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低成本光流附加装置使传统宽场显微镜能够快速选择性平面照明显微观察秀丽隐杆线虫。

Low-cost optofluidic add-on enables rapid selective plane illumination microscopy of C. elegans with a conventional wide-field microscope.

机构信息

York University, Lassonde School of Engineering, Department of Mechanical Engineering, Toronto, Canada.

出版信息

J Biomed Opt. 2021 Dec;26(12). doi: 10.1117/1.JBO.26.12.126501.

Abstract

SIGNIFICANCE

Selective plane illumination microscopy (SPIM) is an emerging fluorescent imaging technique suitable for noninvasive volumetric imaging of C. elegans. These promising microscopy systems, however, are scarce in academic and research institutions due to their high cost and technical complexities. Simple and low-cost solutions that enable conversion of commonplace wide-field microscopes to rapid SPIM platforms promote widespread adoption of SPIM by biologist for studying neuronal expressions of C. elegans.

AIM

We sought to develop a simple and low-cost optofluidic add-on device that enables rapid and immobilization-free volumetric SPIM imaging of C. elegans with conventional fluorescent microscopes.

APPROACH

A polydimethylsiloxane (PDMS)-based device with integrated optical and fluidic elements was developed as a low-cost and miniaturized SPIM add-on for the conventional wide-field microscope. The developed optofluidic chip contained an integrated PDMS cylindrical lens for on-chip generation of the light-sheet across a microchannel. Cross-sectional SPIM images of C. elegans were continuously acquired by the native objective of microscope as worms flowed in an L-shape microchannel and through the light sheet.

RESULTS

On-chip SPIM imaging of C. elegans strains demonstrated possibility of visualizing the entire neuronal system in few seconds at single-neuron resolution, with high contrast and without worm immobilization. Volumetric visualization of neuronal system from the acquired cross-sectional two-dimensional images is also demonstrated, enabling the standard microscope to acquire three-dimensional fluorescent images of C. elegans. The full-width at half-maximum width of the point spread function was measured as 1.1 and 2.4  μm in the lateral and axial directions, respectively.

CONCLUSION

The developed low-cost optofluidic device is capable of continuous SPIM imaging of C. elegans model organism with a conventional fluorescent microscope, at high speed, and with single neuron resolution.

摘要

意义

选择平面照明显微镜(SPIM)是一种新兴的荧光成像技术,适用于秀丽隐杆线虫的非侵入性体积成像。然而,由于其高成本和技术复杂性,这些有前途的显微镜系统在学术和研究机构中仍然很少见。简单且低成本的解决方案,能够将常见的宽场显微镜转换为快速 SPIM 平台,促进了 SPIM 在生物学家中广泛用于研究秀丽隐杆线虫的神经元表达。

目的

我们试图开发一种简单且低成本的光流体附加装置,该装置能够使用常规荧光显微镜对秀丽隐杆线虫进行快速和无固定的体积 SPIM 成像。

方法

开发了一种基于聚二甲基硅氧烷(PDMS)的设备,该设备具有集成的光学和流体元件,作为常规宽场显微镜的低成本和小型化 SPIM 附加装置。所开发的光流体芯片包含集成的 PDMS 柱面透镜,用于在微通道上产生光片。当线虫在 L 形微通道中流动并穿过光片时,通过显微镜的固有物镜连续获取线虫的横截面 SPIM 图像。

结果

对线虫品系的片上 SPIM 成像表明,有可能在几秒钟内以单细胞分辨率可视化整个神经元系统,具有高对比度且无需固定线虫。从获得的二维横截面图像中还可以进行神经元系统的体积可视化,从而使标准显微镜能够获取秀丽隐杆线虫的三维荧光图像。在横向和轴向方向上,点扩散函数的全宽半最大值分别测量为 1.1 和 2.4 μm。

结论

所开发的低成本光流体装置能够使用常规荧光显微镜以高速和单神经元分辨率连续对秀丽隐杆线虫模型生物进行 SPIM 成像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c36a/8664272/625f93f9de8d/JBO-026-126501-g001.jpg

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