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Direct Raman imaging techniques for study of the subcellular distribution of a drug

机译:直接拉曼成像技术用于研究药物的亚细胞分布

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摘要

Direct Raman imaging techniques are demonstrated to study the drug distribution in living cells. The advantage of Raman imaging is that no external markers are required, which simplifies the sample preparation and minimally disturbs the drug mechanism during imaging. The major challenge in Raman imaging is the weak Raman signal. In this study, we present a Raman image model to describe the degradation of Raman signals by imaging processes. Using this model, we demonstrate special-purpose image-processing algorithms to restore the Raman images. The processing techniques are then applied to visualize the anticancer agent paclitaxel in living MDA-435 breast cancer cells. Raman images were obtained from a cancer cell before, during, and after drug treatment. The paclitaxel distribution illustrated in these images is explained by means of the binding characteristics of the paclitaxel and its molecular target—the microtubules. This result demonstrates that direct Raman imaging is a promising tool to study the distribution of a drug in living cells.
机译:已证明直接拉曼成像技术可研究药物在活细胞中的分布。拉曼成像的优点是不需要外部标记,从而简化了样品制备过程,并且在成像过程中对药物机理的影响最小。拉曼成像的主要挑战是微弱的拉曼信号。在这项研究中,我们提出了一个拉曼图像模型来描述成像过程中拉曼信号的衰减。使用此模型,我们演示了用于还原拉曼图像的专用图像处理算法。然后将加工技术应用于可视化的MDA-435乳腺癌细胞中的抗癌药紫杉醇。拉曼图像是在药物治疗之前,之中和之后从癌细胞获得的。这些图像中显示的紫杉醇分布是通过紫杉醇及其分子靶标(微管)的结合特性来解释的。该结果表明直接拉曼成像是研究活细胞中药物分布的有前途的工具。

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