t细胞系的生产。

Helga Kahlert
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引用次数: 2

摘要

从过敏患者身上建立的过敏原特异性t细胞系提供了在多克隆或寡克隆水平上研究t细胞功能的机会。t细胞系在确定抗原特异性t细胞反应性的存在与否方面是有用的。然而,为了获得具有明确定义特征(例如表位特异性或表型)的T细胞作用的详细知识,T细胞克隆是必要的。外周血单核细胞(PBMC)中过敏原特异性T细胞的频率往往较低,因此用单一过敏原刺激PBMC通常会导致低过敏原特异性反应性或需要高剂量的过敏原。相比之下,用整个过敏原提取物刺激PBMC会产生更强的反应性,因为更大范围的t细胞特异性得到了解决。因此,为了研究对单一过敏原的多克隆反应性,建立T细胞系是有用的,T细胞系代表来自各自个体的过敏原特异性富集的T细胞。这些T细胞是多克隆或寡克隆的,可能具有不同的表位特异性。这里描述的方法是基于对草花粉和树花粉中几种过敏原特异性的人类t细胞系和克隆的经验。
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Production of T-cell lines.

Allergen-specific T-cell lines established from allergic patients provide the opportunity of investigating T-cell functions at the poly- or oligoclonal level. T-cell lines are useful in determining the presence or absence of antigen-specific T-cell reactivity. However, to obtain detailed knowledge of the action of T cells with clearly defined features, for example epitope specificity or phenotype, T-cell clones are necessary.The frequency of allergen-specific T cells in peripheral blood mononuclear cells (PBMC) tends to be low and so stimulation of PBMC with single allergens often results in low allergen-specific reactivity or requires high doses of the allergen. In contrast, the stimulation of PBMC with whole allergen extract results in stronger reactivity because a greater spectrum of T-cell specificities is addressed. Therefore, for the investigation of polyclonal reactivity toward single allergens it is useful to establish T-cell lines, which represent an allergen-specific enrichment of T cells from the respective individual. These T cells are poly- or oligoclonal and might possess different epitope specificities. The method described here is based on experiences with human T-cell lines and clones specific for several allergens from grass pollens and tree pollens.

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