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用于体外癌症组织工程和药物测试应用的聚合物生物材料。

Polymeric Biomaterials for In Vitro Cancer Tissue Engineering and Drug Testing Applications.

作者信息

Pradhan Shantanu, Hassani Iman, Clary Jacob M, Lipke Elizabeth A

机构信息

Department of Chemical Engineering, Auburn University , Auburn, Alabama.

出版信息

Tissue Eng Part B Rev. 2016 Dec;22(6):470-484. doi: 10.1089/ten.TEB.2015.0567. Epub 2016 Jul 29.

Abstract

Biomimetic polymers and materials have been widely used in tissue engineering for regeneration and replication of diverse types of both normal and diseased tissues. Cancer, being a prevalent disease throughout the world, has initiated substantial interest in the creation of tissue-engineered models for anticancer drug testing. The development of these in vitro three-dimensional (3D) culture models using novel biomaterials has facilitated the investigation of tumorigenic and associated biological phenomena with a higher degree of complexity and physiological context than that provided by established two-dimensional culture models. In this review, an overview of a wide range of natural, synthetic, and hybrid biomaterials used for 3D cancer cell culture and investigation of cancer cell behavior is presented. The role of these materials in modulating cell-matrix interactions and replicating specific tumorigenic characteristics is evaluated. In addition, recent advances in biomaterial design, synthesis, and fabrication are also assessed. Finally, the advantages of incorporating polymeric biomaterials in 3D cancer models for obtaining efficacy data in anticancer drug testing applications are highlighted.

摘要

仿生聚合物和材料已广泛应用于组织工程,用于多种正常和病变组织的再生与复制。癌症作为一种全球普遍存在的疾病,引发了人们对创建用于抗癌药物测试的组织工程模型的浓厚兴趣。利用新型生物材料开发这些体外三维(3D)培养模型,有助于研究致瘤性及相关生物学现象,其复杂程度和生理背景比已有的二维培养模型更高。在本综述中,概述了用于3D癌细胞培养和研究癌细胞行为的各种天然、合成及混合生物材料。评估了这些材料在调节细胞-基质相互作用和复制特定致瘤特征方面的作用。此外,还评估了生物材料设计、合成和制造方面的最新进展。最后,强调了在3D癌症模型中纳入聚合物生物材料以获取抗癌药物测试应用中疗效数据的优势。

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