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肿瘤移植 - 鸡胚绒毛尿囊膜作为生物癌症研究和常规/基于纳米材料的治疗评估的替代模型。

Tumor grafted - chick chorioallantoic membrane as an alternative model for biological cancer research and conventional/nanomaterial-based theranostics evaluation.

机构信息

Center for Nanotechnology Innovation@NEST, Istituto Italiano Di Tecnologia, Pisa, Italy.

NEST-Scuola Normale Superiore, Pisa, Italy.

出版信息

Expert Opin Drug Metab Toxicol. 2021 Aug;17(8):947-968. doi: 10.1080/17425255.2021.1879047. Epub 2021 Feb 10.

Abstract

: Advancements in cancer management and treatment are associated with strong preclinical research data, in which reliable cancer models are demanded. Indeed, inconsistent preclinical findings and stringent regulations following the 3Rs principle of reduction, refinement, and replacement of conventional animal models currently pose challenges in the development and translation of efficient technologies. The chick embryo chorioallantoic membrane (CAM) is a system for the evaluation of treatment effects on the vasculature, therefore suitable for studies on angiogenesis. Apart from vascular effects, the model is now increasingly employed as a preclinical cancer model following tumor-grafting procedures.: The broad application of CAM tumor model is highlighted along with the methods for analyzing the neoplasm and vascular system. The presented and cited investigations focus on cancer biology and treatment, encompassing both conventional and emerging nanomaterial-based modalities.: The CAM tumor model finds increased significance given the influences of angiogenesis and the tumor microenvironment in cancer behavior, then providing a qualified miniature system for oncological research. Ultimately, the establishment and increased employment of such a model may resolve some of the limitations present in the standard preclinical tumor models, thereby redefining the preclinical research workflow.

摘要

癌症治疗和管理的进展与强大的临床前研究数据相关,这需要可靠的癌症模型。实际上,目前临床前研究结果不一致,并且在减少、优化和替代传统动物模型的 3R 原则下,严格的规定给高效技术的开发和转化带来了挑战。鸡胚绒毛尿囊膜(CAM)是评估血管系统治疗效果的系统,因此适合用于血管生成研究。除了血管作用外,该模型现在越来越多地被用作肿瘤移植程序后的临床前癌症模型。

CAM 肿瘤模型的广泛应用以及分析肿瘤和血管系统的方法被强调。所呈现和引用的研究重点关注癌症生物学和治疗,包括传统和新兴的基于纳米材料的方法。

鉴于血管生成和肿瘤微环境对癌症行为的影响,CAM 肿瘤模型的重要性日益增加,为肿瘤学研究提供了一个合格的微型系统。最终,建立和增加这种模型的使用可能会解决标准临床前肿瘤模型中存在的一些局限性,从而重新定义临床前研究工作流程。

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