The David J. Apple International Laboratory for Ocular Pathology, Department of Ophthalmology, University of Heidelberg, Heidelberg, Germany.
Department of Ophthalmology, The Third Affiliated Hospital of Wenzhou Medical University, Rui'an, Zhejiang, China.
PLoS One. 2021 Apr 30;16(4):e0250860. doi: 10.1371/journal.pone.0250860. eCollection 2021.
In this laboratory study, we assessed the resistance to microvacuole (glistening) formation in hydrophobic intraocular lenses (IOLs). Glistenings were induced in five lenses each of five different hydrophobic acrylic IOL models, using an established in vitro laboratory model: 800C (Rayner, Worthing, UK), AcrySof SN60WF (Alcon, Fort Worth, USA), Tecnis ZCB00 (Johnson & Johnson Vision, Santa Ana, USA), Vivinex XY1 (Hoya, Tokyo, Japan) and CT Lucia 611P (Zeiss, Oberkochen, Germany). We evaluated the number of microvacuoles per square millimeter (MV/mm2) in the central part of each IOL. Results were analyzed statistically, and mean glistening numbers were ranked, with the highest in the SN60WF which had 66.0 (±45.5) MVs/mm, followed by the 611P with 30.7 (±8.4) MVs/mm2. The 800C and XY1 showed comparable values of 2.0 (±3.6) and 2.7 (±2.4) MVs/mm2, respectively. ZCB00 had the lowest number with 0.9 (±0.6) MVs/mm2. This study shows that the resistance to glistening formation differs depending on the hydrophobic acrylic copolymer composition of the IOL material. Some IOLs from current clinical use are still prone to develop glistenings whereas others, including the ZCB00, 800C and XY1 show high resistance to microvacuole formation.
在这项实验室研究中,我们评估了五种不同疏水丙烯酸人工晶状体(IOL)模型的每个模型五个晶状体的微囊泡(闪亮)形成的阻力。使用已建立的体外实验室模型:800C(雷纳,沃辛,英国),AcrySof SN60WF(爱尔康,沃思堡,美国),Tecnis ZCB00(强生视力,圣安娜,美国),Vivinex XY1(豪雅,东京,日本)和 CT Lucia 611P(蔡司,奥伯科亨,德国),在每个 IOL 的中心部分诱导了闪亮。评估每平方毫米(MV/mm2)的微囊泡数量。对结果进行了统计学分析,并对闪亮数量进行了排名,SN60WF 的数量最高,为 66.0(±45.5)MV/mm2,其次是 611P,为 30.7(±8.4)MV/mm2。800C 和 XY1 的值分别为 2.0(±3.6)和 2.7(±2.4)MV/mm2。ZCB00 的数量最低,为 0.9(±0.6)MV/mm2。这项研究表明,微囊泡形成的阻力取决于 IOL 材料的疏水丙烯酸共聚物组成。目前临床使用的一些 IOL 仍然容易出现闪亮,而其他一些 IOL,包括 ZCB00、800C 和 XY1,对微囊泡形成具有很高的抵抗力。