Tang Yadong, Huang Boxin, Dong Yuqin, Wang Wenlong, Zheng Xi, Zhou Wei, Zhang Kun, Du Zhiyun
a Institute of Natural Medicinal Chemistry and Green Chemistry, Guangdong University of Technology , Guangdong , China.
b LMS , UMR 7649 CNRS-Ecole Polytechnique , Palaiseau Cedex , France.
J Biomater Sci Polym Ed. 2017 Oct;28(14):1603-1616. doi: 10.1080/09205063.2017.1338502. Epub 2017 Jun 8.
In vitro cell-based assays are widely applied to evaluate anti-cancer drug efficacy. However, the conventional approaches are mostly based on two-dimensional (2D) culture systems, making it difficult to recapitulate the in vivo tumor scenario because of spatial limitations. Here, we develop an in vitro three-dimensional (3D) prostate tumor model based on a hyaluronic acid (HA)-alginate hybrid hydrogel to bridge the gap between in vitro and in vivo anticancer drug evaluations. In situ encapsulation of PCa cells was achieved by mixing HA and alginate aqueous solutions in the presence of cells and then crosslinking with calcium ions. Unlike in 2D culture, cells were found to aggregate into spheroids in a 3D matrix. The expression of epithelial to mesenchyme transition (EMT) biomarkers was found to be largely enhanced, indicating an increased invasion and metastasis potential in the hydrogel matrix. A significant up-regulation of proangiogenic growth factors (IL-8, VEGF) and matrix metalloproteinases (MMPs) was observed in 3D-cultured PCa cells. The results of anti-cancer drug evaluation suggested a higher drug tolerance within the 3D tumor model compared to conventional 2D-cultured cells. Finally, we found that the drug effect within the in vitro 3D cancer model based on HA-alginate matrix exhibited better predictability for in vivo drug efficacy.
基于细胞的体外实验被广泛应用于评估抗癌药物的疗效。然而,传统方法大多基于二维(2D)培养系统,由于空间限制,难以重现体内肿瘤情况。在此,我们基于透明质酸(HA)-藻酸盐混合水凝胶开发了一种体外三维(3D)前列腺肿瘤模型,以弥合体外和体内抗癌药物评估之间的差距。通过在细胞存在的情况下将HA和藻酸盐水溶液混合,然后用钙离子交联,实现了前列腺癌细胞的原位包封。与二维培养不同,发现细胞在三维基质中聚集成球体。上皮-间质转化(EMT)生物标志物的表达显著增强,表明在水凝胶基质中侵袭和转移潜力增加。在三维培养的前列腺癌细胞中观察到促血管生成生长因子(IL-8、VEGF)和基质金属蛋白酶(MMPs)显著上调。抗癌药物评估结果表明,与传统二维培养细胞相比,三维肿瘤模型中的药物耐受性更高。最后,我们发现基于HA-藻酸盐基质的体外三维癌症模型中的药物效果对体内药物疗效具有更好的预测性。