Functional Tolerance to Islet Allografts
Functional Tolerance to Islet Allografts
批准号:
6967077
负责人:
Nora E Sarvetnick
金额:
$32.53万
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:
2005-06-15 至 2007-05-31
关键词:
biological signal transductiongene expressiongenetically modified animalshistocompatibilityhomologous transplantationimmune responseimmune tolerance /unresponsivenessinsulin dependent diabetes mellitusinterferonsinterleukin 10interleukin 6laboratory mousepancreatic islet transplantationtechnology /technique developmenttransplant rejection
中文摘要
描述(由申请人提供):自身免疫性疾病如1型糖尿病(T1 D)在临床上表现为胰岛素产生细胞已经完全丧失。在这一点上,糖尿病的唯一治疗方法是更换这些产生胰岛素的细胞。然而,接受这种移植物的患者遭受终身免疫抑制治疗,导致感染倾向增加。如果功能性抵抗。-为了使这些移植物产生同种异体移植物排斥,可以避免免疫抑制的需要,并且可以大大提高接受同种异体移植物的患者的生活质量。在这个探索性的R21应用中,我们提出了一个新的假设,诱导抵抗胰岛移植排斥反应。由于这些移植物被浸润细胞产生的细胞因子破坏,我们提出了对这些致病细胞因子无反应的胰岛工程。在本申请中提出了两种不同的实验设计。在第一组研究中,我们将确定SOCS-1(一种抑制干扰素信号传导的蛋白质)的靶向表达是否可以改善移植物反应。我们提出了令人信服的初步数据,说明这一目标是可行的,并显示出可喜的成果。在第二组研究中,我们计划下调SOCS-3基因表达,以确定IL-6应答的调节,以及对IL-10的应答的增加,是否可以在移植物存活中发挥促存活作用。广泛的机制研究,了解全身和局部同种异体移植反应,提出了每一个范例。这些研究应该会带来诱导对胰岛移植排斥反应抵抗的新方法。
英文摘要
DESCRIPTION (provided by applicant): Autoimmune diseases such as Type 1 diabetes (T1D) manifest themselves clinically when insulin producing cells are already completely lost. At this point, the only cure for diabetes is the replacement of these insulin-producing cells. However, patients receiving such grafts suffer from lifetime immunosuppressive treatments, leading to increased propensity to infection. If functional resistance.- to allograft rejection could be conferred on these grafts the requirement for immunosuppression would be avoided aid the quality of life for those receiving allografts would be greatly enhanced. In this exploratory R21 application we propose a new hypothesis for the induction of resistance to islet allograft rejection. Since these grafts are destroyed by cytokines produced by infiltrating cells, we proposed to engineer islets that are unresponsive to these pathogenic cytokines. Two different experimental designs are proposed in this application. In the first set of studies we will determine whether targeted expression of SOCS-1, a protein that inhibits interferon signaling, can ameliorate graft responses. We present compelling preliminary data stating that this aim is feasible and shows promising results. In the second set of studies we plan to down-modulate SOCS-3 gene expression to determine if modulation of IL-6 responses, with increased responses to IL-10, could play a pro-survival role in graft survival. Extensive mechanistic studies, to understand both systemic and localized allograft responses, are proposed for each paradigm. These studies should lead to new methods for inducing resistance to islet allograft rejection.
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会议论文
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海外基金