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一种用于细胞动力学多尺度高通量定量相成像和高内涵分子表征的全尺度显微镜。

An Omni-Mesoscope for multiscale high-throughput quantitative phase imaging of cellular dynamics and high-content molecular characterization.

作者信息

Ma Hongqiang, Chen Maomao, Xu Jianquan, Zhao Yongxin, Liu Yang

出版信息

bioRxiv. 2024 Jul 19:2024.07.18.604137. doi: 10.1101/2024.07.18.604137.

DOI:10.1101/2024.07.18.604137
PMID:39071371
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11275778/
Abstract

The mesoscope has emerged as a powerful imaging tool in biomedical research, yet its high cost and low resolution have limited its broader application. Here, we introduce the Omni-Mesoscope, a cost-effective high-spatial-temporal, multimodal, and multiplex mesoscopic imaging platform built from cost-efficient off-the-shelf components. This system uniquely merges the capabilities of quantitative phase microscopy to capture live-cell dynamics over a large cell population with highly multiplexed fluorescence imaging for comprehensive molecular characterization. This integration facilitates simultaneous tracking of live-cell morphodynamics across thousands of cells, alongside high-content molecular analysis at the single-cell level. Furthermore, the Omni-Mesoscope offers a mesoscale field of view of approximately 5 mm with a high spatial resolution down to 700 nm, enabling the capture of information-rich images with detailed sub-cellular features. We demonstrate such capability in delineating molecular characteristics underlying rare dynamic cellular phenomena, such as cancer cell responses to chemotherapy and the emergence of polyploidy in drug-resistant cells. Moreover, the cost-effectiveness and the simplicity of our Omni-Mesoscope democratizes mesoscopic imaging, making it accessible across diverse biomedical research fields. To further demonstrate its versatility, we integrate expansion microscopy to enhance 3D volumetric super-resolution imaging of thicker tissues, opening new avenues for biological exploration at unprecedented scales and resolutions.

摘要

介观显微镜已成为生物医学研究中一种强大的成像工具,但其高成本和低分辨率限制了其更广泛的应用。在此,我们介绍全介观显微镜,这是一个具有成本效益的高时空、多模态和多重介观成像平台,由经济高效的现成组件构建而成。该系统独特地融合了定量相显微镜的功能,以捕获大量细胞群体中的活细胞动态,以及高度多重荧光成像,用于全面的分子表征。这种整合便于同时跟踪数千个细胞的活细胞形态动力学,以及单细胞水平的高内涵分子分析。此外,全介观显微镜提供了约5毫米的介观视野,空间分辨率高达700纳米,能够捕获具有详细亚细胞特征的信息丰富的图像。我们在描绘罕见动态细胞现象背后的分子特征时展示了这种能力,例如癌细胞对化疗的反应以及耐药细胞中多倍体的出现。此外,我们全介观显微镜的成本效益和简易性使介观成像得以普及,使其在不同的生物医学研究领域都能使用。为了进一步展示其多功能性,我们整合了扩展显微镜技术,以增强对较厚组织的三维体积超分辨率成像,为前所未有的规模和分辨率的生物学探索开辟了新途径。

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