Woloszyk Anna, Liccardo Davide, Mitsiadis Thimios A
Orofacial Development and Regeneration, Centre for Dental Medicine, Institute of Oral Biology, University of Zurich Zurich, Switzerland.
Section of Biotechnology and Medical Histology and Embryology, Department of Experimental Medicine, Second University of Naples Naples, Italy.
Front Physiol. 2016 Apr 21;7:146. doi: 10.3389/fphys.2016.00146. eCollection 2016.
Successful tissue engineering requires functional vascularization of the three-dimensional constructs with the aim to serve as implants for tissue replacement and regeneration. The survival of the implant is only possible if the supply of oxygen and nutrients by developing capillaries from the host is established. The chorioallantoic membrane (CAM) assay is a valuable tool to study the ingrowth and distribution of vessels into scaffolds composed by appropriate biomaterials and stem cell populations that are used in cell-based regenerative approaches. The developing vasculature of chicken embryos within cell-seeded scaffolds can be visualized with microcomputed tomography after intravenous injection of MicroFil®, which is a radiopaque contrast agent. Here, we provide a step-by-step protocol for the seeding of stem cells into silk fibroin scaffolds, the CAM culture conditions, the procedure of MicroFil® perfusion, and finally the microcomputed tomography scanning. Three-dimensional imaging of the vascularized tissue engineered constructs provides an important analytical tool for studying the potential of cell seeded scaffolds to attract vessels and form vascular networks, as well as for analyzing the number, density, length, branching, and diameter of vessels. This in ovo method can greatly help to screen implants that will be used for tissue regeneration purposes before their in vivo testing, thereby reducing the amount of animals needed for pre-clinical studies.
成功的组织工程需要三维构建体实现功能性血管化,目的是作为组织替代和再生的植入物。只有通过宿主新生毛细血管建立氧气和营养物质的供应,植入物才能存活。绒毛尿囊膜(CAM)试验是一种有价值的工具,用于研究血管向由合适生物材料和干细胞群体组成的支架内生长和分布情况,这些生物材料和干细胞群体用于基于细胞的再生方法。在静脉注射不透射线的造影剂MicroFil®后,通过微型计算机断层扫描可以观察到接种细胞的支架内鸡胚发育中的脉管系统。在此,我们提供了一个将干细胞接种到丝素蛋白支架中的分步方案、CAM培养条件、MicroFil®灌注程序,以及最后的微型计算机断层扫描。血管化组织工程构建体的三维成像为研究接种细胞的支架吸引血管并形成血管网络的潜力,以及分析血管的数量、密度、长度、分支和直径提供了一个重要的分析工具。这种体内方法可以极大地帮助在体内测试之前筛选用于组织再生目的的植入物,从而减少临床前研究所需的动物数量。