Targeting myeloma via dendritic cells
Targeting myeloma via dendritic cells
批准号:
7046857
负责人:
MADHAV V DHODAPKAR
金额:
$32.59万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-04-01 至 2010-02-28
关键词:
antigen presentationapoptosisautologous transplantationbiotechnologyblood chemistrybone marrow transplantationchemokine receptorclinical researchcytotoxic T lymphocytedendritic cellsgene expressiongene expression profilinghelper T lymphocytehuman subjecthuman therapy evaluationinterferon gammainterleukin 12multiple myelomaneoplasm /cancer immunotherapyneoplasm /cancer vaccinepatient oriented researchtissue /cell culturetumor antigensvaccine development
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Multiple myeloma is an incurable tumor with modest treatment options. It is an attractive model to study immune tumor interactions, as both the primary tumor and the infiltrating immune T cells can be readily isolated without the need for ex vivo culture. Our preliminary studies show that transformation of preneoplastic gammopathy to clinical myeloma is associated with a progressive decline in tumor reactive innate and adaptive immune effector function in the tumor bed. We have also found that dendritic cells (DCs) can acquire antigen from autologous tumor cells and lead to the generation of tumor specific killer T cells. Here, we test the hypothesis that injection of tumor loaded dendritic cells will lead to enhancement of antitumor immunity, which can be assessed at the level of the tumor microenvironment. Our long term goal is to optimize the ability of DCs to boost anti-tumor immunity in patients. Herein, we propose to 1) optimize the presentation of tumor antigens from autologous myeloma cells by dendritic cells; 2) examine the feasibility and tolerability of injection of tumor loaded DCs in patients with persistent / high risk myeloma; 3) assess immune responses to tumor specific vaccination and compare responses in blood versus tumor bed; and 4) assess changes in the expression of interferon-y responsive genes in tumor cells following vaccination. These studies may not only provide the basis of a novel approach to boost anti-tumor immunity in myeloma, but also yield insights into the role of tumor microenvironment in assessing the efficacy of anti-tumor vaccination.
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