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相关荧光和原子力显微镜推进活细胞共培养的生物物理特性研究。

Correlative fluorescence and atomic force microscopy to advance the bio-physical characterisation of co-culture of living cells.

机构信息

INL - International Iberian Nanotechnology Laboratory, Avenida Mestre José Veiga, 4715-330, Braga, Portugal.

INL - International Iberian Nanotechnology Laboratory, Avenida Mestre José Veiga, 4715-330, Braga, Portugal.

出版信息

Biochem Biophys Res Commun. 2020 Aug 20;529(2):392-397. doi: 10.1016/j.bbrc.2020.06.037. Epub 2020 Jul 1.

Abstract

An understanding of the cell mechanical properties involved in numerous cellular processes including cell division, cell migration/invasion, and cell morphology, is crucial in developing and informing cell physiology and function. Atomic force microscopy (AFM) offers a powerful biophysical technique that facilitates the imaging of living cells under physiological buffer conditions. However, AFM in isolation cannot discriminate between different cell types within heterogeneous samples for example in a solid biopsy. The current studies demonstrate the potential of AFM in combination with correlative fluorescence optical sectioning microscopy for live cell imaging. Furthermore, this work establishes the advantage of fluorescence-AFM imaging to distinguish and analyse single-cell bio-physical properties in mixed human cell populations, in real-time. Critically, our results show that correlative fluorescence-AFM imaging allows the simultaneous co-localised detection of fluorescence coupled with nano-mechanical mapping. The findings from this work contribute to the promotion and dissemination of correlative multimodal imaging in life sciences, providing a platform for further investigations in biological and pre-clinical research.

摘要

理解细胞力学特性对于许多细胞过程至关重要,包括细胞分裂、细胞迁移/侵袭和细胞形态,这对于发展和了解细胞生理学和功能至关重要。原子力显微镜(AFM)提供了一种强大的生物物理技术,可以在生理缓冲条件下对活细胞进行成像。然而,AFM 本身无法在异质样本(例如在固体活检中)中区分不同的细胞类型。目前的研究表明,AFM 结合相关的荧光光学切片显微镜在活细胞成像方面具有潜力。此外,这项工作确立了荧光-AFM 成像在实时区分和分析混合人群中单细胞生物物理特性方面的优势。至关重要的是,我们的结果表明,相关荧光-AFM 成像允许荧光与纳米力学映射的同时共定位检测。这项工作的结果有助于促进和传播生命科学中的相关多模态成像,为生物和临床前研究中的进一步研究提供了一个平台。

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