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对鸡胚尿囊膜模型在临床前研究中用于研究血管生成的评价。

Critical appraisal of the chorioallantoic membrane model for studying angiogenesis in preclinical research.

机构信息

Department of Oral Pathology and Microbiology, Dr. D. Y. Patil Dental College and Hospital, Dr. D. Y. Patil Vidyapeeth, Pimpri, Pune, Maharashtra, India.

Department of Pediatric and Preventive Dentistry, Bharati Vidyapeeth (Deemed to be University), Dental College and Hospital, Navi Mumbai, India.

出版信息

Mol Biol Rep. 2024 Sep 28;51(1):1026. doi: 10.1007/s11033-024-09956-x.

Abstract

BACKGROUND

Angiogenesis, the biological mechanism by which new blood vessels are generated from existing ones, plays a vital role in growth and development. Effective preclinical screening is necessary for the development of medications that may enhance or inhibit angiogenesis in the setting of different disorders. Traditional in vitro and, in vivo models of angiogenesis are laborious and time-consuming, necessitating advanced infrastructure for embryo culture.

MAIN BODY

A challenge encountered by researchers studying angiogenesis is the lack of appropriate techniques to evaluate the impact of regulators on the angiogenic response. An ideal test should possess reliability, technical simplicity, easy quantifiability, and, most importantly, physiological relevance. The CAM model, leveraging the extraembryonic membrane of the chicken embryo, offers a unique combination of accessibility, low cost, and rapid development, making it an attractive option for angiogenesis assays. This review evaluates the strengths and limitations of the CAM model in the context of its anatomical and physiological properties, and its relevance to human pathophysiological conditions. Its abundant capillary network makes it a common choice for studying angiogenesis. The CAM assay serves as a substitute for animal models and offers a natural setting for developing blood vessels and the many elements involved in the intricate interaction with the host. Despite its advantages, the CAM model's limitations are notable. These include species-specific responses that may not always extrapolate to humans and the ethical considerations of using avian embryos. We discuss methodological adaptations that can mitigate some of these limitations and propose future directions to enhance the translational relevance of this model. This review underscores the CAM model's valuable role in angiogenesis research and aims to guide researchers in optimizing its use for more predictive and robust preclinical studies.

CONCLUSION

The highly vascularized chorioallantoic membrane (CAM) of fertilized chicken eggs is a cost-effective and easily available method for screening angiogenesis, in comparison to other animal models.

摘要

背景

血管生成是指新血管从现有血管中生成的生物学机制,在生长和发育中起着至关重要的作用。为了开发可能增强或抑制不同疾病状态下血管生成的药物,需要进行有效的临床前筛选。传统的血管生成体外和体内模型既费力又耗时,需要先进的胚胎培养基础设施。

主要内容

研究血管生成的研究人员面临的一个挑战是缺乏适当的技术来评估调节剂对血管生成反应的影响。理想的测试应具有可靠性、技术简单性、易于量化性,最重要的是具有生理相关性。鸡胚的绒毛尿囊膜(CAM)模型利用了鸡胚的胚胎外膜,提供了可及性、低成本和快速发展的独特组合,使其成为血管生成测定的有吸引力的选择。本综述评估了 CAM 模型在其解剖和生理特性方面的优势和局限性,以及其与人类病理生理状况的相关性。其丰富的毛细血管网络使其成为研究血管生成的常用选择。CAM 测定法可替代动物模型,并为开发血管和涉及与宿主复杂相互作用的许多要素提供自然环境。尽管具有优势,但 CAM 模型的局限性也很明显。这些局限性包括物种特异性反应,这些反应不一定适用于人类,以及使用禽类胚胎的伦理考虑。我们讨论了可以减轻其中一些局限性的方法学适应性,并提出了未来的方向,以增强该模型的转化相关性。本综述强调了 CAM 模型在血管生成研究中的重要作用,并旨在指导研究人员优化其在更具预测性和稳健性的临床前研究中的使用。

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