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首页> 外文期刊>Osteoarthritis and cartilage >Ovariectomy alters the structural and biomechanical properties of ovine femoro-tibial articular cartilage and increases cartilage iNOS.
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Ovariectomy alters the structural and biomechanical properties of ovine femoro-tibial articular cartilage and increases cartilage iNOS.

机译:卵巢切除术改变了羊股胫骨关节软骨的结构和生物力学特性,并增加了软骨iNOS。

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OBJECTIVE: To examine the effect of oestrogen depletion produced by surgical ovariectomy on the structural and biomechanical properties of ovine femoro-tibial articular cartilage (AC), and the production of inducible nitric oxide synthase (iNOS) and nitrotyrosine by these tissues. METHODS: Six aged ewes were surgically ovariectomised (OVX), while six were used as unoperated controls. Dynamic biomechanical indentation testing of tibial plateau AC was performed at 26 weeks post-op. Histological sections of medial tibial plateau and lateral tibial plateau (LTP), medial and lateral femoral condyles (MFC, LFC) and patellar AC were examined for histopathology, toluidine blue staining intensity, and patterns of collagen birefringence intensity. Immunoreactivity for iNOS and nitrotyrosine was assessed in full-thickness biopsy plugs of LFC and patellar AC, and patellar AC explants were cultured to determine in vitro NO release. RESULTS: Phase lag was reduced overall in LTP-AC of OVX sheep (10.9+/-2.2 degrees vs12.1+/-2.3 degrees ; P<0.0001). Cartilage thickness was reduced in the LTP of OVX sheep (P=0.0002), in association with localised changes in dynamic shear modulus. Toluidine blue staining intensity was reduced in the patella, LFC, and MFC. Histological examination revealed greater histopathology scores in the MFC of OVX animals, and altered collagen birefringence intensity plots in the LTP. Immunostaining for iNOS was increased in patella AC (P=0.008), whilst nitrotyrosine immunoreactivity was increased in patella (P=0.03) and LFC (P<0.0001) AC. NO release by patellar AC explants was also elevated. CONCLUSIONS: Oestrogen depletion induced by OVX caused regional thinning of femoro-tibial cartilage, with biomechanical and histological changes suggestive of a disturbance in the content and/or structural organisation of the proteoglycan and collagen macromolecular assembly. The observed up-regulation of cartilage iNOS suggests a possible mechanism for these matrix changes.
机译:目的:研究卵巢切除术产生的雌激素耗竭对绵羊股胫胫骨软骨(AC)的结构和生物力学特性以及这些组织产生诱导型一氧化氮合酶(iNOS)和硝基酪氨酸的影响。方法:六只年龄大的母羊经手术卵巢切除(OVX),而六只用作未手术的对照。术后26周进行胫骨平台AC的动态生物力学压痕测试。检查了胫骨内侧和外侧胫骨平台(LTP),股内侧和外侧股骨con(MFC,LFC)以及pa骨AC的组织学切片的组织病理学,甲苯胺蓝染色强度和胶原双折射强度的模式。在LFC和pa骨AC的全厚度活检塞中评估iNOS和硝基酪氨酸的免疫反应性,并培养pa骨AC外植体以确定体外NO的释放。结果:OVX绵羊的LTP-AC总体上减少了相位滞后(10.9 +/- 2.2度vs12.1 +/- 2.3度; P <0.0001)。与动态剪切模量的局部变化相关,OVX绵羊的LTP软骨厚度减少(P = 0.0002)。在the骨,LFC和MFC中,甲苯胺蓝染色强度降低。组织学检查显示,OVX动物的MFC中组织病理学评分更高,并且LTP中的胶原双折射强度图发生了变化。 NO骨AC中iNOS的免疫染色增加(P = 0.008),骨(P = 0.03)和LFC(P <0.0001)AC中硝酸酪氨酸的免疫反应性增加。 tell骨AC外植体的NO释放也升高。结论:OVX引起的雌激素耗竭导致股胫软骨局部变薄,其生物力学和组织学变化提示蛋白聚糖和胶原大分子组装的含量和/或结构组织受到干扰。观察到的软骨iNOS的上调提示了这些基质变化的可能机制。

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