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一种用于评估血管生成的经济高效的鸡胚绒毛尿囊膜(CAM)体外检测方案

A Cost-Effective and Efficient Chick Ex-Ovo CAM Assay Protocol to Assess Angiogenesis.

作者信息

Naik Monali, Brahma Pratush, Dixit Manjusha

机构信息

School of Biological Sciences, National Institute of Science Education and Research, HBNI, PO: Bhimpur-Padanpur, Via: Jatani, Odisha-752050, India.

出版信息

Methods Protoc. 2018 May 31;1(2):19. doi: 10.3390/mps1020019.

Abstract

The chick chorioallantoic membrane (CAM) is an extra-embryonic membrane, comprised of a high density of blood and lymphatic vessels. CAM has a dense capillary network and is commonly used to study in vivo angiogenesis and anti-angiogenesis in response to potential biomolecules and drugs. Most of the earlier reported CAM assays described the in-ovo method-where the viability of the embryo is higher, but accessibility to the CAM is limited. Ex-ovo CAM methods were previously described that employed shell-less cultures of chick embryos, but the low viability of embryos reduced the overall robustness of the angiogenesis assays. We described a method (named as cup-CAM method) which is more economical, has better accessibility and has significantly improved the viability of the embryo till advanced developmental stages. We could perform this simple yet useful experimentation with the common tools available in the laboratory. We successfully used the cup-CAM method for showing the paracrine effects of conditioned media from tumor cells, on the angiogenesis. This method can be used to assay the angiogenic potential of a drug or protein and to observe the embryonic development of the chick embryo and other related scientific applications.

摘要

鸡胚绒毛尿囊膜(CAM)是一种胚外膜,由高密度的血管和淋巴管组成。CAM具有密集的毛细血管网络,常用于研究体内血管生成以及对潜在生物分子和药物的抗血管生成反应。大多数早期报道的CAM实验描述的是卵内方法——胚胎的活力较高,但对CAM的操作受限。此前也描述过卵外CAM方法,该方法采用鸡胚无壳培养,但胚胎的低活力降低了血管生成实验的整体稳健性。我们描述了一种方法(称为杯状CAM方法),该方法更经济,操作更方便,并且显著提高了胚胎直至发育后期的活力。我们可以使用实验室中常见的工具进行这种简单而有用的实验。我们成功地使用杯状CAM方法展示了肿瘤细胞条件培养基对血管生成的旁分泌作用。该方法可用于测定药物或蛋白质的血管生成潜力,观察鸡胚的胚胎发育以及其他相关科学应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f61/6526448/6cbf0d1ab3c7/mps-01-00019-g001.jpg

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