以及其与化疗组合的I期研究。我们还用表达间皮素的减毒活单核细胞增多性李斯特菌(CRS 207)沿着化疗进行了I期临床试验,并且在恶性胸膜间皮瘤患者中观察到OS改善。目前,我的实验室正在研究DNA修复基因的种系突变,这可能会导致间皮瘤并影响临床结果。我们已经证明,DNA修复基因的生殖系突变增加了对铂类药物治疗的敏感性,并提高了胸膜间皮瘤患者的总生存率。在实验室中,我们专注于开发人类间皮瘤的体外和体内模型。我们已经建立了几个早期传代肿瘤细胞系从患者的腹水和胸水。我们已经评估了这些细胞系的形态学和遗传学特征,并正在使用它们来研究体外药物敏感性。目前,我们正在评估这些患者来源的间皮瘤细胞系对PARP抑制剂(奥拉帕尼和Talazoparib)和DNA烷化剂替莫唑胺的遗传背景敏感性。此外,我们已经建立了人源化间皮瘤异种移植肿瘤模型,其中患者来源的肿瘤细胞和来自健康供体的人PBMC用于体内研究。由于PBMC-人源化小鼠模型中移植物抗宿主病(GVHD)的发展限制了抗肿瘤功效持续时间的评估,我们开发了同基因免疫活性小鼠模型。由于免疫毒素LMB-100可以特异性靶向人间皮素,我们通过用编码hMSLN膜结合片段的hMSLN表达载体转染PD-L1阳性小鼠肺腺癌细胞系来建立表达人间皮素的免疫活性同系小鼠肿瘤模型。这些细胞系被用于发展肿瘤。我们已经研究了LMB-100与抗PD 1抗体组合在两种模型中的作用,并且已经看到肿瘤消退。这些模型对于评价间皮瘤的新型治疗药物和抗肿瘤疗效的机制研究是必不可少的。其他正在进行的实验室研究集中在了解间皮瘤肿瘤免疫微环境和抗间皮素靶向药物治疗后的变化。2.免疫疗法治疗胸腺癌和肺癌。胸腺癌:胸腺瘤是一种罕见的肿瘤,其特征是淋巴细胞浸润,使其特别适合于免疫检查点抑制。胸腺瘤患者目前正在接受抗PD-L1单克隆抗体MSB 0010718 C的I期临床试验治疗。我们已经在这些患者中看到了显著的抗肿瘤活性,伴随着胸腺瘤患者特有的副作用。此外,我们正在进行舒尼替尼在胸腺癌中的II期研究。肺癌:我们目前正在既往治疗失败的肺腺癌患者中开展抗PD-L1单克隆抗体MSB 0010718 C的临床试验。我们的实验室最近发现,约25%的转移性肺腺癌患者高表达间皮素。这些肿瘤中的间皮素表达与KRAS突变和野生型EGFR状态高度相关,并且独立地与不良预后相关。我们的假设是,K-RAS突变型肺癌患者可以从间皮素定向治疗中获益。间皮素定向疗法治疗肺癌的临床试验即将开始。我们的实验室也在研究免疫检查点在恶性间皮瘤中的作用,以便靶向这一途径的药物可以用于治疗间皮瘤。
英文摘要
The overall goal of our program is to develop more effective therapies for patients with thoracic cancers. This work falls under two main categories: 1. Exploiting mesothelin for cancer therapy in mesothelioma. 2. Immunotherapy and other approaches to treat lung cancer and thymic cancers. 1. Exploiting mesothelin for mesothelioma therapy and related translational research Our current studies are focused on using immunotherapy directed against the tumor differentiation antigen mesothelin, which is expressed on normal mesothelial cells lining the pleura, pericardium and peritoneum but is highly expressed in several human tumors especially mesothelioma, ovarian cancer, lung cancer and pancreatic adenocarcinomas. This differential expression of mesothelin makes it an attractive candidate for tumor specific therapy. Our efforts are now focused on exploiting it for mesothelioma therapy using different approaches. These include anti mesothelin immunotoxins (LMB-100), an anti-mesothelin drug conjugate (BAY 94-9343) and a mesothelin vaccine (CRS-207). LMB-100 is an immunotoxin consisting of the anti-mesothelin Fv linked to a truncated form of the potent bacterial toxin, Pseudomonas exotoxin A, which has been de-immunized to decrease its antigenicity. We have recently completed the phase I trial of LMB-100 and established its safety and maximum tolerated dose. Currently we are conducting a phase II study in patients with mesothelioma in combination with immune checkpoint inhibitor Pembrolizumab. We have recently completed a phase I clinical trial to determine the safety and MTD of the anti-mesothelin antibody drug conjugate BAY 94-9343, which consists of a humanized anti-mesothelin monoclonal antibody linked to the maytansinoid DM4 and a phase I study of the same in combination with chemotherapy. We have also conducted a Phase I clinical trial with mesothelin expressing live, attenuated Listeria monocytogenes (CRS207) along with chemotherapy, and have seen improved OS in patients with malignant pleural mesothelioma. Currently my laboratory is studying germline mutations in DNA repair genes that could predispose to mesothelioma and influence clinical outcome. We have shown that germline mutations in DNA repair genes increases sensitivity to platinum therapy and improves overall survival in patients with pleural mesothelioma. In the laboratory, we have focused