KU Leuven, Biomedical Group, Campus Gasthuisberg, 3000 Leuven, Belgium.
Shanghai Key Laboratory of Molecular Imaging, Shanghai University of Medicine and Health Sciences, Shanghai 201318, China.
Cells. 2021 Feb 22;10(2):463. doi: 10.3390/cells10020463.
The fertilised chick egg and particularly its chorioallantoic membrane (CAM) have drawn continuing interest in biomedicine and bioengineering fields, especially for research on vascular study, cancer, drug screening and development, cell factors, stem cells, etc. This literature review systemically introduces the CAM's structural evolution, functions, vascular features and the circulation system, and cell regulatory factors. It also presents the major and updated applications of the CAM in assays for pharmacokinetics and biodistribution, drug efficacy and toxicology testing/screening in preclinical pharmacological research. The time course of CAM applications for different assays and their advantages and limitations are summarised. Among these applications, two aspects are emphasised: (1) potential utility of the CAM for preclinical studies on vascular-disrupting agents (VDAs), promising for anti-cancer vascular-targeted therapy, and (2) modern imaging technologies, including modalities and their applications for real-time visualisation, monitoring and evaluation of the changes in CAM vasculature as well as the interactions occurring after introducing the tested medical, pharmaceutical and biological agents into the system. The aim of this article is to help those working in the biomedical field to familiarise themselves with the chick embryo CAM as an alternative platform and to utilise it to design and optimise experimental settings for their specific research topics.
鸡胚卵和特别是其绒毛尿囊膜(CAM)在生物医学和生物工程领域一直引起人们的持续关注,特别是在血管研究、癌症、药物筛选和开发、细胞因子、干细胞等方面的研究。本文系统地介绍了 CAM 的结构演变、功能、血管特征和循环系统,以及细胞调节因子。还介绍了 CAM 在药代动力学和生物分布、药物功效和毒理学测试/筛选等临床前药理学研究中的主要和最新应用。总结了不同检测方法中 CAM 应用的时间进程及其优缺点。在这些应用中,强调了两个方面:(1)CAM 在血管破坏剂(VDA)的临床前研究中的潜在应用,对癌症血管靶向治疗有很大的希望;(2)现代成像技术,包括模态及其在实时可视化、监测和评估 CAM 血管变化以及在将测试的医学、制药和生物制剂引入系统后发生的相互作用中的应用。本文的目的是帮助生物医学领域的工作者熟悉鸡胚 CAM 作为替代平台,并利用它来设计和优化其特定研究课题的实验设置。