WHOLE BODY HYPERTHERMIA & THE ANTITUMOR IMMUNE RESPONSE
WHOLE BODY HYPERTHERMIA & THE ANTITUMOR IMMUNE RESPONSE
批准号:
2468717
负责人:
ELIZABETH A REPASKY
金额:
$19.81万
依托单位国家:
美国
项目类别:
财政年份:
1997
资助国家:
美国
项目状态:
已结题
起止时间:
1997-12-24 至 2000-11-30
关键词:
NOD mouse SCID mouse antineoplastics apoptosis blocking antibody combination cancer therapy cytokine cytolysis cytotoxic T lymphocyte disease /disorder model enzyme activity gene targeting genetically modified animals human tissue hyperthermia therapy interferon gamma metastasis natural killer cells neoplasm /cancer immunology neoplasm /cancer immunotherapy neoplasm /cancer thermotherapy neoplasm /cancer vaccine neoplastic cell nonhuman therapy evaluation protein kinase C tumor necrosis factor alpha
中文摘要
点击翻译按钮获取中文摘要
英文摘要
DESCRIPTION: Evidence is provided that a 2 degree C (6-8 hr) elevation of
body temperature results in substantial apoptosis of human tumors growing in
a SCID mouse chimeric model and as well in transplantable murine tumors
grown in Balb/c mice. This whole body hyperthermia (WBH) protocol differs
from conventional WBH and local hyperthermia protocols in that it employs a
much lengthier heat exposure at lower temperatures and thus, approximates
the thermal element of a normal fever. Understanding and eventually
exploiting the mechanism(s) by which this mild heat exposure exerts such
significant anti-tumor activity may provide an additional approach in the
treatment of cancer. The preliminary data have led to the hypothesis that
fever-range WBH can inhibit tumor growth by its effects on the immune
response against tumors; a corollary to this hypothesis is that by using
additional methods which also stimulate the anti-tumor immune response in
combination with whole body hyperthermia, we may be able to significantly
enhance the anti-tumor effects over that seen with any one treatment alone.
The overall goal of this application is to conduct a series of experiments
designed to test these possibilities. Several lines of evidence suggest
that one important mechanism by which WBH stimulates the immune system
involves a cytolytic response, i.e., the action of natural killer (NK)
lymphocytes, the predominant effector cell of the innate immune response,
and cytolytic T lymphocytes, effector cells of the adaptable immune
response; experiments designed to support this assumption, using both human
and murine tumor systems, will be conducted as part of Aim 1. Other data
suggest that there is also a cytokine response to WBH, and in Aim 2, the
role of host cytokines (including those that can stimulate tumor reactive T
lymphocytes and NK cells, and which may be induced by the hyperthermia
treatment itself, will be assessed. The data obtained in these first two
aims will be useful in Aim 3, where we will conduct studies to determine if
the effects of fever-range WBH on tumor growth can be enhanced by
combination with immunotherapies including specific vaccine therapy and
addition of exogenous cytokines and effector cells. Importantly, an
enhancement of the anti-tumor effects of WBH with the addition of IFN-g has
already been observed in Preliminary Studies. The existence of several
appropriate model systems, in which various assumptions regarding the
mechanisms of action of fever-range WBH can be tested at the preclinical,
cellular and molecular levels, combined with the multidiciplinary approach
of this experienced group of investigators, will provide an excellent
scientific foundation for clinical trials of fever-range whole body
hyperthermia in the near future.
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会议论文
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财政年份:2006
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依托单位:
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依托单位:
海外基金