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首页> 外文期刊>Investigative ophthalmology & visual science >The Effect of Graded Cyclic Stretching on Extracellular Matrixa??Related Gene Expression Profiles in Cultured Primary Human Lamina Cribrosa Cells
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The Effect of Graded Cyclic Stretching on Extracellular Matrixa??Related Gene Expression Profiles in Cultured Primary Human Lamina Cribrosa Cells

机译:梯度循环拉伸对原代人层板红细胞细胞外基质相关基因表达谱的影响

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Purpose.: Cyclic stretching of the glial fibrillary acidic protein (GFAP)a??negative lamina cribrosa (LC) cell in vitro is associated with transcriptomic changes in genes involved in extracellular matrix (ECM) dynamics in vivo, thereby implicating this cell type in the pathophysiologic changes of the optic nerve head (ONH) in glaucoma. The purpose of the study was to determine whether exposure to different grades of mechanical stretch progressively alters the expression of ECM genes in cultured LC cells. Methods.: Primary cultures of human LC cells from three separate donors were maintained in static culture or exposed to low-level strain (3% ?± 0.5% elongation, 1 Hz) for 24 hours. A baseline comparison of the expression of 62 genes involved in ECM dynamics was performed with low-density gene arrays (LDAs). The 3% protocol was used in a 24-hour period of baseline dynamic low-level stretch, and gene expression was compared with that occurring in a further 24-hour exposure to a 12.5% or a 20% stretch. Gene expression levels were determined by qRT-PCR. Results.: LC cells displayed a nonlinear, transcriptional response to the mechanical stretch. Ten ECM-related and growth factor genes were altered by 3% strain versus static culture (nine downregulated and one upregulated). Increasing strain from 3% to 20% resulted in a significant increase in expression of 15 ECM-elated genes. Only one gene (epidermal growth factor) was increased between the 3% and 12.5% strains. Conclusions.: Low-level, pulsatile, cyclic strain resets a lower baseline expression of several glaucoma-associated ECM genes. The LC ECM gene response occurs above a fourfold increase in baseline strain (12.5% strain) in vitro. The study supports the use of a nonstatic baseline when studying the effect of stretch (or strain) on the activation of ONH-derived, ECM-producing cells.
机译:目的:胶质纤维酸性蛋白(GFAP)a负性纤网(LC)细胞的体外循环拉伸与体内细胞外基质(ECM)动力学相关基因的转录组变化有关,从而暗示该细胞类型青光眼视神经头(ONH)的病理生理变化。该研究的目的是确定暴露于不同等级的机械拉伸是否会逐渐改变培养的LC细胞中ECM基因的表达。方法:将来自三个独立供体的人LC细胞的原代培养物保持在静态培养物中,或暴露于低水平的应变(3%±0.5%的伸长率,1 Hz)中24小时。使用低密度基因阵列(LDA)对参与ECM动力学的62个基因的表达进行了基线比较。在基线动态低水平拉伸的24小时内使用了3%的方案,并将基因表达与在进一步暴露于12.5%或20%拉伸的24小时中的表达进行了比较。基因表达水平通过qRT-PCR确定。结果:LC细胞显示出对机械拉伸的非线性转录应答。与静态培养相比,有10个ECM相关基因和生长因子基因发生了3%的变化(其中9个下调,一个上调)。将应变从3%增加到20%导致15个ECM相关基因的表达显着增加。在3%至12.5%的菌株之间仅增加了一个基因(表皮生长因子)。结论:低水平的搏动性周期性应变重置了一些与青光眼相关的ECM基因的较低基线表达。在体外,LC ECM基因应答在基线株(12.5%株)增加四倍以上时发生。该研究支持在研究拉伸(或应变)对ONH衍生的产生ECM的细胞激活的影响时使用非静态基线。

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