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使用光学相干断层扫描对三维肿瘤球体进行纵向形态学和生理学监测。

Longitudinal Morphological and Physiological Monitoring of Three-dimensional Tumor Spheroids Using Optical Coherence Tomography.

作者信息

Huang Yongyang, Zou Jinyun, Badar Mudabbir, Liu Junchao, Shi Wentao, Wang Shunqiang, Guo Qiongyu, Wang Xiaofang, Kessel Sarah, Chan Leo Li-Ying, Li Peter, Liu Yaling, Qiu Jean, Zhou Chao

机构信息

Department of Electrical and Computer Engineering, Lehigh University.

Department of Bioengineering, Lehigh University.

出版信息

J Vis Exp. 2019 Feb 9(144). doi: 10.3791/59020.

Abstract

Tumor spheroids have been developed as a three-dimensional (3D) cell culture model in cancer research and anti-cancer drug discovery. However, currently, high-throughput imaging modalities utilizing bright field or fluorescence detection, are unable to resolve the overall 3D structure of the tumor spheroid due to limited light penetration, diffusion of fluorescent dyes and depth-resolvability. Recently, our lab demonstrated the use of optical coherence tomography (OCT), a label-free and non-destructive 3D imaging modality, to perform longitudinal characterization of multicellular tumor spheroids in a 96-well plate. OCT was capable of obtaining 3D morphological and physiological information of tumor spheroids growing up to about 600 µm in height. In this article, we demonstrate a high-throughput OCT (HT-OCT) imaging system that scans the whole multi-well plate and obtains 3D OCT data of tumor spheroids automatically. We describe the details of the HT-OCT system and construction guidelines in the protocol. From the 3D OCT data, one can visualize the overall structure of the spheroid with 3D rendered and orthogonal slices, characterize the longitudinal growth curve of the tumor spheroid based on the morphological information of size and volume, and monitor the growth of the dead-cell regions in the tumor spheroid based on optical intrinsic attenuation contrast. We show that HT-OCT can be used as a high-throughput imaging modality for drug screening as well as characterizing biofabricated samples.

摘要

肿瘤球体已被开发为癌症研究和抗癌药物发现中的三维(3D)细胞培养模型。然而,目前利用明场或荧光检测的高通量成像方式,由于光穿透有限、荧光染料扩散和深度分辨能力,无法解析肿瘤球体的整体3D结构。最近,我们实验室展示了使用光学相干断层扫描(OCT),一种无标记且无损的3D成像方式,对96孔板中的多细胞肿瘤球体进行纵向表征。OCT能够获取高度达约600 µm的肿瘤球体的3D形态和生理信息。在本文中,我们展示了一种高通量OCT(HT-OCT)成像系统,该系统可扫描整个多孔板并自动获取肿瘤球体的3D OCT数据。我们在方案中描述了HT-OCT系统的详细信息和构建指南。从3D OCT数据中,可以通过3D渲染和正交切片可视化球体的整体结构,根据大小和体积的形态信息表征肿瘤球体的纵向生长曲线,并基于光学固有衰减对比度监测肿瘤球体中死细胞区域的生长。我们表明,HT-OCT可作为药物筛选以及生物制造样品表征的高通量成像方式。

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