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Prevention Type 1 diabetes by soluble, MHC II-peptide

Prevention Type 1 diabetes by soluble, MHC II-peptide
通过可溶性 MHC II 肽预防 1 型糖尿病
批准号:
6647111
负责人:
TEODOR-DORU BRUMEANU BRUMEANU
金额:
$7.86万
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-09-30 至 2004-02-29

项目摘要

项目成果

TEODOR-DORU BRUMEANU BRUMEANU的其他基金

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中文摘要
翻译
该建议的总体目标是通过使用多价MHC II类/高价肽嵌合体来预防自身免疫性糖尿病的发展。通过多价MHC II/肽嵌合体操纵免疫系统的机制和后果也将被研究。具体目的是:(1)与二价MHC II/肽嵌合体相比,确定可溶性多价MHC II/肽嵌合体对自身免疫性糖尿病的保护能力;(2)研究这些嵌合分子对小鼠长期保护的细胞机制;(3)研究这些嵌合分子保护小鼠抗糖尿病的tr细胞信号事件。该研究将在1型糖尿病的双转基因小鼠模型中进行。令人满意的结果将导致产生人类DEF样分子(hu- DEF),由HLA-DR*0401等位基因组成,以及人类最常见的糖尿病肽,GAD-和前胰岛素衍生肽。将在GAD65肽免疫或未免疫的Tg小鼠(小鼠MHcalphabetaⅱ类-/-、人HLA-DR* 0301和- dr *0401 +/+)中评估hu-CEF的治疗效果,然后将其与HLA-DR匹配的IDDM患者或其高危亲属的t细胞过继转移。
英文摘要
The overall goal of this proposal is to prevent the development of autoimmune diabetes by using multivalent MHC class II/peptide chimeras of high valency. The mechanisms and consequences of manipulating the immune system by multivalent MHC II/peptide chimeras will also be investigated. The specific aims are: (1) to determine the protective capacity of soluble, multivalent MHC II/peptide chimeras in autoimmune diabetes as compared to bivalent MHC II/peptide chimera, (2) to study the cellular mechanisms of long-term protection in mice treated with these chimeric molecules , and (3) to study the TR-cell signaling events in mice protected against diabetes by these chimeric molecules. The proposed study will be carried out in a double transgenic mouse model for Type I Diabetes. Satisfactory results will lead to the generation of a human DEF-like molecule (hu- DEF) consisting of the HLA-DR*0401 allele, and the most common diabetogenic peptide in humans, GAD-, and pro-insulin- derived peptides. The therapeutic efficacy of hu-CEF will be evaluated in Tg mice (murine MHcalphabeta class II-/-, human HLA-DR* 0301 and -DR*0401 +/+) after immunization or not with GAD65 peptide, and then adoptively transferred with T-cells from HLA-DR-matched patients with IDDM, or from their at-high risk relatives.
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Prevention Type 1 diabetes by soluble, MHC II-peptide
NEGATIVE REGULATION OF AUTOREACTIVE T-CELLS
Prevention Type 1 diabetes by soluble, MHC II-peptide
Prevention Type 1 diabetes by soluble, MHC II-peptide