ONCOLILLE Cancer Institute - CANTHER Laboratory "Cancer Heterogeneity, Plasticity and Resistance to Therapies", Lille, France.
Lattice Medical, Loos, France.
J Biomed Mater Res B Appl Biomater. 2024 Nov;112(11):e35496. doi: 10.1002/jbm.b.35496.
Tissue engineering is a promising approach for generating or repairing living tissues. The development of innovative biomaterials for tissue engineering has the potential to address the unmet clinical needs in certain applications. However, before these biomaterials can be used in clinical settings, they must undergo preclinical testing to ensure safety and performance. The chicken chorioallantoic membrane (CAM) assay is a preferred screening tool for studying biocompatibility, angiogenesis, and inflammation induced by biomaterials owing to ethical and economic considerations. This CAM-based platform increased the throughput of biomaterial testing for tissue engineering before in vivo testing. In this paper, we discuss the advantages of the CAM model. We also provided a step-by-step guide for implementing the CAM model in a research laboratory, along with tips and tricks for successfully running CAM assays. Finally, we present examples of biomaterials screened using CAM assays. CAM assay is a powerful in vivo model for assessing the angiogenic potential of tissue-engineered scaffolds. This guide provides a framework for conducting the assay, but specific experimental conditions should be optimized based on the scaffold material and the research question.
组织工程是一种有前途的生成或修复活组织的方法。创新生物材料的开发用于组织工程有可能解决某些应用中未满足的临床需求。然而,在这些生物材料能够在临床环境中使用之前,必须进行临床前测试以确保其安全性和性能。由于伦理和经济方面的考虑,鸡胚绒毛尿囊膜 (CAM) 测定是研究生物材料的生物相容性、血管生成和炎症的首选筛选工具。这个基于 CAM 的平台提高了组织工程生物材料测试的通量,然后再进行体内测试。在本文中,我们讨论了 CAM 模型的优势。我们还提供了在研究实验室中实施 CAM 模型的分步指南,以及成功运行 CAM 测定的技巧和窍门。最后,我们展示了使用 CAM 测定筛选的生物材料的例子。CAM 测定是评估组织工程支架血管生成潜力的强大体内模型。本指南提供了进行测定的框架,但具体的实验条件应根据支架材料和研究问题进行优化。