Literature DB >> 28904062

Optical Coherence Tomography Detects Necrotic Regions and Volumetrically Quantifies Multicellular Tumor Spheroids.

Yongyang Huang1, Shunqiang Wang2, Qiongyu Guo1, Sarah Kessel3, Ian Rubinoff1, Leo Li-Ying Chan3, Peter Li3, Yaling Liu2,4, Jean Qiu3, Chao Zhou5,4,6.   

Abstract

Three-dimensional (3D) tumor spheroid models have gained increased recognition as important tools in cancer research and anticancer drug development. However, currently available imaging approaches used in high-throughput screening drug discovery platforms, for example, bright-field, phase contrast, and fluorescence microscopies, are unable to resolve 3D structures deep inside (>50 μm) tumor spheroids. In this study, we established a label-free, noninvasive optical coherence tomography (OCT) imaging platform to characterize 3D morphologic and physiologic information of multicellular tumor spheroids (MCTS) growing from approximately 250 to 600 μm in height over 21 days. In particular, tumor spheroids of two cell lines, glioblastoma (U-87MG) and colorectal carcinoma (HCT116), exhibited distinctive evolutions in their geometric shapes at late growth stages. Volumes of MCTS were accurately quantified using a voxel-based approach without presumptions of their geometries. In contrast, conventional diameter-based volume calculations assuming perfect spherical shape resulted in large quantification errors. Furthermore, we successfully detected necrotic regions within these tumor spheroids based on increased intrinsic optical attenuation, suggesting a promising alternative of label-free viability tests in tumor spheroids. Therefore, OCT can serve as a promising imaging modality to characterize morphologic and physiologic features of MCTS, showing great potential for high-throughput drug screening. Cancer Res; 77(21); 6011-20. ©2017 AACR. ©2017 American Association for Cancer Research.

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Year:  2017        PMID: 28904062      PMCID: PMC5866924          DOI: 10.1158/0008-5472.CAN-17-0821

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  49 in total

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

Authors:  O J Klein; Y K Jung; C L Evans
Journal:  Methods       Date:  2013-09-03       Impact factor: 3.608

Review 5.  Optical coherence tomography today: speed, contrast, and multimodality.

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Journal:  J Biomed Opt       Date:  2014       Impact factor: 3.170

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7.  Optimized single-step optical clearing solution for 3D volume imaging of biological structures.

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8.  Non-Destructive Tumor Aggregate Morphology and Viability Quantification at Cellular Resolution, During Development and in Response to Drug.

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10.  Three-dimensional virtual histology in unprocessed resected tissues with photoacoustic remote sensing (PARS) microscopy and optical coherence tomography (OCT).

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