Homeostatic T Cell Expansion As A Barrier To Tolerance
Homeostatic T Cell Expansion As A Barrier To Tolerance
批准号:
6778094
负责人:
Laurence A Turka
金额:
$26.21万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-09-18 至 2006-07-31
关键词:
CD antigensCD28 moleculeT lymphocytebiological signal transductioncardiovascular transplantationcell proliferationcell transplantationcell typecellular immunitycytokinegenetically modified animalshelper T lymphocytehomeostasisimmune tolerance /unresponsivenessimmunologic memoryimmunologic receptorslaboratory mousereceptor expressionskin transplantationsurface antigenstransplantation immunology
中文摘要
描述(由申请人提供):移植的临床和临床研究方案越来越多地在植入时使用强效淋巴消耗抗体。最近,人们认识到T细胞在淋巴细胞减少的环境中经历稳态扩张。此外,作为稳态增殖的结果,即使是以前未成熟的T细胞也可能获得记忆细胞的表型和功能特征,包括对低浓度抗原作出反应的能力,而不需要CD28共刺激。利用小鼠系统模拟临床实现的淋巴消耗程度,我们发现残留的非耗尽T细胞经历稳态扩张。我们还发现,通过阻断CD28:B7和/或CD154:CD40途径,稳态扩张诱导对耐受诱导的长期抗性,这两种途径都不能阻断稳态增殖。此外,耐受性抗性是显性的(即,它可以被过继地转移到幼稚小鼠身上)。这些发现与已知记忆T细胞的行为,以及已知记忆细胞通过阻断CD28和/或CD154抵抗耐受诱导的能力是一致的。
英文摘要
DESCRIPTION (provided by applicant): Clinical and clinical research protocols in transplantation are increasingly employing potent lymphodepleting antibodies at the time of engraftment. Recently it has been appreciated that T cells in a lymphopenic environment undergo homeostatic expansion. Moreover, as a result of homeostatic proliferation, even previously naive T cells may acquire phenotypic and functional characteristics of memory cells, including the ability to respond to low concentrations of antigen without a need for CD28 costimulation. Using mouse systems which model the degree of lymphodepletion achieved clinically, we have found that residual non-depleted T cells undergo homeostatic expansion. We also find that homeostatic expansion induces long-lived resistance to tolerance induction by blockade of the CD28:B7 and/or CD154:CD40 pathways, neither of which are able to block homeostatic proliferation. Moreover, tolerance resistance is dominant (i.e., it can be adoptively transferred to naive mice). These findings are consistent with known behavior of memory T cells, and the known ability of memory cells to resist tolerance induction by blockade of CD28 and/or CD154.
Our working model is that homeostatic expansion of T cells induces the development of at least a subset of memory-like cells, which subsequently interfere with tolerance induction. Our long-term goals are to identify this cell or cells and develop targeted approaches to enable tolerance. While tolerizing memory cells has traditionally proven quite difficult, recent data suggests that the "new" costimulatory receptors ICOS and OX40 (CD134) are extremely promising targets. In aim #1, we will define surface phenotype and costimulatory receptors used by "post-homeostatic" resistant cells. In particular, we hypothesize that both ICOS and CD134 will play an important role in activation, proliferation and survival of homeostatically proliferating T cells. Aim #2 will test the corollary hypothesis, that blockade of these pathways (and/or others identified in aim #1), along with B7 and/or CD154 may result in inhibition of homeostatic proliferation and overcome the resistance to transplantation tolerance mediated by homeostatically proliferating T cells. Collectively these studies will be important steps towards the development of approaches that complement lymphodepletion, and enable it to be used for tolerance induction. These approaches may also prove valuable in the setting of established T cell memory, such as may occur in sensitized recipients.
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