Nielsen H M, Verhoef J C, Ponec M, Rassing M R
Department of Pharmaceutics, The Royal Danish School of Pharmacy, 2 Universitetsparken, 2100, Copenhagen O, Denmark.
J Control Release. 1999 Aug 5;60(2-3):223-33. doi: 10.1016/s0168-3659(99)00081-4.
The aim of the present study was to characterize the TR146 cell culture model as an in vitro model of human buccal epithelium with respect to the permeability of test substances with different molecular weights (M(w)). For this purpose, the apparent permeability (P(app)) values for mannitol and for fluorescein isothiocyanate (FITC)-labelled dextrans (FD) with various M(w) (4000-40000) were compared to the P(app) values obtained using porcine buccal mucosa as an in vitro model of the human buccal epithelium. The effect of 10 mM sodium glycocholate (GC) on the P(app) values was examined. To identify the pathways by which FD of M(w) 4000-40000 were transported, the confocal laser scanning microscope (CLSM) was used. The P(app) values obtained with the TR146 cell culture model in the absence of a permeability enhancer linearly decreased with increasing M(w) of the test substance from 0. 65+/-0.055x10(-8) to 44+/-7.5x10(-8) cm/s, as the P(app) values obtained with porcine buccal mucosa. In the presence of the permeability enhancer, GC, the permeability of the FD across the cultured TR146 cell culture model increased in a parabolic manner, reaching maximum at M(w) 10000. In the absence of the enhancer, only paracellular localization of FD was observed while, in the presence of GC, FD also could be detected in the cytosol of some of the superficial cells. The GC-induced enhancement of FD permeation may be partially attributed to changed permeation pathways. The present results indicate that the TR146 cell culture model is a suitable in vitro model for mechanistic permeability studies of human buccal drug permeability.
本研究的目的是将TR146细胞培养模型作为人颊黏膜的体外模型,以研究不同分子量(M(w))受试物质的渗透性。为此,将甘露醇以及不同M(w)(4000 - 40000)的异硫氰酸荧光素(FITC)标记葡聚糖(FD)的表观渗透率(P(app))值,与使用猪颊黏膜作为人颊黏膜体外模型所获得的P(app)值进行比较。研究了10 mM甘氨胆酸钠(GC)对P(app)值的影响。为确定M(w) 4000 - 40000的FD的转运途径,使用了共聚焦激光扫描显微镜(CLSM)。在不存在渗透促进剂的情况下,TR146细胞培养模型获得的P(app)值随受试物质M(w)的增加而线性下降,从0.65±0.055×10(-8)降至44±7.5×10(-8) cm/s,与猪颊黏膜获得的P(app)值情况相同。在存在渗透促进剂GC的情况下,FD透过培养的TR146细胞培养模型的渗透率呈抛物线增加,在M(w) 10000时达到最大值。在不存在促进剂时,仅观察到FD的细胞旁定位,而在存在GC时,在一些表层细胞的细胞质中也能检测到FD。GC诱导的FD渗透增强可能部分归因于渗透途径的改变。目前的结果表明,TR146细胞培养模型是用于人颊部药物渗透性机制研究的合适体外模型。