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头颈部癌类器官的代谢成像

Metabolic Imaging of Head and Neck Cancer Organoids.

作者信息

Shah Amy T, Heaster Tiffany M, Skala Melissa C

机构信息

Department of Biomedical Engineering, Vanderbilt University, Nashville, TN, United States of America.

Department of Biomedical Engineering, University of Wisconsin, Madison, WI, United States of America.

出版信息

PLoS One. 2017 Jan 18;12(1):e0170415. doi: 10.1371/journal.pone.0170415. eCollection 2017.

Abstract

Head and neck cancer patients suffer from toxicities, morbidities, and mortalities, and these ailments could be minimized through improved therapies. Drug discovery is a long, expensive, and complex process, so optimized assays can improve the success rate of drug candidates. This study applies optical imaging of cell metabolism to three-dimensional in vitro cultures of head and neck cancer grown from primary tumor tissue (organoids). This technique is advantageous because it measures cell metabolism using intrinsic fluorescence from NAD(P)H and FAD on a single cell level for a three-dimensional in vitro model. Head and neck cancer organoids are characterized alone and after treatment with standard therapies, including an antibody therapy, a chemotherapy, and combination therapy. Additionally, organoid cellular heterogeneity is analyzed quantitatively and qualitatively. Gold standard measures of treatment response, including cell proliferation, cell death, and in vivo tumor volume, validate therapeutic efficacy for each treatment group in a parallel study. Results indicate that optical metabolic imaging is sensitive to therapeutic response in organoids after 1 day of treatment (p<0.05) and resolves cell subpopulations with distinct metabolic phenotypes. Ultimately, this platform could provide a sensitive high-throughput assay to streamline the drug discovery process for head and neck cancer.

摘要

头颈癌患者会遭受毒性反应、发病和死亡,而这些病症可通过改进治疗方法得以减轻。药物研发是一个漫长、昂贵且复杂的过程,因此优化的检测方法能够提高候选药物的成功率。本研究将细胞代谢的光学成像应用于由原发性肿瘤组织(类器官)培养的头颈癌三维体外培养物。这项技术具有优势,因为它在三维体外模型的单细胞水平上利用来自NAD(P)H和FAD的固有荧光来测量细胞代谢。对头颈癌类器官单独进行表征,并在接受包括抗体疗法、化疗和联合疗法在内的标准治疗后进行表征。此外,还对类器官的细胞异质性进行了定量和定性分析。在一项平行研究中,采用包括细胞增殖、细胞死亡和体内肿瘤体积等治疗反应的金标准测量方法,验证了每个治疗组的治疗效果。结果表明,光学代谢成像在治疗1天后对类器官中的治疗反应敏感(p<0.05),并能分辨出具有不同代谢表型的细胞亚群。最终,该平台可为简化头颈癌药物研发过程提供一种灵敏的高通量检测方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cca/5242529/405a72285437/pone.0170415.g001.jpg

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