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Imaging the mammary gland and mammary tumours in 3D: optical tissue clearing and immunofluorescence methods

机译:在3D中成像乳腺和乳腺肿瘤:光学组织清除和免疫荧光方法

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High-resolution 3D imaging of intact tissue facilitates cellular and subcellular analyses of complex structures within their native environment. However, difficulties associated with immunolabelling and imaging fluorescent proteins deep within whole organs have restricted their applications to thin sections or processed tissue preparations, precluding comprehensive and rapid 3D visualisation. Several tissue clearing methods have been established to circumvent issues associated with depth of imaging in opaque specimens. The application of these techniques to study the elaborate architecture of the mouse mammary gland has yet to be investigated. Multiple tissue clearing methods were applied to intact virgin and lactating mammary glands, namely 3D imaging of solvent-cleared organs, see deep brain (seeDB), clear unobstructed brain imaging cocktails (CUBIC) and passive clarity technique. Using confocal, two-photon and light sheet microscopy, their compatibility with whole-mount immunofluorescent labelling and 3D imaging of mammary tissue was examined. In addition, their suitability for the analysis of mouse mammary tumours was also assessed. Varying degrees of optical transparency, tissue preservation and fluorescent signal conservation were observed between the different clearing methods. SeeDB and CUBIC protocols were considered superior for volumetric fluorescence imaging and whole-mount histochemical staining, respectively. Techniques were compatible with 3D imaging on a variety of platforms, enabling visualisation of mammary ductal and lobulo-alveolar structures at vastly improved depths in cleared tissue. The utility of whole-organ tissue clearing protocols was assessed in the mouse mammary gland. Most methods utilised affordable and widely available reagents, and were compatible with standard confocal microscopy. These techniques enable high-resolution, 3D imaging and phenotyping of mammary cells and tumours in situ, and will significantly enhance our understanding of both normal and pathological mammary gland development.
机译:完整组织的高分辨率3D成像促进了本地环境内的复杂结构的细胞和亚细胞分析。然而,与整个器官内部深度的免疫标签和成像荧光蛋白相关的困难限制了它们的应用在薄切片或加工的组织制剂中,妨碍了全面和快速的3D可视化。已经建立了几种组织清除方法,以规避与不透明标本中成像的深度相关的问题。这些技术的应用研究了小鼠乳腺的精心建筑尚未得到调查。将多种组织清除方法应用于完整的处女和泌乳乳腺,即溶剂清除器官的3D成像,见深脑(幼苗),清晰无障碍的脑成像鸡尾酒(立方)和被动透明技术。使用共聚焦,双光子和灯光片显微镜,检查它们与全挂载免疫荧光标记和3D成像的相容性被检查。此外,还评估了它们对小鼠乳腺肿瘤分析的适用性。在不同的清除方法之间观察到不同程度的光学透明度,组织保存和荧光信号节约。 SeedB和立方方案分别被认为是体积荧光成像和全架组织化学染色的优异。技术与各种平台上的3D成像兼容,从而使乳腺导管和鳞片状结构的可视化在清除组织中的大大提高深度。在小鼠乳腺中评估了整个器官组织清除方案的效用。大多数方法利用负担得起和广泛的可用试剂,并与标准的共聚焦显微镜相容。这些技术使乳腺细胞和肿瘤的高分辨率,3D成像和表型原位,并将显着提高我们对正常和病理乳腺发育的理解。

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