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Longitudinal, quantitative monitoring of therapeutic response in 3D in vitro tumor models with OCT for high-content therapeutic screening

机译:纵向,定量监测OCT在3D体外肿瘤模型中的治疗反应,以进行高含量的治疗筛选

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摘要

In vitro three-dimensional models of cancer have the ability to recapitulate many features of tumors found in vivo, including cell-cell and cell-matrix interactions, microenvironments that become hypoxic and acidic, and other barriers to effective therapy. These model tumors can be large, highly complex, heterogeneous, and undergo time-dependent growth and treatment response processes that are difficult to track and quantify using standard imaging tools. Optical coherence tomography is an optical ranging technique that is ideally suited for visualizing, monitoring, and quantifying the growth and treatment response dynamics occurring in these informative model systems. By optimizing both optical coherence tomography and 3D culture systems, it is possible to continuously and non-perturbatively monitor advanced in vitro models without the use of labels over the course of hours and days. In this chapter, we describe approaches and methods for creating and carrying out quantitative therapeutic screens with in vitro 3D cultures using optical coherence tomography to gain insights into therapeutic mechanisms and build more effective treatment regimens.
机译:癌症的体外三维模型具有概括体内发现的肿瘤许多特征的能力,包括细胞-细胞和细胞-基质相互作用,低氧和酸性的微环境以及有效治疗的其他障碍。这些模型肿瘤可能很大,高度复杂,异质,并经历了时间依赖性的生长和治疗反应过程,这些过程很难使用标准的成像工具进行追踪和量化。光学相干断层扫描是一种光学测距技术,非常适合可视化,监视和量化这些信息模型系统中发生的生长和治疗响应动态。通过优化光学相干断层扫描和3D培养系统,可以在数小时和数天的时间内不使用标签就可以连续且无扰动地监控先进的体外模型。在本章中,我们描述了使用光学相干层析成像技术创建和执行体外3D培养物定量治疗屏幕的方法和方法,以深入了解治疗机制并建立更有效的治疗方案。

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