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在微米尺度上定量分析人眼角膜周边的胶原组织。

Quantification of collagen organization in the peripheral human cornea at micron-scale resolution.

机构信息

Structural Biophysics Group, School of Optometry and Vision Sciences, Cardiff University, Cardiff, United Kingdom.

出版信息

Biophys J. 2011 Jul 6;101(1):33-42. doi: 10.1016/j.bpj.2011.05.029.

Abstract

The collagen microstructure of the peripheral cornea is important in stabilizing corneal curvature and refractive status. However, the manner in which the predominantly orthogonal collagen fibrils of the central cornea integrate with the circumferential limbal collagen is unknown. We used microfocus wide-angle x-ray scattering to quantify the relative proportion and orientation of collagen fibrils over the human corneolimbal interface at intervals of 50 μm. Orthogonal fibrils changed direction 1-1.5 mm before the limbus to integrate with the circumferential limbal fibrils. Outside the central 6 mm, additional preferentially aligned collagen was found to reinforce the cornea and limbus. The manner of integration and degree of reinforcement varied significantly depending on the direction along which the limbus was approached. We also employed small-angle x-ray scattering to measure the average collagen fibril diameter from central cornea to limbus at 0.5 mm intervals. Fibril diameter was constant across the central 6 mm. More peripherally, fibril diameter increased, indicative of a merging of corneal and scleral collagen. The point of increase varied with direction, consistent with a scheme in which the oblique corneal periphery is reinforced by chords of scleral collagen. The results have implications for the cornea's biomechanical response to ocular surgeries involving peripheral incision.

摘要

角膜周边部的胶原微观结构对于稳定角膜曲率和屈光状态非常重要。然而,角膜中央区主要呈正交排列的胶原纤维与角膜缘周围胶原的整合方式尚不清楚。我们使用微焦点广角 X 射线散射技术,在距角膜缘 50μm 的间隔处,定量分析了人眼角膜缘界面处胶原纤维的相对比例和取向。正交纤维在到达角膜缘前 1-1.5mm 处改变方向,与角膜缘周围的胶原纤维整合。在中央 6mm 以外,还发现了额外的定向排列胶原纤维,以增强角膜和角膜缘。整合方式和增强程度因接近角膜缘的方向而异。我们还采用小角度 X 射线散射技术,每隔 0.5mm 测量从中央角膜到角膜缘的平均胶原纤维直径。在中央 6mm 范围内,纤维直径保持不变。更靠近周边的部位,纤维直径增加,表明角膜和巩膜胶原的融合。增加的位置随方向而变化,与斜形角膜周边部由巩膜胶原的弦线增强的方案一致。这些结果对于涉及周边切口的眼科手术中角膜的生物力学反应具有重要意义。

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本文引用的文献

1
Corneal collagen-its role in maintaining corneal shape and transparency.
Biophys Rev. 2009 Jul;1(2):83-93. doi: 10.1007/s12551-009-0011-x. Epub 2009 Jun 6.
2
Evaluating corneal collagen organization using high-resolution nonlinear optical macroscopy.
Eye Contact Lens. 2010 Sep;36(5):260-4. doi: 10.1097/ICL.0b013e3181ee8992.
3
Collagen and mature elastic fibre organisation as a function of depth in the human cornea and limbus.
J Struct Biol. 2010 Mar;169(3):424-30. doi: 10.1016/j.jsb.2009.11.004. Epub 2009 Nov 13.
4
Epithelial, stromal, and corneal pachymetry changes during orthokeratology.
Optom Vis Sci. 2009 Aug;86(8):E1006-14. doi: 10.1097/OPX.0b013e3181b18219.
5
The use of X-ray scattering techniques to quantify the orientation and distribution of collagen in the corneal stroma.
Prog Retin Eye Res. 2009 Sep;28(5):369-92. doi: 10.1016/j.preteyeres.2009.06.005. Epub 2009 Jul 3.
6
3D collagen orientation study of the human cornea using X-ray diffraction and femtosecond laser technology.
Invest Ophthalmol Vis Sci. 2009 Nov;50(11):5159-64. doi: 10.1167/iovs.09-3669. Epub 2009 Jun 10.
7
Ultrastructural changes in the retinopathy, globe enlarged (rge) chick cornea.
J Struct Biol. 2009 May;166(2):195-204. doi: 10.1016/j.jsb.2009.01.009. Epub 2009 Mar 1.
8
Light transmission in the human cornea as a function of position across the ocular surface: theoretical and experimental aspects.
Biophys J. 2008 Dec;95(11):5092-9. doi: 10.1529/biophysj.108.132316. Epub 2008 Sep 12.
10
Circular polarization biomicroscopy: a method for determining human corneal stromal lamellar organization in vivo.
Ophthalmic Physiol Opt. 2007 May;27(3):256-64. doi: 10.1111/j.1475-1313.2007.00482.x.

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