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Role of Osteopontin in Murine Lyme Arthritis and Host Defense against Borrelia burgdorferi

机译:骨桥蛋白在小鼠莱姆关节炎和抗伯氏疏螺旋体的宿主防御中的作用

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Several genetic loci in the mouse have been identified that regulate the severity of Lyme arthritis. The region of chromosome 5 including the osteopontin (OPN) gene (Opn) has been identified in intercross populations of C3H/HeN × C57BL/6 and C3H/HeJ × BALB/cAnN mice. OPN is of particular interest as it is involved in the maintenance and remodeling of tissue during inflammation, it regulates production of interleukin-10 (IL-10) and IL-12 (cytokines implicated in Lyme arthritis), it is necessary for host control of certain bacterial infections, and mice displaying different severities of Lyme arthritis possess different alleles of the OPN gene. Macrophages and splenocytes from OPN-deficient mice on mixed C57BL/6J-129S or inbred 129S backgrounds were stimulated with the Pam3Cys modified lipoprotein from Borrelia burgdorferi, OspA. OPN was not required for OspA-induced cytokine production; however, macrophages from 129S-Opn?/? mice displayed a reduced level of IL-10 production. OPN was also not required for resistance to severe arthritis, as B. burgdorferi-infected 129S-Opn?/? mice developed mild arthritis, as did their wild-type littermates. Arthritis was more severe in OPN-deficient mice on the mixed C57BL/6J-129S backgrounds than in inbred mice of either strain. This increase was most likely due to a gene(s) closely linked to Opn on chromosome 5 in conjunction with other randomly assorting genes. Deficiency in OPN did not influence the numbers of spirochetes in tissues from B. burgdorferi-infected mice, indicating OPN is not part of the host defense to this pathogen. Interestingly, there was no alteration in the B. burgdorferi-specific antibody isotypes in OPN-deficient mice, indicating that its effect on helper T-cell responses is not relevant to the host response to B. burgdorferi.
机译:已经确定了小鼠中几个调节莱姆关节炎严重程度的遗传基因座。在C3H / HeN×C57BL / 6和C3H / HeJ×BALB / cAnN小鼠的交叉种群中,已鉴定出5号染色体的区域,其中包括骨桥蛋白(OPN)基因( Opn )。 OPN尤其令人感兴趣,因为它参与炎症过程中组织的维持和重塑,它调节白介素10(IL-10)和IL-12(与莱姆关节炎有关的细胞因子)的产生,对于控制宿主的控制某些细菌感染,表现出不同程度的莱姆关节炎的小鼠具有不同的OPN基因等位基因。用来自OspA伯氏疏螺旋体的Pam 3 Cys修饰脂蛋白刺激混合C57BL / 6J-129S或近交129S背景下OPN缺陷小鼠的巨噬细胞和脾细胞。 OspA诱导的细胞因子生产不需要OPN。然而,来自129S- Opn ?/? 小鼠的巨噬细胞显示出降低的IL-10水平。如 B所示,OPN也不需要抵抗严重的关节炎。感染了burgdorferi 的129S- Opn ?/? 小鼠和其野生型同窝小鼠都患有轻度关节炎。在混合C57BL / 6J-129S背景下,OPN缺陷型小鼠的关节炎比任一株近交小鼠的关节炎都更为严重。这种增加很可能是由于与5号染色体上的 Opn 紧密相关的一个基因以及其他随机分类的基因。 OPN的缺乏不会影响 B组织中螺旋体的数量。感染了伯氏疏螺旋体的小鼠,表明OPN不是该病原体宿主防御的一部分。有趣的是, B没有变化。在OPN缺陷型小鼠中,burgburgeri 特异性抗体同种型,表明其对辅助性T细胞反应的影响与宿主对 B的反应无关。 burgdorferi

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