on developing in-vitro and in-vivo models of human mesothelioma. We have established several early passage tumor cell lines from ascites and pleural fluid of patients. We have evaluated the morphological and genetic characteristics of these cell lines and are using them to study in-vitro drug sensitivity. Currently we are evaluating the sensitivity of these patient derived mesothelioma cell lines to PARP inhibitors (Olaparib and Talazoparib) and a DNA alkylating agent, Temozolomide with respect to their genetic background. Additionally, we have established a humanized mesothelioma xenograft tumor model with patient derived tumor cells and human PBMCs from healthy donor for in-vivo studies. As the development of Graft Versus Host Disease (GVHD) in the PBMC-humanized mouse model limits assessment of duration of anti-tumor efficacy, we have developed a syngeneic immunocompetent mouse model. Because the immunotoxin LMB-100 can target human mesothelin specifically, we established a human mesothelin expressing immunocompetent syngeneic mouse tumor model by transfecting PD-L1 positive mouse lung adenocarcinoma cell line with a hMSLN expressing vector encoding the membrane bound fragment of hMSLN. These cell lines were used to develop tumor. We have studied the effect of LMB-100 in combination with anti-PD1 antibody in both the models and have seen tumor regression. These models are essential to evaluate novel therapeutic agents for mesothelioma and for the mechanistic studies of anti-tumor efficacy. Other ongoing laboratory studies are focused on understanding the mesothelioma tumor immune micro-environment and changes following treatment with anti-mesothelin targeted agents. 2. Immunotherapy to treat thymic cancer and lung cancers. Thymic Cancers: Thymoma is a rare tumor characterized by infiltration of lymphocytes making them uniquely suitable for immune-checkpoint inhibition. Thymoma patients are currently being treated on a phase I clinical trial of the anti-PD-L1 monoclonal antibody MSB0010718C. We have seen remarkable anti-tumor activity in these patients that has been accompanied by side-effect profile unique to thymoma patients. In addition, we are conducting a Phase II study of sunitinib in thymic carcinomas. Lung Cancer: We are currently conducting clinical trial of the anti-PD-L1 monoclonal antibody MSB0010718C in patients with lung adenocarcinoma who have failed prior therapies. Our laboratory has recently shown that about 25% of patients with metastatic lung adenocarcinoma highly express mesothelin. Mesothelin expression in these tumors is highly associated with KRAS mutations and wild type EGFR status and is, independently, associated with poor prognosis. Our hypothesis is that patients with K-RAS mutant lung cancer can benefit from mesothelin directed therapies. Clinical trials of mesothelin directed therapies for treating lung cancer are about to open. Our laboratory is also studying the role of immune checkpoints in malignant mesothelioma so that drugs targeting this pathway can be exploited for treating mesothelioma.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Clinical evaluation of an anti-mesothelin immunotoxin
Immunotherapy for Malignant Mesothelioma and Lung Cancer
  • 批准号:
    10702415
  • 项目类别:
  • 资助金额:
    $201.88万
  • 财政年份:
    --
  • 负责人:
    RAFFIT HASSAN
  • 依托单位:
Immunotherapy for Malignant Mesothelioma, Lung Cancer and Thymic Malignancies
Immunotherapy for Malignant Mesothelioma
海外基金