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Comparison of different tissue clearing methods and 3D imaging techniques for visualization of GFP-expressing mouse embryos and embryonic hearts

机译:比较各种组织清除方法和3D成像技术以可视化表达GFP的小鼠胚胎和胚胎心脏

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Our goal was to find an optimal tissue clearing protocol for whole-mount imaging of embryonic and adult hearts and whole embryos of transgenic mice that would preserve green fluorescent protein GFP fluorescence and permit comparison of different currently available 3D imaging modalities. We tested various published organic solvent- or water-based clearing protocols intended to preserve GFP fluorescence in central nervous system: tetrahydrofuran dehydration and dibenzylether protocol (DBE), SCALE, CLARITY, and CUBIC and evaluated their ability to render hearts and whole embryos transparent. DBE clearing protocol did not preserve GFP fluorescence; in addition, DBE caused considerable tissue-shrinking artifacts compared to the gold standard BABB protocol. The CLARITY method considerably improved tissue transparency at later stages, but also decreased GFP fluorescence intensity. The SCALE clearing resulted in sufficient tissue transparency up to ED12.5; at later stages the useful depth of imaging was limited by tissue light scattering. The best method for the cardiac specimens proved to be the CUBIC protocol, which preserved GFP fluorescence well, and cleared the specimens sufficiently even at the adult stages. In addition, CUBIC decolorized the blood and myocardium by removing tissue iron. Good 3D renderings of whole fetal hearts and embryos were obtained with optical projection tomography and selective plane illumination microscopy, although at resolutions lower than with a confocal microscope. Comparison of five tissue clearing protocols and three imaging methods for study of GFP mouse embryos and hearts shows that the optimal method depends on stage and level of detail required.
机译:我们的目标是为胚胎和成年心脏的整体安装成像以及转基因小鼠的整个胚胎找到一种最佳的组织清除方案,该方案将保留绿色荧光蛋白GFP荧光并允许比较当前不同的3D成像方式。我们测试了多种旨在维持中枢神经系统中GFP荧光的有机溶剂或水基清除方案:四氢呋喃脱水和二苄醚方案(DBE),SCALE,CLARITY和CUBIC,并评估了它们使心脏和整个胚胎透明的能力。 DBE清除协议未保留GFP荧光;此外,与黄金标准的BABB协议相比,DBE造成了大量的组织收缩伪像。 CLARITY方法可在后期显着提高组织透明度,但也会降低GFP荧光强度。 SCALE清除可产生足够的组织透明度,最高可达ED12.5。在后期,有用的成像深度受到组织光散射的限制。证明心脏标本的最佳方法是CUBIC方案,该方案能很好地保留GFP荧光,甚至在成年阶段也能充分清除标本。此外,CUBIC通过去除组织铁使血液和心肌脱色。尽管光学分辨率低于共聚焦显微镜,但通过光学投影层析成像和选择性平面照明显微镜可以得到整个胎儿心脏和胚胎的良好3D渲染。对用于研究GFP小鼠胚胎和心脏的五种组织清除方案和三种成像方法的比较表明,最佳方法取决于所需细节的阶段和水平。

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