首页> 外文期刊>Scandinavian journal of immunology. >Anti‐Fc γ γ RIIB RIIB ( CD CD 32) Antibodies Differentially Modulate Murine FVIII FVIII ‐Specific Recall Response in?vitro in?vitro
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Anti‐Fc γ γ RIIB RIIB ( CD CD 32) Antibodies Differentially Modulate Murine FVIII FVIII ‐Specific Recall Response in?vitro in?vitro

机译:抗FcγγRIIBRIIB(CD CD 32)抗体差异调节鼠FVIII FVIII-特异性召回答案的体外 - 体外

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摘要

Abstract Fc gamma receptors (Fc γ Rs) for IgG regulate adaptive immune responses by modulating activating and inhibitory signalling pathways within immune cells. Data from a haemophilia A mouse model demonstrate that genetic deletion or blockade of the inhibitory Fc γ R ( CD 32) suppresses the formation of antibody‐secreting cells ( ASC s) in?vitro . Mechanisms preventing the FVIII ‐specific recall response, however, remain unclear. Here, the potential role of CD 32 inhibition was studied by differentially modulating receptor activity with selected anti‐ CD 32 monoclonal antibodies ( mA bs). Splenocytes from immunized FVIII ‐/‐ mice were restimulated with FVIII in the absence or presence of different anti‐ CD 32 mA bs over 6?days. At day 6, cytokine release was quantified from cell culture supernatant and the formation of FVIII ‐specific ASC s assessed. Binding of FVIII ‐containing immune complexes (F8‐ IC s) to bone marrow‐derived dendritic cells ( BM d DC s) was also investigated. The antagonistic CD 32 mA b AT 128 suppressed the formation of FVIII ‐specific ASC s and reduced secretion of IFN ‐ γ and IL ‐10. In contrast, the agonistic mA bs AT 130‐2 and AT 130‐5, and their F(ab’) 2 fragments, allowed the formation of FVIII ‐specific ASC s, even though the?full IgG of AT 130‐2 reduced binding of F8‐ IC s to CD 32. Data suggest that an?inhibitory signal is transmitted when F8‐ IC s bind to CD 32 and that this signal is required during memory B cell ( MBC ) activation to support formation of FVIII ‐specific ASC s. If the inhibitory signal is lacking due to CD 32 deletion or blockade with antagonistic anti‐ CD 32 mA bs, FVIII ‐specific T cell stimulation and? ASC formation are suppressed, whereas agonistic stimulation of CD 32 restores T cell stimulation and ASC formation.
机译:摘要通过调节免疫细胞内的激活和抑制信号通路调节IgG的Fcγ受体(FcγRS)调节自适应免疫应答。来自血友病的数据表明,抑制缺失或阻断抑制性FcγR(CD 32)抑制了抗体分泌细胞(ASC S)的形成。然而,防止FVIII-特异性召回响应的机制仍然不清楚。这里,通过用选定的抗CD22单克隆抗体(MA BS)差异调节受体活性来研究CD 32抑制的潜在作用。免疫的FVIII - / - 小鼠的脾细胞在不存在或存在的情况下用FVIII重新刺激,不同抗CD 32 mA B超过6?天。在第6天,从细胞培养上清液中量化细胞因子释放,并进行FVIII-特异性ASC S的形成。还研究了FVIII - 甲型免疫复合物(F8-IC S)与骨髓衍生的树突状细胞(BM D DC S)的结合。拮抗CD 32mA B在128处抑制了FVIII的形成和IFN - γ和IL -10的分泌细分。相反,在130-2和130-5处的激动MA Bs及其F(ab')2片段,允许形成FVIII-特异性ASC S,即使是130-2的130-2减少的α全IgG F8-IC S至CD 32.数据表明,当F8-IC S绑定到CD 32时,传输禁止信号,并且在存储器B小区(MBC)激活期间需要该信号以支持FVIII-特定ASC的形成。如果由于CD 32缺失或阻断抗拮抗抗CD 32 mA Bs,FVIII-特异性T细胞刺激和抑制信号缺乏抑制信号。抑制ASC形成,而CD 32的激动刺激恢复T细胞刺激和ASC形成。

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    Department of Haematology Haemostasis Oncology and Stem Cell TransplantationHannover Medical;

    Department of Haematology Haemostasis Oncology and Stem Cell TransplantationHannover Medical;

    Department of Haematology Haemostasis Oncology and Stem Cell TransplantationHannover Medical;

    Antibody and Vaccine GroupUniversity of SouthamptonSouthampton UK;

    Department of Haematology Haemostasis Oncology and Stem Cell TransplantationHannover Medical;

    Department of Haematology Haemostasis Oncology and Stem Cell TransplantationHannover Medical;

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  • 正文语种 eng
  • 中图分类 医学免疫学;
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