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An autocrine or paracrine Fas-mediated counterattack: a potential mechanism for apoptosis of notochordal cells in intact rat nucleus pulposus.

机译:Fas介导的自分泌或旁分泌的反攻:完整大鼠髓核中脊索细胞凋亡的潜在机制。

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STUDY DESIGN: Immunohistochemistry and in situ nick end-labeling (TUNEL) were performed in rat lumbar intervertebral discs. OBJECTIVES: To demonstrate the mechanism of notochordal cell death in the nucleus pulposus (NP). SUMMARY OF BACKGROUND DATA: With age, notochordal cells gradually disappear in the NP. We hypothesized that this phenomenon might be related to Fas-mediated apoptosis. MATERIALS AND METHODS: Expressions of Fas; Fas ligand (FasL); caspase 3, 8, 9, 10; Ki-67 protein; and TUNEL were examined in 4-week-, 6-month- and 12-month-old rat NPs. Apoptosis (TUNEL-positive) and proliferation potential (Ki-67-positive) indexes of notochordal cells were calculated and compared among age groups. RESULTS: Notochordal cells constitutively expressed both Fas and FasL. Among their downstream initiator (caspase 8, 9, and 10) and executioner (caspase 3) caspases tested, caspase 9 and 3 were expressed. Proliferation potential of the notochordal cells was the highest at 4 weeks (1.96 +/- 1.3%) and decreased to a significantly lower level at 6 (0.81 +/- 0.68%) and 12 months (0.8 +/- 0.37%; P = 0.03 and 0.01, respectively). In contrast, apoptosis of the notochordal cells was the lowest at 4 weeks (3.52 +/- 1.07%) and increased to a significantly higher level at 6 (19.38 +/- 10.99%) and 12 months (21.51 +/- 16.99%; P < 0.001 in both comparisons). CONCLUSIONS: Fas-mediated mitochondrial caspase 9 pathway is constitutively present in the rat notochordal cells. The constitutive expression of Fas, FasL and its downstream caspases, as well as the homogeneity ofnotochordal cell population suggests an autocrine or paracrine Fas-mediated counterattack to be a potential mechanism for apoptosis of rat notochordal cells. A regulated negative balance of notochordal cell proliferation against apoptosis is likely to involve the disappearance of notochordal cells in the rat NP. This information on the mechanism for apoptosis of notochordal cells could be important in the investigation of intervertebral disc development as well asaging and perhaps degeneration.
机译:研究设计:在大鼠腰椎间盘中进行免疫组织化学和原位切口末端标记(TUNEL)。目的:证实髓核(NP)中脊索细胞死亡的机制。背景数据摘要:随着年龄的增长,脊索细胞在NP中逐渐消失。我们假设这种现象可能与Fas介导的细胞凋亡有关。材料与方法:Fas的表达; Fas配体(FasL); caspase 3、8、9、10; Ki-67蛋白;在4周,6个月和12个月大的大鼠NP中检查了TUNEL和TUNEL。计算各年龄组脊索细胞的凋亡(TUNEL阳性)和增殖潜能(Ki-67阳性)指标并进行比较。结果:脊索细胞组成性表达Fas和FasL。在其测试的下游启动子(胱天蛋白酶8、9和10)和执行者(胱天蛋白酶3)中,胱天蛋白酶9和3被表达。脊索细胞的增殖潜能在第4周最高(1.96 +/- 1.3%),在第6个月(0.81 +/- 0.68%)和12个月(0.8 +/- 0.37%)时下降到明显更低的水平。分别为0.03和0.01)。相比之下,脊索细胞的凋亡在4周时最低(3.52 +/- 1.07%),并在第6周(19.38 +/- 10.99%)和12个月时(21.51 +/- 16.99%)增加到明显更高的水平。在两个比较中,P <0.001)。结论:Fas介导的线粒体半胱天冬酶9途径组成性地存在于大鼠的线粒体细胞中。 Fas,FasL及其下游胱天蛋白酶的组成型表达以及脊索细胞群的同质性表明,自分泌或旁分泌的Fas介导的反击是大鼠脊索细胞凋亡的潜在机制。调节的脊索细胞增殖对细胞凋亡的负平衡很可能涉及大鼠NP中脊索细胞的消失。有关脊索细胞凋亡机制的信息可能在研究椎间盘发育以及老化和变性方面可能很重要。

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