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Multiphoton microscopy for imaging infectious keratitis: demonstration of the pattern of microbial spread in an experimental model

机译:用于成像传染性角膜炎的多光子显微镜:在实验模型中的微生物传播模式的示范

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The purpose of this study is to assess the application of multiphoton fluorescence and second harmonic generation (SHG) microscopy for imaging and monitoring the disease progress of infectious keratitis in an experimental model, and to investigate the possible correlation of tissue architecture with spreading patterns of pathogens in an experimental model. Porcine eyes are to be obtained from slaughter house and processed and placed in organ culture system. Fungal infections by common pathogens of infectious keratitis are to be induced in porcine cornea buttons. Multiphoton fluorescence and SHG microscopy will be used for imaging and for monitoring the progression and extension of tissue destruction and possibly the pattern of pathogen spreading. We found that SHG imaging is useful in identifying alterations to collagen architecture while autofluorescence microscopy can be used to visualize the fungi and cells within the stroma. In summary, multiphoton fluorescence and second harmonic generation microscopy can non-invasively demonstrate and monitor tissue destruction associated with infectious keratitis. The pattern of pathogen spreading and its correlation with the tissue architecture can also be shown, which can be useful for future studies of the tissue-microbial interactions for infectious keratitis.
机译:本研究的目的是评估多选荧光和二次谐波产生(SHG)显微镜的应用,以进行成像和监测在实验模型中传染性角膜炎的疾病进展,并调查组织建筑与病原体蔓延模式的可能相关性在实验模型中。猪眼将从屠宰场获得并加工并放入器官培养系统中。通过感染性角膜炎的常见病原体的真菌感染将在猪角膜纽扣中诱导。多光子荧光和SHG显微镜将用于成像,并用于监测组织破坏的进展和延长,并可能是病原体蔓延的模式。我们发现SHG成像可用于识别对胶原型架构的改变,而自发荧光显微镜可用于可视化基质内的真菌和细胞。总之,多选荧光和二次谐波产生显微镜可以非侵入地证明和监测与传染性角膜炎相关的组织破坏。还可以示出病原体蔓延的模式及其与组织结构的相关性,这对于未来对传染性角膜炎的组织微生物相互作用的研究可有用。

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