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一种新型形态计量系统,可自动评估肠道类器官的生长和再生。

A novel morphometry system automatically assessing the growth and regeneration of intestinal organoids.

机构信息

Institute of Combined Injury, State Key Laboratory of Trauma, Burns and Combined Injury, College of Preventive Medicine, Third Military Medical University, Gaotanyan Street 30(#), Shapingba, Chongqing, 400038, China.

Chongqing Health Center for Women and Children, China.

出版信息

Biochem Biophys Res Commun. 2018 Dec 2;506(4):1052-1058. doi: 10.1016/j.bbrc.2018.10.181. Epub 2018 Nov 5.

Abstract

As compared with 2D cell line cultures, 3D intestinal organoids are better at maximally recapitulating the physiological features of stem cells in vivo. However, the complex 3D structure is an obstacle which must be objectively and automatically evaluated to assess colony growth and regeneration. Meanwhile, no internal standard currently exists for evaluating the size of heterogeneities in organoids or defining those regenerating colonies. Herein, we developed a simple morphometry system to image MTT-stained organoids. The growth curve of organoids can be automatically generated based upon analyzing the integrated optical density using software. Referencing the definition standards of in vivo regenerating crypts, the perimeters of crypts cultured 24 h after seeding were selected as an "Organoid Unit" to further evaluate colony survival rate and colony size heterogeneities after exposure to varying doses of irradiation. Moreover, the morphometry-based quantification data collected confirmed other findings associated with radiation sensitizing effects of ataxia telangiectasia mutated (ATM) and ataxia telangiectasia and Rad3-related protein (ATR) inhibitor and the radiation protective effect of IL-22. In summary, the novel organoid morphometry system combined with a new internal reference is a practical means for standardizing assessment of growth, survival and regeneration of intestinal organoid colonies. This method has promise to facilitate drug screens in intestinal and other organoid systems.

摘要

与 2D 细胞系培养相比,3D 肠道类器官更能最大程度地重现体内干细胞的生理特征。然而,复杂的 3D 结构是一个必须客观自动评估的障碍,以评估集落的生长和再生。同时,目前还没有内部标准来评估类器官的异质性大小或定义那些正在再生的集落。在此,我们开发了一种简单的形态计量系统来对 MTT 染色的类器官进行成像。通过使用软件分析整合光密度,可以自动生成类器官的生长曲线。参照体内再生隐窝的定义标准,选择接种后 24 小时培养的隐窝周长作为“类器官单位”,以进一步评估在不同剂量辐射暴露下集落存活率和集落大小异质性。此外,基于形态计量学的定量数据进一步证实了与 ATM 和 ATR 抑制剂辐射增敏作用以及 IL-22 辐射保护作用相关的其他发现。总之,新型类器官形态计量系统结合新的内部参考是标准化评估肠道类器官集落生长、存活和再生的实用方法。该方法有望促进肠道和其他类器官系统的药物筛选。

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