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十二烷基麦芽糖(DDM)对 Caco-2 细胞和大鼠肠模型中 BCS III 类化合物替鲁膦酸和色甘酸摄取的影响。

Effect of dodecylmaltoside (DDM) on uptake of BCS III compounds, tiludronate and cromolyn, in Caco-2 cells and rat intestine model.

机构信息

407 Walker Building, Harrison School of Pharmacy, Auburn University, Auburn, AL 36849, USA.

出版信息

Drug Deliv. 2010 Apr;17(3):145-51. doi: 10.3109/10717541003604882.

Abstract

The efficacy of n-lauryl-beta-D-maltopyranoside, (dodecylmaltoside, DDM) as a permeability-enhancer for tiludronate and cromolyn (BCS Class III, water-soluble compounds with oral bioavailability < 5%) was evaluated in Caco-2 cell monolayers and rat intestinal sacs. In Caco-2 cells samples were collected over a 5-h period and transepithelial resistance (TEER) was measured concurrently. In rat intestinal sacs, samples of the test compounds and marker (Lucifer Yellow) were collected over a 40 min period; accumulation in the serosal fluid and intestinal tissue was measured. At lower concentration DDM had no effect on cromolyn permeability and a marginal increase was observed at higher concentration. Tiludronate permeability in the presence of DDM showed greater enhancement as compared to cromolyn. At higher concentration DDM appeared to cause permanent damage to the cell monolayer (irreversible change in TEER). In the intestinal tissue, DDM caused increased tissue accumulation of test compounds. This indicated that transport was not restricted to the paracellular route and damage to the intestinal tissue could not be ruled out. Based on the results obtained in this study it can be concluded that at concentrations that are non-toxic DDM appears to have a limited use to improve the oral absorption of cromolyn and tiludronate.

摘要

N-月桂基-β-D-麦芽糖苷(十二烷基麦芽糖苷,DDM)作为一种透皮增强剂,用于提高他留醇酸和色甘酸钠(BCS 分类 III,水溶性化合物,口服生物利用度 <5%)的透过性,在 Caco-2 细胞单层和大鼠肠囊进行了评估。在 Caco-2 细胞中,在 5 小时的时间内收集样品,并同时测量跨上皮电阻(TEER)。在大鼠肠囊中,在 40 分钟的时间内收集测试化合物和标记物(荧光素黄)的样品;测量在浆膜液和肠组织中的积累。在较低浓度下,DDM 对色甘酸钠的透过性没有影响,而在较高浓度下观察到轻微增加。与色甘酸钠相比,DDM 存在时他留醇酸的透过性增强更大。在较高浓度下,DDM 似乎对细胞单层造成了永久性损伤(TEER 的不可逆变化)。在肠组织中,DDM 导致测试化合物的组织积累增加。这表明转运不仅限于细胞旁途径,并且不能排除对肠组织的损害。基于本研究的结果,可以得出结论,在非毒性浓度下,DDM 似乎对提高色甘酸钠和他留醇酸的口服吸收具有有限的用途。

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