Li Wenling, Mukouyama Yoh-suke
Laboratory of Stem Cell and Neuro-Vascular Biology, Genetics and Developmental Biology Center, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD 20892, USA.
J Vis Exp. 2011 May 20(51):2620. doi: 10.3791/2620.
Whole-mount immunohistochemical analysis for imaging the entire vasculature is pivotal for understanding the cellular mechanisms of branching morphogenesis. We have developed the limb skin vasculature model to study vascular development in which a pre-existing primitive capillary plexus is reorganized into a hierarchically branched vascular network. Whole-mount confocal microscopy with multiple labelling allows for robust imaging of intact blood vessels as well as their cellular components including endothelial cells, pericytes and smooth muscle cells, using specific fluorescent markers. Advances in this limb skin vasculature model with genetic studies have improved understanding molecular mechanisms of vascular development and patterning. The limb skin vasculature model has been used to study how peripheral nerves provide a spatial template for the differentiation and patterning of arteries. This video article describes a simple and robust protocol to stain intact blood vessels with vascular specific antibodies and fluorescent secondary antibodies, which is applicable for vascularized embryonic organs where we are able to follow the process of vascular development.
用于对整个脉管系统进行成像的全组织免疫组化分析对于理解分支形态发生的细胞机制至关重要。我们开发了肢体皮肤脉管系统模型来研究血管发育,在该模型中,预先存在的原始毛细血管丛会重新组织成层次分支的血管网络。使用特定荧光标记的多重标记全组织共聚焦显微镜能够对完整血管及其细胞成分(包括内皮细胞、周细胞和平滑肌细胞)进行清晰成像。该肢体皮肤脉管系统模型与遗传学研究的进展增进了我们对血管发育和模式形成分子机制的理解。肢体皮肤脉管系统模型已被用于研究外周神经如何为动脉的分化和模式形成提供空间模板。这篇视频文章描述了一种简单且可靠的方案,用于用血管特异性抗体和荧光二抗对完整血管进行染色,该方案适用于我们能够追踪血管发育过程的血管化胚胎器官。