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首页> 外文期刊>The journal of immunology >Very Low-Dose Tolerance with Nucleosomal Peptides Controls Lupus and Induces Potent Regulatory T Cell Subsets
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Very Low-Dose Tolerance with Nucleosomal Peptides Controls Lupus and Induces Potent Regulatory T Cell Subsets

机译:核糖体肽的低剂量耐受性可控制狼疮并诱导有效的调节性T细胞亚群。

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We induced very low-dose tolerance by injecting lupus prone (SWR × NZB)F1 (SNF1) mice with 1 μg nucleosomal histone peptide autoepitopes s.c. every 2 wk. The subnanomolar peptide therapy diminished autoantibody levels and prolonged life span by delaying nephritis, especially by reducing inflammatory cell reaction and infiltration in kidneys. H471–94 was the most effective autoepitope. Low-dose tolerance therapy induced CD8+, as well as CD4+CD25+ regulatory T (Treg) cell subsets containing autoantigen-specific cells. These adaptive Treg cells suppressed IFN-γ responses of pathogenic lupus T cells to nucleosomal epitopes at up to a 1:100 ratio and reduced autoantibody production up to 90–100% by inhibiting nucleosome-stimulated T cell help to nuclear autoantigen-specific B cells. Both CD4+CD25+ and CD8+ Treg cells produced and required TGF-β1 for immunosuppression, and were effective in suppressing lupus autoimmunity upon adoptive transfer in vivo. The CD4+CD25+ T cells were partially cell contact dependent, but CD8+ T cells were contact independent. Thus, low-dose tolerance with highly conserved histone autoepitopes repairs a regulatory defect in systemic lupus erythematosus by generating long-lasting, TGF-β-producing Treg cells, without causing allergic/anaphylactic reactions or generalized immunosuppression.
机译:我们通过向狼疮易感性(SWR×NZB)F1(SNF1)小鼠注射1μg核小体组蛋白肽自身表位来诱导低剂量耐受性。每2周一次。亚纳摩尔肽疗法通过延迟肾炎,特别是通过减少炎症性细胞反应和肾脏浸润,降低了自身抗体水平并延长了寿命。 H471–94是最有效的自身表位。低剂量耐受疗法可诱导包含自身抗原特异性细胞的CD8 +以及CD4 + CD25 +调节性T(Treg)细胞亚群。这些适应性Treg细胞通过抑制核小体刺激的T细胞对核自身抗原特异性B细胞的抑制作用,以高达1:100的比例抑制了致病性狼疮T细胞对核小体表位的IFN-γ反应,并将自身抗体的产生降低了90-100%。 。 CD4 + CD25 +和CD8 + Treg细胞均产生并需要TGF-β1进行免疫抑制,并且在体内过继转移后可有效抑制狼疮自身免疫。 CD4 + CD25 + T细胞部分依赖细胞接触,但CD8 + T细胞不依赖接触。因此,具有高度保守的组蛋白自身表位的低剂量耐受性通过产生持久的,产生TGF-β的Treg细胞来修复系统性红斑狼疮的调节缺陷,而不会引起过敏/过敏反应或广泛的免疫抑制。

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