Khan Mohammad Faisal Jamal, Nag Tapas C, Igathinathane C, Osuagwu Uchechukwu L, Rubini Michele
Medical Genetics Unit, Department of Biomedical and Specialty Surgical Sciences, University of Ferrara, Via Fossato di Mortara 74, I-44121 Ferrara, Italy.
Department of Anatomy, All India Institute of Medical Sciences, New Delhi 110029, India.
Micron. 2015 Nov;78:45-53. doi: 10.1016/j.micron.2015.07.007. Epub 2015 Jul 26.
The size and arrangement of stromal collagen fibrils (CFs) influence the optical properties of the cornea and hence its function. The spatial arrangement of the collagen is still questionable in relation to the diameter of collagen fibril. In the present study, we introduce a new parameter, edge-fibrillar distance (EFD) to measure how two collagen fibrils are spaced with respect to their closest edges and their spatial distribution through normalized standard deviation of EFD (NSDEFD) accessed through the application of two commercially available multipurpose solutions (MPS): ReNu and Hippia. The corneal buttons were soaked separately in ReNu and Hippia MPS for five hours, fixed overnight in 2.5% glutaraldehyde containing cuprolinic blue and processed for transmission electron microscopy. The electron micrographs were processed using ImageJ user-coded plugin. Statistical analysis was performed to compare the image processed equivalent diameter (ED), inter-fibrillar distance (IFD), and EFD of the CFs of treated versus normal corneas. The ReNu-soaked cornea resulted in partly degenerated epithelium with loose hemidesmosomes and Bowman's collagen. In contrast, the epithelium of the cornea soaked in Hippia was degenerated or lost but showed closely packed Bowman's collagen. Soaking the corneas in both MPS caused a statistically significant decrease in the anterior collagen fibril, ED and a significant change in IFD, and EFD than those of the untreated corneas (p<0.05, for all comparisons). The introduction of EFD measurement in the study directly provided a sense of gap between periphery of the collagen bundles, their spatial distribution; and in combination with ED, they showed how the corneal collagen bundles are spaced in relation to their diameters. The spatial distribution parameter NSDEFD indicated that ReNu treated cornea fibrils were uniformly distributed spatially, followed by normal and Hippia. The EFD measurement with relatively lower standard deviation and NSDEFD, a characteristic of uniform CFs distribution, can be an additional parameter used in evaluating collagen organization and accessing the effects of various treatments on corneal health and transparency.
基质胶原纤维(CFs)的大小和排列会影响角膜的光学特性,进而影响其功能。就胶原纤维的直径而言,胶原的空间排列仍存在疑问。在本研究中,我们引入了一个新参数——边缘纤维距离(EFD),以测量两条胶原纤维相对于它们最接近边缘的间距以及它们的空间分布,通过应用两种市售多功能溶液(MPS):ReNu和希皮亚(Hippia)来获取EFD的归一化标准差(NSDEFD)。将角膜纽扣分别浸泡在ReNu和希皮亚MPS中5小时,在含有铜啉蓝的2.5%戊二醛中固定过夜,然后进行透射电子显微镜处理。使用ImageJ用户编码插件对电子显微照片进行处理。进行统计分析以比较处理过的角膜与正常角膜的CFs的图像处理等效直径(ED)、纤维间距离(IFD)和EFD。浸泡在ReNu中的角膜导致上皮部分退化,半桥粒和鲍曼胶原松散。相比之下,浸泡在希皮亚中的角膜上皮退化或缺失,但鲍曼胶原紧密排列。将角膜浸泡在两种MPS中均导致前胶原纤维、ED在统计学上显著降低,IFD和EFD与未处理角膜相比有显著变化(所有比较p<0.05)。本研究中引入EFD测量直接提供了胶原束周边之间的间隙感、它们的空间分布;并且与ED相结合,它们展示了角膜胶原束相对于其直径的间距情况。空间分布参数NSDEFD表明,ReNu处理的角膜纤维在空间上均匀分布,其次是正常角膜和希皮亚处理的角膜。具有相对较低标准差的EFD测量和NSDEFD,作为均匀CFs分布的一个特征,可以作为评估胶原组织以及了解各种治疗对角膜健康和透明度影响的一个额外参数。