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开发一种用于Caco-2单层细胞的更快速、血清减少的培养系统,并应用于生物药剂学分类系统。

Development of a more rapid, reduced serum culture system for Caco-2 monolayers and application to the biopharmaceutics classification system.

作者信息

Lentz K A, Hayashi J, Lucisano L J, Polli J E

机构信息

School of Pharmacy, University of Maryland, Baltimore 21201, USA.

出版信息

Int J Pharm. 2000 Apr 25;200(1):41-51. doi: 10.1016/s0378-5173(00)00334-3.

Abstract

The objectives were: (1) to develop a more rapid, reduced serum culture system for Caco-2 monolayers, relative to the traditional 21-day, 10% fetal bovine serum (FBS) system; and (2) to determine the biopharmaceutical drug classification of an oral therapeutic agent using this new system. Caco-2 cells were grown in the six well format on polycarbonate filters, in medium containing 2% iron supplemented calf serum (sCS) and a combination of growth factors and hormones. After 4 days in culture, permeabilities of three marker compounds (metoprolol, mannitol, and taurocholate) across monolayers were determined, and compared to permeabilities from the traditional 21-day, 10% FBS system, using cells at similar passage number. Cell morphology, degree of cell differentiation, and the presence of two efflux pumps were assessed. The 2% sCS model was also used to classify the permeability of an oral therapeutic agent as high or low. No difference in permeability was observed for metoprolol transport (P = 0.38) between the two culture methods, and the values obtained were independent of passage number of the cells. Mannitol permeability was about 2-fold higher from the 2% sCS system, as compared to the 10% FBS system. Taurocholate permeability was low indicating the 2% sCS culture at 4 days lacked this particular active transporter capability. Electron micrographs of cells grown in the 2% sCS system at 4 days revealed the presence of microvilli and tight junctions. P-glycoprotein and an efflux pump for furosemide were functionally present. The 2% sCS system indicated the oral therapeutic agent as highly permeable, which agreed with the 10% FBS system. This new system provides a rapid, accurate, and economical option for passive permeability determination, and appears to be applicable to the proposed Biopharmaceutics Classification System (BCS).

摘要

研究目的如下

(1)相对于传统的21天、10%胎牛血清(FBS)培养体系,开发一种用于Caco-2单层细胞的更快的、血清含量降低的培养体系;(2)使用这种新体系确定一种口服治疗剂的生物药剂学药物分类。Caco-2细胞在聚碳酸酯滤膜上以六孔板形式培养,培养基中含有2%添加铁的小牛血清(sCS)以及生长因子和激素的组合。培养4天后,测定三种标记化合物(美托洛尔、甘露醇和牛磺胆酸盐)跨单层细胞的通透性,并与使用相同传代次数细胞的传统21天、10% FBS培养体系的通透性进行比较。评估细胞形态、细胞分化程度以及两种外排泵的存在情况。2% sCS模型也用于将口服治疗剂的通透性分类为高或低。两种培养方法之间美托洛尔转运的通透性没有差异(P = 0.38),并且获得的值与细胞传代次数无关。与10% FBS培养体系相比,2% sCS培养体系中甘露醇的通透性高约2倍。牛磺胆酸盐的通透性较低,表明4天时的2% sCS培养缺乏这种特定的主动转运能力。在2% sCS培养体系中培养4天的细胞的电子显微镜照片显示存在微绒毛和紧密连接。P-糖蛋白和速尿外排泵在功能上存在。2% sCS培养体系表明该口服治疗剂具有高通透性,这与10% FBS培养体系一致。这种新体系为被动通透性测定提供了一种快速、准确且经济的选择,并且似乎适用于拟议的生物药剂学分类系统(BCS)。

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