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OptoRheo:实时 3D 生物系统的原位微机械传感与成像。

OptoRheo: Simultaneous in situ micro-mechanical sensing and imaging of live 3D biological systems.

机构信息

Optics and Photonics Research Group, Faculty of Engineering, University of Nottingham, Nottingham, UK.

Nottingham Biodiscovery Institute, School of Medicine, University of Nottingham, Nottingham, UK.

出版信息

Commun Biol. 2023 Apr 28;6(1):463. doi: 10.1038/s42003-023-04780-8.

Abstract

Biomechanical cues from the extracellular matrix (ECM) are essential for directing many cellular processes, from normal development and repair, to disease progression. To better understand cell-matrix interactions, we have developed a new instrument named 'OptoRheo' that combines light sheet fluorescence microscopy with particle tracking microrheology. OptoRheo lets us image cells in 3D as they proliferate over several days while simultaneously sensing the mechanical properties of the surrounding extracellular and pericellular matrix at a sub-cellular length scale. OptoRheo can be used in two operational modalities (with and without an optical trap) to extend the dynamic range of microrheology measurements. We corroborated this by characterising the ECM surrounding live breast cancer cells in two distinct culture systems, cell clusters in 3D hydrogels and spheroids in suspension culture. This cutting-edge instrument will transform the exploration of drug transport through complex cell culture matrices and optimise the design of the next-generation of disease models.

摘要

细胞外基质(ECM)的生物力学线索对于指导许多细胞过程至关重要,从正常发育和修复到疾病进展。为了更好地理解细胞-基质相互作用,我们开发了一种名为“OptoRheo”的新仪器,它将光片荧光显微镜与粒子跟踪微流变学结合在一起。OptoRheo 使我们能够在细胞增殖数天的过程中对其进行 3D 成像,同时在亚细胞长度尺度上实时感测周围细胞外和细胞周基质的机械性能。OptoRheo 可以在两种操作模式(有和没有光学陷阱)下使用,以扩展微流变学测量的动态范围。我们通过在两种不同的培养系统中对活乳腺癌细胞周围的 ECM 进行特征描述来证实这一点,这两种培养系统分别是 3D 水凝胶中的细胞簇和悬浮培养中的球体。这种尖端仪器将改变对药物通过复杂细胞培养基质的传输的探索,并优化下一代疾病模型的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81f7/10147656/17405161db24/42003_2023_4780_Fig1_HTML.jpg

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