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Diversity of T-cell responses

机译:T细胞反应的多样性

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Using a dynamic model we study the adaptive immune response to a sequence of two infections. We incorporate lymphocyte diversity by modeling populations as continuous distributions in a multi-dimensional space. As expected, memory cells generated by the primary infection invoke a rapid response when the secondary infection is identical (homologous). When the secondary infection is different (heterologous), the memory cells have a positive effect or no effect at all depending on the similarity of the infections. This model displays 'original antigenic sin' where the average effector affinity for the heterologous infection is lower than it would be for a naive response, but in cases with original antigenic sin we see a reduction in pathogen density. We model pathology resulting from the immune system itself (immunopathology) but find that in cases of original antigenic sin, immunopathology is still reduced. Average effector affinity is not an accurate measure of the quality of an immune response. The effectivity, which is the total pathogen killing rate, provides a direct measure of quality. This quantity takes both affinity and magnitude into account.
机译:使用动态模型,我们研究了对两种感染序列的适应性免疫反应。我们通过将种群建模为多维空间中的连续分布来纳入淋巴细胞多样性。不出所料,当继发感染相同(同源)时,由初次感染产生的记忆细胞会引起快速反应。当继发感染是不同的(异源)时,根据感染的相似性,记忆细胞会产生阳性效应或完全没有效应。该模型显示“原始抗原性罪恶”,其中对异源感染的平均效应子亲和力低于对幼稚反应的平均亲和力,但是在具有原始抗原性罪恶的情况下,我们看到病原体密度降低。我们对由免疫系统本身引起的病理学(免疫病理学)进行建模,但发现在原发性抗原性疾病的情况下,免疫病理学仍会降低。平均效应物亲和力不能准确衡量免疫反应的质量。有效性,即总的病原体杀死率,提供了质量的直接衡量标准。此数量同时考虑了亲和力和大小。

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