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首页> 外文期刊>The journal of immunology >IL-17 Receptor Knockout Mice Have Enhanced Myelotoxicity and Impaired Hemopoietic Recovery Following Gamma Irradiation
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IL-17 Receptor Knockout Mice Have Enhanced Myelotoxicity and Impaired Hemopoietic Recovery Following Gamma Irradiation

机译:IL-17受体基因敲除小鼠具有增强的骨髓毒性和γ射线照射后造血功能恢复受损。

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摘要

IL-17A is a T cell-derived proinflammatory cytokine required for microbial host defense. In vivo expression profoundly stimulates granulopoiesis. At baseline, the hemopoietic system of IL-17R knockout mice (IL-17Ra?/?) is, with the exception of increased splenic progenitor numbers, indistinguishable from normal control mice. However, when challenged with gamma irradiation, hemopoietic toxicity is significantly more pronounced in IL-17Ra?/? animals, with the gamma irradiation-associated LD50 being reduced by 150 rad. In spleen-derived T cells, gamma irradiation induces significant murine IL-17A expression in vivo but not in vitro. After sublethal radiation injury (500 rad), the infusion of purified CD4+ T cells enhances hemopoietic recovery. This recovery is significantly impaired in IL-17Ra?/? animals or after in vivo blockade of IL-17Ra in normal mice, resulting in a reduction of hemopoietic precursors by 50% and of neutrophils by 43%. Following sublethal radiation-induced myelosuppression, in vivo overexpression of murine IL-17A in normal mice substantially enhanced granulopoietic restoration in mice with a 4-fold increase in neutrophils and splenic precursors on day 8 (CFU-granulocyte-macrophage/granulocyte-erythrocyte-megakaryocyte-monocyte, CFU-high proliferative potential), as well as 2- and 3-fold increases of bone marrow precursors, respectively. This establishes IL-17A as a hemopoietic response cytokine to radiation injury in mice and an inducible mechanism that is required for recovery of granulopoiesis after radiation injury.
机译:IL-17A是微生物宿主防御所需的T细胞来源的促炎细胞因子。体内表达深刻地刺激了粒细胞生成。在基线时,除脾脏祖细胞数量增加外,IL-17R基因敲除小鼠的造血系统(IL-17Raβ/β)与正常对照小鼠没有区别。但是,当受到γ射线照射时,IL-17Raα/β中的造血毒性明显更明显。动物,与γ辐射相关的LD50降低了150拉德。在脾源性T细胞中,γ射线在体内可诱导鼠IL-17A的显着表达,而在体外则不会。亚致死性辐射损伤(500 rad)后,注入纯化的CD4 + T细胞可增强造血功能。 IL-17Raα/β的这种恢复显着受损。在动物中或在正常小鼠中体内阻断IL-17Ra之后,造血前体减少了50%,嗜中性白细胞减少了43%。在亚致死性辐射诱导的骨髓抑制后,正常小鼠体内鼠IL-17A的过表达显着增强了小鼠的粒细胞恢复,第8天中性粒细胞和脾前体的增加了4倍(CFU-粒细胞巨噬细胞/粒细胞-红细胞-巨核细胞) -单核细胞,高CFU的增殖潜能),以及骨髓前体的2倍和3倍增加。这将IL-17A建立为对小鼠辐射损伤的造血反应细胞因子,并且是诱导辐射损伤后粒细胞生成所需的诱导机制。

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