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紫外线和抗生素处理诱导羊膜的纳米级修饰:组织学、原子力显微镜和傅里叶变换红外光谱证据。

Nano-Scale Modifications of Amniotic Membrane Induced by UV and Antibiotic Treatment: Histological, AFM and FTIR Spectroscopy Evidence.

作者信息

Cavalu Simona, Roiu George, Pop Ovidiu, Heredea Denisa A Petricas, Costea Traian Octavian, Costea Claudia Florida

机构信息

Faculty of Medicine and Pharmacy, University of Oradea, 10 P-ta 1 Decembrie, 410073 Oradea, Romania.

Advanced Materials Research Laboratory, University of Oradea, 1 University Street, 410087 Oradea, Romania.

出版信息

Materials (Basel). 2021 Feb 11;14(4):863. doi: 10.3390/ma14040863.

Abstract

The efficiency of amniotic membrane (AM) transplantation in different types of ocular surface disorders is due to its outstanding properties such as antifibrotic, antibacterial, anti-inflammatory and antiangiogenic, working as a versatile scaffold to promote corneal tissue epithelialization. A proper preparation, preservation and clinical application are crucial for the best outcomes in the treatment of different severe ocular disorders, taking into account its fragility. In this context, by combining high-sensitivity tools such as atomic force microscopy (AFM) and Fourier transform infrared (FTIR) spectroscopy with histological and immunohistochemical examination, we aimed to investigate the ultrastructural modifications of the amniotic membrane (AM) upon UV exposure and/or antibiotic treatment, with relevance for clinical applications in ocular surface surgery. From the morphological point of view, we noticed a loss of cuboidal cells in the basal membrane, accompanied by the splitting of collagen fibers upon UV and/or gentamicin treatment, while structural alteration of proteins was evidenced by the FTIR quantitative analysis of the secondary structure. A decrease in α-helix and β-sheet content, accompanied by increased content in less ordered structures (turns, random and side chains), was noticed after all the treatments. At the nano-scale, AFM details showed modifications of collagen fibrils in terms of their thickness and network compaction upon gentamicin and/or UV treatment. The enzymatic digestion assay demonstrated that UV exposure significantly reduces the degradation rate of the AM, while gentamicin treatment promotes an accelerated enzymatic digestion upon UV exposure. In order to highlight the clinical impact of the research, a clinical case is presented showing the relevance of amniotic membrane transplantation in pterygium surgery.

摘要

羊膜(AM)移植在不同类型眼表疾病中的有效性归因于其出色的特性,如抗纤维化、抗菌、抗炎和抗血管生成,它作为一种多功能支架促进角膜组织上皮化。考虑到羊膜的脆弱性,适当的制备、保存和临床应用对于治疗不同严重眼疾取得最佳效果至关重要。在此背景下,通过将原子力显微镜(AFM)和傅里叶变换红外(FTIR)光谱等高灵敏度工具与组织学和免疫组织化学检查相结合,我们旨在研究紫外线暴露和/或抗生素处理后羊膜(AM)的超微结构改变,这与眼表手术的临床应用相关。从形态学角度来看,我们注意到在紫外线和/或庆大霉素处理后,基底膜中的立方体细胞丢失,同时胶原纤维出现分裂,而蛋白质的结构改变通过二级结构的FTIR定量分析得以证实。在所有处理后,均观察到α-螺旋和β-折叠含量减少,同时无序结构(转角、随机结构和侧链)的含量增加。在纳米尺度上,AFM细节显示庆大霉素和/或紫外线处理后胶原纤维在厚度和网络致密性方面发生了改变。酶消化试验表明,紫外线暴露显著降低了羊膜的降解速率,而庆大霉素处理则促进了紫外线暴露后羊膜的加速酶消化。为了突出该研究的临床影响,本文展示了一个临床病例,表明羊膜移植在翼状胬肉手术中的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da3c/7917607/30e7342cb016/materials-14-00863-g001.jpg

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