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利用原子力显微镜研究人白内障晶状体前囊膜的形态特征和生物力学特性

AFM study for morphological characteristics and biomechanical properties of human cataract anterior lens capsules.

作者信息

Choi Samjin, Lee Hui-Jae, Cheong Youjin, Shin Jae-Ho, Jin Kyung-Hyun, Park Hun-Kuk, Park Young-Guk

机构信息

Department of Biomedical Engineering and Healthcare Industry Research Institute, College of Medicine, Kyung Hee University, Seoul, Republic of Korea.

出版信息

Scanning. 2012 Jul-Aug;34(4):247-56. doi: 10.1002/sca.21001. Epub 2012 Feb 13.

Abstract

The aim of this study was to quantitatively investigate the morphologies (surface roughness) and biomechanical properties (Young's modulus) of human anterior lens capsules (ALCs) for noncataract and cataract groups using atomic force microscopy. Eight human ALCs obtained during phacoemulsification from patients with senile cataracts (72 ± 13 years) were investigated in both the hydrated and dehydrated conditions. The cataract group showed clearly the proliferated lens epithelial cells (LECs) with a monomorphic cell structure, a diameter of 12.54 ± 4.31 μm, and a height of 0.23 ± 0.04 μm, whereas the control group showed no LECs. A substantial amount of false-positive calcification was observed caused by the deposition of remnants of dried salt solution. Cataract group showed significantly higher surface roughness (382.06 nm, p ≤ 0.001) than control group in the anterior side of ALCs, whereas cataract group showed significantly lower surface roughness (353.79 nm, p ≤ 0.001) than control group in their posterior side. Cataract group showed significantly higher Young's modulus (69.52 kPa, p ≤ 0.001) compared to the control group, regardless of the ALC side. Therefore, it is significant that this study provides a new method to examine the nanostructural characteristic and biomechanical property of human ALCs through a nanometer-scale resolution microscopy technique.

摘要

本研究的目的是使用原子力显微镜对非白内障组和白内障组的人眼前囊(ALC)的形态(表面粗糙度)和生物力学特性(杨氏模量)进行定量研究。对72±13岁患有老年性白内障的患者在超声乳化过程中获得的8个人ALC在水合和脱水条件下进行了研究。白内障组可见明显增殖的晶状体上皮细胞(LEC),细胞结构单一,直径为12.54±4.31μm,高度为0.23±0.04μm,而对照组未见LEC。观察到由干盐溶液残余物沉积引起的大量假阳性钙化。白内障组ALC前侧的表面粗糙度(382.06nm,p≤0.001)显著高于对照组,而白内障组ALC后侧的表面粗糙度(353.79nm,p≤0.001)显著低于对照组。无论ALC的哪一侧,白内障组的杨氏模量(69.52kPa,p≤0.001)均显著高于对照组。因此,本研究通过纳米级分辨率显微镜技术提供了一种检测人ALC纳米结构特征和生物力学特性的新方法,具有重要意义。

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