Shen Chong, Meng Qin, Zhang Guoliang
Department of Chemical and Biological Engineering, Zhejiang University, Hangzhou, People's Republic of China.
Biofabrication. 2014 Dec 17;7(1):015003. doi: 10.1088/1758-5090/7/1/015003.
A Caco-2 cell culture on Transwell, an alternative testing to animal or human testing used in evaluating drug intestinal permeability, incorrectly estimated the absorption of actively transported drugs due to the low expression of membrane transporters. Similarly, three-dimensional (3D) cultures of Caco-2 cells, which have been recommended to be more physiological relevant, were not superior to the Transwell culture in either accuracy or convenience in drug permeability testing. Using rapid 3D printing prototyping techniques, this study proposed a hanging culture of Caco-2 cells that performed with high accuracy in predicting drug permeability in humans. As found, hanging cultured Caco-2 cells formed a confluent monolayer and maintained high cell viability on the 3D printed insert. Compared with the normal culture on Transwell, the Caco-2 cells on the 3D printed insert presented ∼30-100% higher brush border enzyme activity and ∼2-7 folds higher activity of P-glycoprotein/multidrug resistance-associated protein 2 during 21 days of incubation. For the eight membrane transporter substrates, the predictive curve of the 3D printing culture exhibited better linearity (R(2) = 0.92) to the human oral adsorption than that of the Transwell culture (R(2) = 0.84), indicating better prediction by the 3D printing culture. In this regard, the 3D printed insert for hanging culture could be potentially developed as a convenient and low-cost tool for testing drug oral absorption.
在Transwell上进行的Caco-2细胞培养是评估药物肠道通透性时用于替代动物或人体试验的一种方法,由于膜转运蛋白表达水平低,其对主动转运药物的吸收估计有误。同样,推荐用于更接近生理状态的Caco-2细胞三维(3D)培养,在药物通透性测试的准确性或便利性方面并不优于Transwell培养。本研究利用快速3D打印原型技术,提出了一种Caco-2细胞悬置培养方法,该方法在预测人体药物通透性方面具有很高的准确性。研究发现,悬置培养的Caco-2细胞形成了融合单层,并在3D打印的插入物上保持了较高的细胞活力。与Transwell上的正常培养相比,3D打印插入物上的Caco-2细胞在孵育21天期间,刷状缘酶活性提高了约30%-100%,P-糖蛋白/多药耐药相关蛋白2的活性提高了约2-7倍。对于八种膜转运蛋白底物,3D打印培养的预测曲线对人体口服吸收的线性度(R(2)=0.92)优于Transwell培养(R(2)=0.84),表明3D打印培养的预测性更好。在这方面,用于悬置培养的3D打印插入物有可能被开发成为一种方便且低成本的药物口服吸收测试工具。