Montoro Rodrigo, Dickie Renee
Department of Biological Sciences, Towson University, 8000 York Road, Towson, MD 21252, USA.
MethodsX. 2017 Aug 30;4:265-273. doi: 10.1016/j.mex.2017.08.001. eCollection 2017.
The vascular system, the pipeline for oxygen and nutrient delivery to tissues, is essential for vertebrate development, growth, injury repair, and regeneration. With their capacity to regenerate entire appendages throughout their lifespan, axolotls are an unparalleled model for vertebrate regeneration, but they lack many of the molecular tools that facilitate vascular imaging in other animal models. The determination of vascular metrics requires high quality image data for the discrimination of vessels from background tissue. Quantification of the vasculature using perfused, cleared specimens is well-established in mammalian systems, but has not been widely employed in amphibians. The objective of this study was to optimize tissue preparation methods for the visualization of the microvascular network in axolotls, providing a basis for the quantification of regenerative angiogenesis. To accomplish this aim, we performed intracardiac perfusion of pigment-based contrast agents and evaluated aqueous and non-aqueous clearing techniques. The methods were verified by comparing the quality of the vascular images and the observable vascular density across treatment groups. Simple and inexpensive, these tissue processing techniques will be of use in studies assessing vascular growth and remodeling within the context of regeneration. Advantages of this method include: •Higher contrast of the vasculature within the 3D context of the surrounding tissue •Enhanced detection of microvasculature facilitating vascular quantification •Compatibility with other labeling techniques.
血管系统作为向组织输送氧气和营养物质的管道,对于脊椎动物的发育、生长、损伤修复和再生至关重要。蝾螈能够在其整个生命周期中再生整个附肢,是脊椎动物再生领域无与伦比的模型,但它们缺乏许多有助于在其他动物模型中进行血管成像的分子工具。血管指标的测定需要高质量的图像数据,以便将血管与背景组织区分开来。在哺乳动物系统中,使用灌注、清除后的标本对脉管系统进行量化已经很成熟,但在两栖动物中尚未广泛应用。本研究的目的是优化蝾螈微血管网络可视化的组织制备方法,为再生性血管生成的量化提供基础。为实现这一目标,我们进行了基于色素的造影剂的心内灌注,并评估了水性和非水性清除技术。通过比较各治疗组血管图像的质量和可观察到的血管密度来验证这些方法。这些组织处理技术简单且成本低廉,将用于评估再生过程中血管生长和重塑的研究。该方法的优点包括:•在周围组织的三维背景下血管对比度更高•增强对微血管的检测,便于进行血管量化•与其他标记技术兼容。