Department of Biomedical Engineering, Duke University, Durham, North Carolina.
Invest Ophthalmol Vis Sci. 2014 Feb 10;55(2):814-23. doi: 10.1167/iovs.13-13091.
Our previous work indicated that a larger circumferential Young's modulus (E) of trabecular meshwork (TM) correlated with a higher outflow facility (C) in normal human donor eyes. The current study investigated the influence of glaucomatous TM stiffness and cellularity on C.
Eight left eyes from glaucomatous human donors were perfused within 48 hours post mortem. Values of C were determined at pressures of 10, 20, 30, and 40 mm Hg. The TM was then dissected and imaged with optical coherence tomography to determine its cross-sectional area. Uniaxial tensile stress was applied longitudinally to TM segments to determine stress-strain curves. E was calculated at zero strain, representing the circumferential stiffness of the TM at a relaxed state. Confocal images of DAPI-stained TM segments were used to determine cellularity after mechanical stretching.
C (μL/min/mm Hg) of glaucomatous eyes was 0.18 ± 0.02 (mean ± SE) at 10 mm Hg and decreased to 0.11 ± 0.02 when the pressure was increased to 40 mm Hg. C measured at 30 and 40 mm Hg correlated with TM cellularity. E was 12.5 MPa and 1.4 (geometric mean and SE) and did not statistically correlate with postmortem time, age, C, or cellularity.
Compared with data of normal eyes observed in a previous study, C in glaucomatous eyes was reduced significantly, and the amount of reduction increased with increasing the pressure. E of glaucomatous TM was approximately one-fifth that of normal TM. Prospective studies are needed to further investigate the influence of TM tensile stiffness on outflow regulation.
我们之前的工作表明,小梁网(TM)的周向杨氏模量(E)与正常人供体眼中更高的流出阻力(C)相关。本研究调查了青光眼 TM 硬度和细胞密度对 C 的影响。
8 只来自青光眼患者的左眼在死后 48 小时内进行灌注。在 10、20、30 和 40mmHg 的压力下确定 C 值。然后将 TM 解剖并通过光学相干断层扫描成像以确定其横截面积。对 TM 节段施加轴向拉伸应力以确定应力-应变曲线。在零应变时计算 E,代表 TM 在松弛状态下的周向刚度。对机械拉伸后的 DAPI 染色 TM 节段进行共聚焦成像以确定细胞密度。
青光眼眼在 10mmHg 时的 C(μL/min/mm Hg)为 0.18±0.02(平均值±SE),当压力增加到 40mmHg 时降至 0.11±0.02。在 30 和 40mmHg 测量的 C 与 TM 细胞密度相关。E 为 12.5MPa 和 1.4(几何平均值和 SE),与死后时间、年龄、C 或细胞密度无统计学相关性。
与之前研究中观察到的正常眼数据相比,青光眼眼中的 C 显著降低,且随着压力的增加,降低的幅度增加。青光眼 TM 的 E 约为正常 TM 的五分之一。需要前瞻性研究进一步探讨 TM 拉伸刚度对流出调节的影响。