课题基金 / 基金详情

To Understand/Augment OX40-mediated Tumor Immunotherapy

To Understand/Augment OX40-mediated Tumor Immunotherapy
了解/增强 OX40 介导的肿瘤免疫疗法
批准号:
7089030
负责人:
Andrew D Weinberg
金额:
$30.92万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-07-01 至 2008-04-30

项目摘要

项目成果

Andrew D Weinberg的其他基金

相似基金

相关文献

中文摘要
翻译
描述(由申请人提供):有充分的证据表明,增强对癌症的免疫功能可以对疾病产生治疗作用。免疫治疗的一个主要限制是肿瘤微环境可能对携带癌症的宿主具有免疫抑制作用。最近,已经有许多方法尝试并“增压”免疫系统对肿瘤Ag(s),以便当免疫系统识别肿瘤时,它可以克服免疫抑制并摧毁肿瘤。一种已经成功增强肿瘤宿主免疫功能的方法是向tnf受体家族成员添加活化抗体或配体。该资助申请将侧重于TNF-R家族成员OX40 (CD134)的免疫增强活性,该家族成员在活化的T细胞上表达。当OX40通过外源Ab或OX40配体参与时,有效的抗肿瘤特性被激发。我们将尝试了解OX40参与如何增强免疫功能,并利用这些知识来增强抗肿瘤免疫。在基本免疫模型中的基因阵列分析为OX40如何增强免疫力提供了线索。该应用程序将利用从基本免疫学模型中获得的知识,通过与显示共同γ链的细胞因子(IL-2, IL-7和IL-15)联合治疗来增强ox40介导的肿瘤治疗。在我们初步的DNA微阵列分析中发现,在OX40参与后,这些细胞因子受体在ag刺激的T细胞上增加。我们还将尝试了解OX40在体内参与肿瘤微环境时T细胞基因表达的变化。最后,由于OX40技术将在未来一年内进行临床试验,我们将在临床试验中采用一种既定的方法来增强免疫功能(即GM-CSF转染的肿瘤),以评估抗OX40的增强作用。这将为未来临床试验的设计提供重要的临床前信息。申请的具体目的是:1)表征从肿瘤微环境中分离的T细胞中OX40参与后发生的分子事件,2)确定常见γ链细胞因子在OX40增强的抗肿瘤免疫应答中的作用,以及3)探索抗OX40和GM-CSF分泌肿瘤疫苗在临床前环境中的联合应用。该应用的最终目标将是通过更好地了解这种受体如何增加T细胞功能的促炎特性来增强ox40介导的肿瘤治疗。
英文摘要
DESCRIPTION (provided by applicant): It is well documented that enhancing immune function to cancer can have a therapeutic effect on the disease. A major limitation of immunotherapy is the added dimension that the tumor microenvironment can be immune-suppressive to the host that harbors cancer. Recently, there have been a number of approaches to try and "supercharge" the immune system to tumor Ag(s), so that when the immune system recognizes a tumor it can overcome immune-suppression and destroy the tumor. One approach that has successfully enhanced immune function in tumor-bearing hosts has been the addition of activating antibodies or ligands to TNF-receptor family members. This grant application will focus on the immune boosting activity of the TNF-R family member OX40 (CD134), which is expressed on activated T cells. When OX40 is engaged via an exogenous source of Ab or the OX40 ligand, potent anti-tumor properties are elicited. We will try and understand how OX40 engagement enhances immune function and use this knowledge to increase anti-tumor immunity. Gene array analysis in basic immune models has provided clues to how engagement of OX40 boosts immunity. This application will use the knowledge derived from the basic immunology models to enhance OX40-mediated tumor therapy through combination therapy with the cytokines that show a common gamma-chain (IL-2, IL-7, and IL-15). These cytokine receptors were found to be increased on Ag-stimulated T cells following OX40 engagement in our preliminary DNA microarray analyses. We will also try and understand the changes in T cell gene expression that occur in a tumor microenvironment upon OX40 engagement in vivo. Finally, because the OX40 technology will be taken to clinical trials within the coming year, we will work with an established method for enhancing immune function in clinical trials (i.e. GM-CSF transfected tumors) to assess its augmentation with anti-OX40. This will provide important preclinical information for the design of future clinical trials. The specific aims of the application are; 1) To characterize the molecular events that occur following OX40 engagement within T cells isolated from a tumor microenvironment, 2) To define the roles of common gamma-chain cytokines in OX40-enhanced anti-tumor immune responses, and 3) Explore the combination of anti-OX40 and a GM-CSF secreting tumor vaccine in a preclinical setting. The ultimate goal of the application will be to enhance OX40-mediated tumor therapy by gaining a better understanding of how this receptor can increase the proinflammatory properties of T cell function.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
The Importance of T cell Survival in Tumor Immunity
The Importance of T cell Survival in Tumor Immunity
The Importance of T cell Survival in Tumor Immunity
The Importance of T cell Survival in Tumor Immunity
海外基金