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采用高速扫描离子电导显微镜对转移性肠道 3D 活体类器官的基底表面的纳米力学特性进行成像。

Mapping Nanomechanical Properties of Basal Surfaces in Metastatic Intestinal 3D Living Organoids with High-Speed Scanning Ion Conductance Microscopy.

机构信息

WPI Nano Life Science Institute (WPI-NanoLSI), Kanazawa University, Kakuma-machi, Kanazawa, 920-1192, Japan.

Division of Genetics, Cancer Research Institute, Kanazawa University, Kakuma-machi, Kanazawa, 920-1192, Japan.

出版信息

Small. 2023 Mar;19(9):e2206213. doi: 10.1002/smll.202206213. Epub 2022 Dec 11.

DOI:10.1002/smll.202206213
PMID:36504356
Abstract

Studying mechanobiology is increasing of scientific interests in life science and nanotechnology since its impact on cell activities (e.g., adhesion, migration), physiology, and pathology. The role of apical surface (AS) and basal surface (BS) of cells played in mechanobiology is significant. The mechanical mapping and analysis of cells mainly focus on AS while little is known about BS. Here, high-speed scanning ion conductance microscope as a powerful tool is utilized to simultaneously reveal morphologies and local elastic modulus (E) of BS of genotype-defined metastatic intestinal organoids. A simple method is developed to prepare organoid samples allowing for long-term BS imaging. The multiple nano/microstructures, i.e., ridge-like, stress-fiber, and E distributions on BS are dynamically revealed. The statistic E analysis shows softness of BS derived from eight types of organoids following a ranking: malignant tumor cells > benign tumor cells > normal cells. Moreover, the correlation factor between morphology and E is demonstrated depending on cell types. This work as first example reveals the subcellular morphologies and E distributions of BS of cells. The results would provide a clue for correlating genotype of 3D cells to malignant phenotype reflected by E and offering a promising strategy for early-stage diagnosis of cancer.

摘要

研究机械生物学在生命科学和纳米技术方面越来越受到科学界的关注,因为它对细胞活动(如黏附、迁移)、生理学和病理学都有影响。细胞的顶表面(AS)和底表面(BS)在机械生物学中的作用非常重要。细胞的力学绘图和分析主要集中在 AS 上,而对 BS 的了解甚少。在这里,高速扫描离子电导显微镜作为一种强大的工具,被用于同时揭示基因型定义的转移性肠类器官 BS 的形态和局部弹性模量(E)。开发了一种简单的方法来制备类器官样品,允许进行长期的 BS 成像。动态揭示了 BS 上的多个纳米/微结构,如脊状、应力纤维和 E 分布。统计 E 分析显示,来自八种类型类器官的 BS 的柔软度依次为:恶性肿瘤细胞 > 良性肿瘤细胞 > 正常细胞。此外,还根据细胞类型证明了形态和 E 之间的相关因素。这项工作作为第一个例子,揭示了细胞 BS 的亚细胞形态和 E 分布。研究结果将为将 3D 细胞的基因型与 E 反映的恶性表型相关联提供线索,并为癌症的早期诊断提供有前景的策略。

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