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基于荧光的快速光学体积筛选系统(OVSS),用于检测多细胞生物。

Fluorescence based rapid optical volume screening system (OVSS) for interrogating multicellular organisms.

机构信息

Nanobioimaging Lab., Department of Instrumentation and Applied Physics, Indian Institute of Science, Bangalore, 560012, India.

Department of Molecular Reproduction, Development and Genetics, Indian Institute of Science, Bangalore, 560012, India.

出版信息

Sci Rep. 2021 Apr 7;11(1):7616. doi: 10.1038/s41598-021-86951-3.

Abstract

Continuous monitoring of large specimens for long durations requires fast volume imaging. This is essential for understanding the processes occurring during the developmental stages of multicellular organisms. One of the key obstacles of fluorescence based prolonged monitoring and data collection is photobleaching. To capture the biological processes and simultaneously overcome the effect of bleaching, we developed single- and multi-color lightsheet based OVSS imaging technique that enables rapid screening of multiple tissues in an organism. Our approach based on OVSS imaging employs quantized step rotation of the specimen to record 2D angular data that reduces data acquisition time when compared to the existing light sheet imaging system (SPIM). A co-planar multicolor light sheet PSF is introduced to illuminate the tissues labelled with spectrally-separated fluorescent probes. The detection is carried out using a dual-channel sub-system that can simultaneously record spectrally separate volume stacks of the target organ. Arduino-based control systems were employed to automatize and control the volume data acquisition process. To illustrate the advantages of our approach, we have noninvasively imaged the Drosophila larvae and Zebrafish embryo. Dynamic studies of multiple organs (muscle and yolk-sac) in Zebrafish for a prolonged duration (5 days) were carried out to understand muscle structuring (Dystrophin, microfibers), primitive Macrophages (in yolk-sac) and inter-dependent lipid and protein-based metabolism. The volume-based study, intensity line-plots and inter-dependence ratio analysis allowed us to understand the transition from lipid-based metabolism to protein-based metabolism during early development (Pharyngula period with a critical transition time, [Formula: see text] h post-fertilization) in Zebrafish. The advantage of multicolor lightsheet illumination, fast volume scanning, simultaneous visualization of multiple organs and an order-less photobleaching makes OVSS imaging the system of choice for rapid monitoring and real-time assessment of macroscopic biological organisms with microscopic resolution.

摘要

连续长时间监测大样本需要快速的体积成像。这对于理解多细胞生物发育阶段发生的过程至关重要。基于荧光的长时间监测和数据收集的一个关键障碍是荧光漂白。为了捕获生物过程并同时克服漂白的影响,我们开发了基于单/多色光片的 OVSS 成像技术,该技术能够在生物体中快速筛选多个组织。我们基于 OVSS 成像的方法采用标本的量化分步旋转来记录 2D 角度数据,与现有的光片成像系统 (SPIM) 相比,减少了数据采集时间。引入共面多色光片 PSF 来照亮用光谱分离荧光探针标记的组织。使用双通道子系统进行检测,该子系统可以同时记录目标器官的光谱分离体积堆栈。基于 Arduino 的控制系统用于自动化和控制体积数据采集过程。为了说明我们的方法的优势,我们对果蝇幼虫和斑马鱼胚胎进行了非侵入性成像。对斑马鱼的多个器官(肌肉和卵黄囊)进行了长达 5 天的长时间动态研究,以了解肌肉结构(肌营养不良蛋白、微纤维)、原始巨噬细胞(卵黄囊)和相互依赖的脂质和蛋白质代谢。基于体积的研究、强度线图和相互依赖比分析使我们能够理解在斑马鱼早期发育过程中(咽胚期,关键转变时间为[公式:见文本]小时后受精)从脂质代谢向蛋白质代谢的转变。多色光片照明、快速体积扫描、多个器官的同时可视化和无序的光漂白优势使 OVSS 成像成为快速监测和实时评估具有微观分辨率的宏观生物的首选系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e79/8027194/4f25522ae6a3/41598_2021_86951_Fig1_HTML.jpg

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