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Smurf2在小鼠模型中的异位表达与年龄相关性椎间盘退变的加速

Ectopic expression of Smurf2 and acceleration of age-related intervertebral disc degeneration in a mouse model.

作者信息

Wu Qiuqian, Huang Jason H

机构信息

Department of Neurosurgery, Institute for Translational Medicine, Baylor Scott & White Health System, Temple, Texas.

出版信息

J Neurosurg Spine. 2017 Jul;27(1):116-126. doi: 10.3171/2016.11.SPINE16901. Epub 2017 Apr 7.

Abstract

OBJECTIVE Lumbar intervertebral disc degeneration, an age-related process, is a major cause of low-back pain. Although low-back pain is a very common clinical problem in the aging population, no effective treatment is available, largely owing to lack of understanding of the molecular mechanisms underlying disc degeneration. The goal of this study was to characterize how ectopic expression of Smurf2 driven by the collagen Type II alpha 1 ( Col2a1) promoter alters disc cell phenotype and associated cellular events, matrix synthesis, and gene expression during disc degeneration in mice. METHODS To characterize how ectopic expression of Smurf2 in Col2a1-promoter working cells affects the disc degeneration process, the authors performed histological and immunohistochemical analysis of lumbar spine specimens harvested from wild-type (WT) and Col2a1-Smurf2 transgenic mice at various ages (n ≥ 6 in each age group). To elucidate the molecular mechanism underlying Smurf2-mediated disc degeneration, the authors isolated cells from WT and Col2a1-Smurf2 transgenic lumbar intervertebral discs and performed Western blot and real-time RT-PCR (reverse transcription polymerase chain reaction) to examine the protein and mRNA levels of interesting targets. RESULTS The authors demonstrated that approximately 30% of WT mice at 10-12 months of age had started to show disc degeneration and that the disc degeneration process was accelerated by 3-6 months in Col2a1-Smurf2 transgenic mice. Chondrocyte-like cell proliferation, maturation, and fibrotic tissue formation in the inner annulus were often accompanied by fibroblast-to-chondrocyte differentiation in the outer annulus in transgenic discs. The chondrocyte-like cells in transgenic discs expressed higher levels of connective tissue growth factor (CTGF) than were expressed in WT counterparts. CONCLUSIONS The findings that ectopic expression of Smurf2 driven by the Col2a1 promoter accelerated disc degeneration in Col2a1-Smurf2 transgenic mice, and that higher levels of CTGF protein and mRNA were present in Col2a1-Smurf2 transgenic discs, indicate that Smurf2 accelerates disc degeneration via upregulation of CTGF.

摘要

目的 腰椎间盘退变是一个与年龄相关的过程,是腰痛的主要原因。虽然腰痛在老年人群中是一个非常常见的临床问题,但由于对椎间盘退变的分子机制缺乏了解,目前尚无有效的治疗方法。本研究的目的是表征由II型胶原α1(Col2a1)启动子驱动的Smurf2异位表达如何改变小鼠椎间盘退变过程中的椎间盘细胞表型、相关细胞事件、基质合成和基因表达。方法 为了表征Col2a1启动子工作细胞中Smurf2的异位表达如何影响椎间盘退变过程,作者对从不同年龄的野生型(WT)和Col2a1-Smurf2转基因小鼠采集的腰椎标本进行了组织学和免疫组织化学分析(每个年龄组n≥6)。为了阐明Smurf2介导的椎间盘退变的分子机制,作者从WT和Col2a1-Smurf2转基因腰椎椎间盘中分离细胞,并进行蛋白质印迹和实时RT-PCR(逆转录聚合酶链反应)以检测感兴趣靶点的蛋白质和mRNA水平。结果 作者证明,10-12月龄的WT小鼠中约30%开始出现椎间盘退变,而Col2a1-Smurf2转基因小鼠的椎间盘退变过程加快了3-6个月。转基因椎间盘中内层纤维环的软骨样细胞增殖、成熟和纤维化组织形成常伴有外层纤维环中成纤维细胞向软骨细胞的分化。转基因椎间盘中的软骨样细胞表达的结缔组织生长因子(CTGF)水平高于WT对照。结论 由Col2a1启动子驱动的Smurf2异位表达加速了Col2a1-Smurf2转基因小鼠的椎间盘退变,且Col2a1-Smurf2转基因椎间盘中CTGF蛋白和mRNA水平较高,这些发现表明Smurf2通过上调CTGF加速椎间盘退变。

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