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Effect of phospholipase A2 inhibitory peptide on inflammatory arthritis in a TNF transgenic mouse model: a time-course ultrastructural study

机译:磷脂酶A2抑制肽对TNF转基因小鼠模型中炎性关节炎的影响:时程超微结构研究

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摘要

We evaluated the therapeutic effect of secretory phospholipase A2 (sPLA2)-inhibitory peptide at a cellular level on joint erosion, cartilage destruction, and synovitis in the human tumor necrosis factor (TNF) transgenic mouse model of arthritis. Tg197 mice (N = 18) or wild-type (N = 10) mice at 4 weeks of age were given intraperitoneal doses (7.5 mg/kg) of a selective sPLA2 inhibitory peptide, P-NT.II, or a scrambled P-NT.II (negative control), three times a week for 4 weeks. Untreated Tg197 mice (N = 10) were included as controls. Pathogenesis was monitored weekly for 4 weeks by use of an arthritis score and histologic examinations. Histopathologic analysis revealed a significant reduction after P-NT.II treatment in synovitis, bone erosion, and cartilage destruction in particular. Conspicuous ultrastructural alterations seen in articular chondrocytes (vacuolated cytoplasm and loss of nuclei) and synoviocytes (disintegrating nuclei and vacuoles, synovial adhesions) of untreated or scrambled-P-NT.II-treated Tg197 mice were absent in the P-NT.II-treated Tg197 group. Histologic scoring and ultrastructural evidence suggest that the chondrocyte appears to be the target cell mainly protected by the peptide during arthritis progression in the TNF transgenic mouse model. This is the first time ultrastructural evaluation of this model has been presented. High levels of circulating sPLA2 detected in untreated Tg197 mice at age 8 weeks of age were reduced to basal levels by the peptide treatment. Attenuation of lipopolysaccharide- and TNF-induced release of prostaglandin E2 from cultured macrophage cells by P-NT.II suggests that the peptide may influence the prostaglandin-mediated inflammatory response in rheumatoid arthritis by limiting the bioavailability of arachidonic acid through sPLA2 inhibition.
机译:我们在关节炎的人类肿瘤坏死因子(TNF)转基因小鼠模型中评估了分泌的磷脂酶A2(sPLA2)抑制肽在细胞水平上对关节侵蚀,软骨破坏和滑膜炎的治疗效果。于4周龄的Tg197小鼠(N = 18)或野生型(N = 10)小鼠接受腹膜内剂量(7.5 mg / kg)的选择性sPLA2抑制肽P-NT.II或加扰的P- NT.II(阴性对照),每周3次,共4周。包括未处理的Tg197小鼠(N = 10)作为对照。通过关节炎评分和组织学检查每周监测发病机理,持续4周。组织病理学分析显示,在滑膜炎,骨侵蚀和尤其是软骨破坏中,P-NT.II治疗后显着减少。在未经治疗或混乱的P-NT.II处理的Tg197小鼠中,未见关节软骨细胞(空泡的细胞质和细胞核的丧失)和滑膜细胞(细胞核和液泡的崩解,滑膜粘连)的明显超微结构改变。治疗的Tg197组。组织学评分和超微结构证据表明,在TNF转基因小鼠模型的关节炎发展过程中,软骨细胞似乎是主要受肽保护的靶细胞。这是该模型的首次超微结构评估。通过肽处理,在8周龄未治疗的Tg197小鼠中检测到的高水平循环sPLA2被降低至基础水平。通过P-NT对脂多糖和TNF诱导的前列腺素E2从培养的巨噬细胞释放的抑制作用.II表明,该肽可能通过sPLA2抑制作用限制花生四烯酸的生物利用度,从而影响类风湿关节炎中前列腺素介导的炎症反应。

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