首页> 外文期刊>Journal of the Royal Society Interface >Mechanical responsiveness of the endothelial cell of Schlemm's canal: scope, variability and its potential role in controlling aqueous humour outflow
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Mechanical responsiveness of the endothelial cell of Schlemm's canal: scope, variability and its potential role in controlling aqueous humour outflow

机译:Schlemm管的内皮细胞的机械反应性:范围,变异性及其在控制房水流出中的潜在作用

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摘要

Primary open-angle glaucoma is associated with elevated intraocular pressure, which in turn is believed to result from impaired outflow of aqueous humour. Aqueous humour outflow passes mainly through the trabecular meshwork (TM) and then through pores formed in the endothelium of Schlemm's canal (SC), which experiences a basal-to-apical pressure gradient. This gradient dramatically deforms the SC endothelial cell and potentially contributes to the formation of those pores. However, mechanical properties of the SC cell are poorly defined. Using optical magnetic twisting cytometry and traction force microscopy, here we characterize the mechanical properties of primary cultures of the human SC cell, and for the first time, the scope of their changes in response to pharmacological agents that are known to modulate outflow resistance. Lysophosphatidic acid, sphingosine-1-phosphate (S1P) and thrombin caused an increase in cell stiffness by up to 200 per cent, whereas in most cell strains, exposure to latrun-culin A, isoproterenol, dibutryl cyclic-AMP or Y-27632 caused a decrease in cell stiffness by up to 80 per cent, highlighting that SC cells possess a remarkably wide contractile scope. Drug responses were variable across donors. SIP, for example, caused 200 per cent stiffening in one donor strain but only 20 per cent stiffening in another. Isoproterenol caused dose-dependent softening in three donor strains but little or no response in two others, a finding mirrored by changes in traction forces and consistent with the level of expression of (32-adrenergic receptors. Despite donor variability, those drugs that typically increase outflow resistance systematically Caused cell stiffness to increase, while in most cases, those drugs that typically decrease outflow resistance caused cell stiffness to decrease. These findings establish the endothelial cell of SC as a reactive but variable mechanical component of the aqueous humour outflow pathway. Although the mechanism and locus of increased outflow resistance remain unclear, these data suggest the SC endothelial cell to be a modulator of outflow resistance.
机译:原发性开角型青光眼与眼内压升高有关,据信这又归因于房水流出减少。房水流出主要通过小梁网(TM),然后通过在Schlemm运河(SC)的内皮中形成的孔,该孔经历了从基础到顶部的压力梯度。该梯度使SC内皮细胞急剧变形,并可能有助于这些孔的形成。但是,SC电池的机械性能定义不清。在这里,我们使用光学磁扭细胞术和牵引力显微镜对人SC细胞原代培养物的机械特性进行了表征,并且首次表征了它们响应已知可调节流出阻力的药理作用而变化的范围。溶血磷脂酸,1-磷酸鞘氨醇(S1P)和凝血酶可导致细胞僵硬度增加高达200%,而在大多数细胞株中,则导致其暴露于拉特朗菌素A,异丙肾上腺素,双丁酰环状AMP或Y-27632降低了80%的细胞刚度,这突出表明SC细胞具有非常宽的收缩范围。药物反应在捐赠者之间是可变的。例如,SIP在一种供体菌株中引起200%的硬化,而在另一种菌株中仅引起20%的硬化。异丙肾上腺素在三种供体菌株中引起剂量依赖性的软化,但在另两种中则很少或没有反应,这一发现反映在牵引力的变化上并且与(32-肾上腺素受体的表达水平一致。尽管供体有差异,但那些通常会增加的药物流出阻力系统性地引起细胞刚度增加,而在大多数情况下,那些通常会降低流出阻力的药物导致细胞刚度下降,这些发现将SC的内皮细胞确定为房水流出途径的反应性但可变的机械成分。尚不清楚流出阻力增加的机制和部位,这些数据表明SC内皮细胞是流出阻力的调节剂。

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