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Structural and biochemical characterization of engineered tissue using FTIR spectroscopic imaging: melanoma progression as an example

机译:使用FTIR光谱成像的工程组织结构和生化特征:黑色素瘤进展作为示例

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Engineered tissue represents a convenient path to providing models for imaging and disease progression. The use of these models or phantoms is becoming increasingly prevalent. While structural characterization of these systems is well-documented, a combination of biochemical and structural knowledge is often helpful. Fourier transform infrared (FTIR) spectroscopic imaging is a rapidly emerging technique that combines the molecular selectivity of spectroscopy with the spatial specificity of optical microscopy. Here, we report on the application of FTIR spectroscopic for analysis of a melanoma model in engineered skin. We first characterize the biochemical properties, consistency and spectral changes in different layers of growing skin. Results provide simple indices for monitoring tissue consistency and reproducibility as a function of time. Second, we introduce malignant melanocytes to simulate tumor formation and growth. Both cellular changes associated with tumor formation and growth can be observed. FTIR images indicate holistic chemical changes during the tumor growth, allowing for the development of automated pathology protocols. FTIR imaging being non-destructive, further, samples remain entirely compatible with downstream tissue processing or staining. We specifically examined the correlation of structural changes, molecular content and reproducibility of the model systems. The development of analysis, integrating spectroscopy, imaging and computation will allow for quality control and standardization of both the structural and biochemical properties of tissue phantoms.
机译:工程化组织代表了提供成像和疾病进展的模型的方便路径。这些模型或幽灵的使用变得越来越普遍。虽然这些系统的结构表征是良好的记录,但生化和结构知识的组合往往是有帮助的。傅里叶变换红外(FTIR)光谱成像是一种快速新兴的技术,将光谱分子的分子选择性与光学显微镜的空间特异性结合起来。在这里,我们报告了FTIR光谱法在工程皮肤中对黑色素瘤模型分析的应用。我们首先表征生化性质,一致性和频谱变化在不同层状的皮肤上。结果提供了监测组织一致性和再现性的简单指标。其次,我们引入恶性黑素细胞以模拟肿瘤形成和生长。可以观察到与肿瘤形成和生长相关的细胞变化。 FTIR图像在肿瘤生长期间表明整体化学变化,从而允许开发自动化病理协议。 FTIR成像是非破坏性的,另外,样品与下游组织处理或染色保持完全相容。我们专门研究了模型系统的结构变化,分子内容和再现性的相关性。分析的发展,集成光谱,成像和计算将允许组织幽灵的结构和生化特性的质量控制和标准化。

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