Achilli Toni-Marie, McCalla Stephanie, Meyer Julia, Tripathi Anubhav, Morgan Jeffrey R
Department of Molecular Pharmacology, Physiology and Biotechnology, ‡Center for Biomedical Engineering, and §School of Engineering, Brown University , Providence, Rhode Island 02912, United States.
Mol Pharm. 2014 Jul 7;11(7):2071-81. doi: 10.1021/mp500002y. Epub 2014 Apr 2.
There is a need for new quantitative in vitro models of drug uptake and diffusion to help assess drug toxicity/efficacy as well as new more predictive models for drug discovery. We report a three-dimensional (3D) multilayer spheroid model and a new algorithm to quantitatively study uptake and inward diffusion of fluorescent calcein via gap junction intercellular communication (GJIC). When incubated with calcein-AM, a substrate of the efflux transporter P-glycoprotein (Pgp), spheroids from a variety of cell types accumulated calcein over time. Accumulation decreased in spheroids overexpressing Pgp (HEK-MDR) and was increased in the presence of Pgp inhibitors (verapamil, loperamide, cyclosporin A). Inward diffusion of calcein was negligible in spheroids that lacked GJIC (OVCAR-3, SK-OV-3) and was reduced in the presence of an inhibitor of GJIC (carbenoxolone). In addition to inhibiting Pgp, verapamil and loperamide, but not cyclosporin A, inhibited inward diffusion of calcein, suggesting that they also inhibit GJIC. The dose response curves of verapamil's inhibition of Pgp and GJIC were similar (IC50: 8 μM). The method is amenable to many different cell types and may serve as a quantitative 3D model that more accurately replicates in vivo barriers to drug uptake and diffusion.
需要新的药物摄取和扩散的定量体外模型来帮助评估药物毒性/疗效,以及用于药物发现的更具预测性的新模型。我们报告了一种三维(3D)多层球体模型和一种新算法,用于通过间隙连接细胞间通讯(GJIC)定量研究荧光素酶的摄取和向内扩散。当与外排转运蛋白P-糖蛋白(Pgp)的底物荧光素酶-AM一起孵育时,来自多种细胞类型的球体随时间积累荧光素酶。在过表达Pgp的球体(HEK-MDR)中积累减少,而在存在Pgp抑制剂(维拉帕米、洛哌丁胺、环孢素A)时积累增加。在缺乏GJIC的球体(OVCAR-3、SK-OV-3)中,荧光素酶的向内扩散可以忽略不计,而在存在GJIC抑制剂(羧苄青霉素)时向内扩散减少。除了抑制Pgp外,维拉帕米和洛哌丁胺,但不是环孢素A,还抑制荧光素酶的向内扩散,这表明它们也抑制GJIC。维拉帕米对Pgp和GJIC的抑制剂量反应曲线相似(IC50:8μM)。该方法适用于许多不同的细胞类型,可作为一种更准确复制体内药物摄取和扩散屏障的定量3D模型。