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Chemical Composition and Sulfur Speciation in Bulk Tissue by X-Ray Spectroscopy and X-Ray Microscopy: Corneal Development during Embryogenesis

机译:X射线光谱和X射线显微镜检查大块组织中的化学成分和硫形态:胚胎发生过程中的角膜发育。

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摘要

The chemical composition and sulfur (S) speciation of developing chick corneas at embryonic days 12, 14, and 16 were investigated using synchrotron scanning x-ray fluorescence microscopy and x-ray absorption near-edge structure spectroscopy. The aim was to develop techniques for the analysis of bulk tissue and identify critical physicochemical variations that correlate with changes in corneal structure-function relationships. Derived data were subjected to principal component analysis and linear discriminant analysis, which highlighted differences in the elemental and S species composition at different stages of embryonic growth. Notably, distinct elemental compositions of chlorine, potassium, calcium, phosphorus, and S altered with development during the transition of the immature opaque cornea to a mature transparent tissue. S  structure spectroscopy revealed developmentally regulated alterations in thiols, organic monosulfides, ester sulfate, and inorganic sulfate species. The transient molecular structures and compositional changes reported here provide a deeper understanding of the underlying basis of corneal development during the acquisition of transparency. The experimental and analytical approach is new, to our knowledge, and has wide potential applicability in the life sciences.
机译:使用同步加速器扫描X射线荧光显微镜和X射线吸收近边缘结构光谱研究了在胚胎第12、14和16天发育中的鸡角膜的化学成分和硫(S)形态。目的是开发用于分析大块组织并识别与角膜结构-功能关系变化相关的关键理化变化的技术。对衍生数据进行主成分分析和线性判别分析,这突出了胚胎生长不同阶段元素和S物种组成的差异。值得注意的是,氯,钾,钙,磷和硫的不同元素组成会随着未成熟不透明角膜向成熟透明组织过渡的过程而发生变化。 S结构光谱显示了硫醇,有机单硫化物,硫酸酯和无机硫酸盐物种的发育调控变化。本文报道的瞬态分子结构和组成变化使人们对透明性获得过程中角膜发育的基础有了更深入的了解。就我们所知,实验和分析方法是新的,并且在生命科学中具有广泛的潜在适用性。

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