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使用鸡胚绒毛尿囊膜(CAM)试验评估生物材料的生物相容性和血管生成反应。

Using Chick Chorioallantoic Membrane (CAM) Assay To Evaluate the Biocompatibility and Angiogenic Response to Biomaterials.

作者信息

Mangir Naşide, Dikici Serkan, Claeyssens Frederik, MacNeil Sheila

机构信息

Kroto Research Institute, Department of Material Science and Engineering, University of Sheffield, Broad Lane, S3 7HQ Sheffield, United Kingdom.

Royal Hallamshire Hospital, Department of Urology, Glossop Road, S10 2DL Sheffield, United Kingdom.

出版信息

ACS Biomater Sci Eng. 2019 Jul 8;5(7):3190-3200. doi: 10.1021/acsbiomaterials.9b00172. Epub 2019 Jun 12.

Abstract

Biomaterials need to be vigorously tested at every stage of preclinical development. As demand for culture environments continues to increase, traditional animal models are often technically complex, ethically undesirable, time-consuming, and resource intensive and thus present a barrier to high throughput screening. The chick chorioallantoic membrane (CAM) assay has long been used to study the effects of drugs on angiogenesis , providing researchers with a readily available, accessible, self-sustaining, and high throughput screen without requiring animal facilities. It has also been recognized as an assay to test initial tissue response to biomaterials; however it has not yet gained widespread acceptance. This could be due to lack of specific protocols on how to optimize this assay to specifically test biomaterials. Here we describe how the (shell-less) CAM assay can be effectively used to study the angiogenic potential and initial tissue response to biomaterials. In comparison to alternative approaches, this technique provides additional advantages to the researcher as it allows better visualization of implanted biomaterials and the ability to implant several samples simultaneously enabling combinatorial biomaterial assays to be conducted.

摘要

生物材料在临床前开发的每个阶段都需要进行严格测试。随着对培养环境的需求不断增加,传统动物模型往往技术复杂、存在伦理问题、耗时且资源密集,因此成为高通量筛选的障碍。鸡胚绒毛尿囊膜(CAM)试验长期以来一直用于研究药物对血管生成的影响,为研究人员提供了一种无需动物设施即可随时进行、易于操作、自我维持且高通量的筛选方法。它也被认为是一种测试生物材料初始组织反应的试验;然而,它尚未得到广泛认可。这可能是由于缺乏关于如何优化该试验以专门测试生物材料的具体方案。在这里,我们描述了(无壳)CAM试验如何有效地用于研究生物材料的血管生成潜力和初始组织反应。与其他替代方法相比,该技术为研究人员提供了额外的优势,因为它可以更好地观察植入的生物材料,并且能够同时植入多个样本,从而能够进行组合生物材料试验。

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