Goldberg E P, Bhatia S, Enns J B
Department of Materials Science and Engineering, University of Florida, Gainesville 32611, USA.
CLAO J. 1997 Oct;23(4):243-8.
In this study, we examined the interactions between hydrogel contact lenses and the cornea, and the role of these interactions in the pathogenesis of interfacial debris formation and the complications of contact lens use.
We used a corneal abrasion device to simulate the motion of contact lenses on the cornea and the ensuing abrasive interactions. We examined lens and corneal surfaces by Atomic Force Microscopy (AFM), Low Voltage Scanning Electron Microscopy (LVSEM), and optical microscopy (with vital staining of corneas) for unused hydrogel contact lenses, lenses tested in the corneal abrasion device, and worn contact lenses. Young's modulus of hydrogel contact lenses was also measured and compared with the modulus of the human cornea, as reported in the literature.
We observed patterns of abrasive damage to the rabbit cornea in vitro caused by corneal interaction with hydrogel contact lenses. Comparison of AFM and SEM of unused lens surfaces with the surfaces of lenses tested in the abrasion device showed dramatic alterations of the contact lens surfaces. Damage to the lenses was also evident by AFM for lenses worn by volunteers. The modulus of hydrogel contact lenses was lower than the modulus of the human cornea.
The surface morphology of hydrogel contact lenses is significantly altered during use. The Young's modulus of the cornea is higher than the modulus of hydrogel contact lenses. These observations suggest a new mechanism for contact lens complications; namely, damage to the contact lens by the cornea as an initial event that produces lens particles and deposits at the lens-cornea interface, followed by corneal abrasion and the onset of other complications.
在本研究中,我们研究了水凝胶隐形眼镜与角膜之间的相互作用,以及这些相互作用在界面碎屑形成的发病机制和隐形眼镜使用并发症中的作用。
我们使用角膜擦伤装置来模拟隐形眼镜在角膜上的运动以及随之产生的摩擦相互作用。我们通过原子力显微镜(AFM)、低电压扫描电子显微镜(LVSEM)和光学显微镜(对角膜进行活体染色)对未使用的水凝胶隐形眼镜、在角膜擦伤装置中测试的隐形眼镜以及佩戴过的隐形眼镜的镜片和角膜表面进行了检查。还测量了水凝胶隐形眼镜的杨氏模量,并与文献报道的人角膜模量进行了比较。
我们观察到了在体外水凝胶隐形眼镜与角膜相互作用对兔角膜造成的摩擦损伤模式。将未使用镜片表面的AFM和SEM与在擦伤装置中测试的镜片表面进行比较,发现隐形眼镜表面发生了显著变化。对于志愿者佩戴过的镜片,AFM也显示出镜片有损伤。水凝胶隐形眼镜的模量低于人角膜的模量。
水凝胶隐形眼镜在使用过程中表面形态会发生显著改变。角膜的杨氏模量高于水凝胶隐形眼镜的模量。这些观察结果提示了一种隐形眼镜并发症的新机制;即角膜对隐形眼镜的损伤作为初始事件,产生镜片颗粒并沉积在镜片 - 角膜界面,随后导致角膜擦伤和其他并发症的发生。