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Extrinsic and intrinsic pathways of apoptosis in aseptic loosening after total hip replacement.

机译:全髋关节置换术后无菌性松动的凋亡的外在和内在途径。

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Particle-induced osteolysis is a major cause of aseptic loosening after total joint replacement. The purpose of the current study was to identify various apoptosis-related pathways in the cellular response to wear debris. Fas receptor, BAK and caspase-3 cleaved were evaluated immunohistochemically in capsules and interface membranes from patients with aseptic hip implant loosening. Moreover, we investigated local cellular proliferation, documented by the presence of Ki-67, to evaluate the proportion of apoptosis in relation to the proliferation in the different cells. We detected a strong expression of caspase-3 cleaved, Fas and BAK in macrophages, giant cells and T-lymphocytes. The fibroblasts showed caspase-3 cleaved and BAK, but no Fas staining. Demonstrated by Ki-67 staining, we found increased proliferation of macrophages and fibroblasts. Statistical analysis showed a significant positive correlation (p0.001) between the above mentioned results and the presence of wear debris. The intensity ofapoptosis and proliferation differed, depending on the extent of osteolysis. Overall, four different patterns of immunoreactivity were identified. We think, however, that in particle-induced osteolysis apoptosis is pathologically increased - a phenomenon also seen in other diseases. In these instances, the number and degree of apoptotic reactions are so great that the resulting cell remains cannot be completely removed. This leads to an increased excretion of fibrogenic mediators that could be responsible for increased proliferation of fibroblasts in spite of the increased apoptosis. Moreover, it leads to an increased excretion of cytokines which could be responsible for the activation of osteoclasts.
机译:全关节置换后,颗粒引起的骨溶解是无菌性松动的主要原因。本研究的目的是在细胞对磨损碎片的反应中识别各种凋亡相关途径。无菌髋关节植入物松动患者的胶囊和界面膜中的Fas受体,BAK和caspase-3酶切后进行了免疫组织化学评估。此外,我们调查了局部细胞的增殖,以Ki-67的存在来证明,以评估凋亡相对于不同细胞增殖的比例。我们在巨噬细胞,巨细胞和T淋巴细胞中检测到caspase-3裂解,Fas和BAK的强表达。成纤维细胞显示caspase-3裂解和BAK,但无Fas染色。通过Ki-67染色证明,我们发现巨噬细胞和成纤维细胞的增殖增加。统计分析表明,上述结果与磨损碎片之间存在显着的正相关(p <0.001)。凋亡和增殖的强度根据溶骨程度的不同而不同。总体而言,鉴定了四种不同的免疫反应性模式。但是,我们认为,在颗粒诱导的骨溶解中,细胞凋亡在病理上增加了,这种现象在其他疾病中也可见。在这些情况下,凋亡反应的数量和程度是如此之大,以至于残留的细胞无法完全去除。这导致纤维生成介质的排泄增加,尽管凋亡增加,这可能是成纤维细胞增殖增加的原因。此外,它导致细胞因子排泄增加,这可能是破骨细胞活化的原因。

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