Suppr超能文献

用于细胞内斑点无标记成像的象限暗场(QDF)。

Quadrant darkfield (QDF) for label-free imaging of intracellular puncta.

作者信息

Moustafa Tarek E, Belote Rachel L, Polanco Edward R, Judson-Torres Robert L, Zangle Thomas A

机构信息

University of Utah, Department of Chemical Engineering, Salt Lake City, Utah, United States.

University of Utah, Huntsman Cancer Institute, Salt Lake City, Utah, United States.

出版信息

bioRxiv. 2024 Aug 7:2024.08.05.606686. doi: 10.1101/2024.08.05.606686.

Abstract

SIGNIFICANCE

Measuring changes in cellular structure and organelles is crucial for understanding disease progression and cellular responses to treatments. A label-free imaging method can aid in advancing biomedical research and therapeutic strategies.

AIM

This study introduces a computational darkfield imaging approach named quadrant darkfield (QDF) to separate smaller cellular features from large structures, enabling label-free imaging of cell organelles and structures in living cells.

APPROACH

Using a programmable LED array as illumination source, we vary the direction of illumination to encode additional information about the feature size within cells. This is possible due to the varying level of directional scattering produced by features based on their sizes relative to the wavelength of light used.

RESULTS

QDF successfully resolved small cellular features without interference from larger structures. QDF signal is more consistent during cell shape changes than traditional darkfield. QDF signals correlate with flow cytometry side scatter measurements, effectively differentiating cells by organelle content.

CONCLUSIONS

QDF imaging enhances the study of subcellular structures in living cells, offering improved quantification of organelle content compared to darkfield without labels. This method can be simultaneously performed with other techniques such as quantitative phase imaging to generate a multidimensional picture of living cells in real-time.

摘要

意义

测量细胞结构和细胞器的变化对于理解疾病进展以及细胞对治疗的反应至关重要。一种无标记成像方法有助于推动生物医学研究和治疗策略的发展。

目的

本研究引入一种名为象限暗场(QDF)的计算暗场成像方法,以将较小的细胞特征与大结构分离,从而实现对活细胞中细胞器和结构的无标记成像。

方法

使用可编程LED阵列作为照明源,我们改变照明方向以编码有关细胞内特征大小的额外信息。这是可行的,因为基于其相对于所用光波长的大小,特征产生的方向散射水平会有所不同。

结果

QDF成功分辨出小的细胞特征,而不受大结构的干扰。在细胞形状变化期间,QDF信号比传统暗场更一致。QDF信号与流式细胞术侧向散射测量相关,可有效根据细胞器含量区分细胞。

结论

QDF成像增强了对活细胞中亚细胞结构的研究,与无标记暗场相比,能更好地定量细胞器含量。该方法可与定量相成像等其他技术同时进行,以实时生成活细胞的多维图像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/559f/11326191/868851a8b0e0/nihpp-2024.08.05.606686v1-f0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验