Structural Biophysics Group, School of Optometry and Vision Sciences, Cardiff University, Cardiff, UK.
Methods Mol Biol. 2020;2145:231-247. doi: 10.1007/978-1-0716-0599-8_16.
X-ray scattering enables the structure of collagen-rich tissues, such as the cornea, to be examined at both the molecular and fibrillar level. The high-intensity X-rays available at synchrotron radiation sources, coupled with minimal sample preparation requirements, facilitates the rapid generation of high-quality X-ray scattering data from corneal tissue at a close-to-physiological state of hydration. Analysis of resulting X-ray scatter patterns allows one to quantify numerous structural parameters relating to the average diameter, lateral arrangement and alignment of collagen fibrils within the cornea, as well as the axial and lateral arrangements of collagen molecules within the fibrils. Here we describe the typical experimental setup and considerations involved in the collection of X-ray scattering data from corneal tissue.
X 射线散射使富含胶原蛋白的组织(如角膜)的结构能够在分子和纤维水平上进行检查。同步辐射源提供的高强度 X 射线,再加上对样品准备要求的最小化,便于从接近生理水合状态的角膜组织中快速生成高质量的 X 射线散射数据。对所得 X 射线散射模式的分析可以定量许多与角膜中胶原纤维的平均直径、侧向排列和取向以及纤维内胶原分子的轴向和侧向排列有关的结构参数。本文介绍了从角膜组织中收集 X 射线散射数据时的典型实验设置和注意事项。