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Biomechanics of Schlemm's canal endothelium and intraocular pressure reduction

机译:Schlemm管内皮的生物力学和眼压降低

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Ocular hypertension in glaucoma develops due to age-related cellular dysfunction in the conventional outflow tract, resulting in increased resistance to aqueous humor outflow. Two cell types, trabecular meshwork (TM) and Schlemm's canal (SC) endothelia, interact in the juxtacanalicular tissue (JCT) region of the conventional outflow tract to regulate outflow resistance. Unlike endothelial cells lining the systemic vasculature, endothelial cells lining the inner wall of SC support a transcellular pressure gradient in the basal to apical direction, thus acting to push the cells off their basal lamina. The resulting biomechanical strain in SC cells is quite large and is likely to be an important determinant of endothelial barrier function, outflow resistance and intraocular pressure. This review summarizes recent work demonstrating how biomechanical properties of SC cells impact glaucoma. SC cells are highly contractile, and such contraction greatly increases cell stiffness. Elevated cell stiffness in glaucoma may reduce the strain experienced by SC cells, decrease the propensity of SC cells to form pores, and thus impair the egress of aqueous humor from the eye. Furthermore, SC cells are sensitive to the stiffness of their local mechanical microenvironment, altering their own cell stiffness and modulating gene expression in response. Significantly, glaucomatous SC cells appear to be hyper-responsive to substrate stiffness. Thus, evidence suggests that targeting the material properties of SC cells will have therapeutic benefits for lowering intraocular pressure in glaucoma. (C) 2014 Elsevier Ltd. All rights reserved.
机译:青光眼的高眼压症是由于常规流出道中与年龄有关的细胞功能障碍而发展的,导致对房水流出的抵抗力增加。小梁网(TM)和Schlemm运河(SC)内皮这两种细胞在常规流出道的近泪小管组织(JCT)区域相互作用,以调节流出阻力。与衬在系统脉管系统中的内皮细胞不同,衬在SC内壁上的内皮细胞在基底到顶方向支持跨细胞压力梯度,从而起到将细胞推离基底层的作用。在SC细胞中产生的生物力学应变非常大,并且可能是内皮屏障功能,流出阻力和眼内压的重要决定因素。这篇综述总结了最近的研究,证明了SC细胞的生物力学特性如何影响青光眼。 SC细胞高度收缩,这种收缩大大增加了细胞的刚度。青光眼中细胞僵硬度的升高可能会减少SC细胞所经历的劳损,降低SC细胞形成毛孔的倾向,从而损害眼房水的流出。此外,SC细胞对其局部机械微环境的刚度敏感,从而改变其自身的细胞刚度并响应性地调节基因表达。重要的是,青光眼SC细胞似乎对底物僵硬反应过度。因此,有证据表明,靶向SC细胞的物质特性将具有降低青光眼眼压的治疗优势。 (C)2014 Elsevier Ltd.保留所有权利。

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