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环糊精对低溶解度药物口服吸收影响的建模:I. 模型建立。

Modeling the influence of cyclodextrins on oral absorption of low-solubility drugs: I. Model development.

机构信息

Northeastern University, Snell Engineering Center, Boston, Massachusetts 02115, USA.

出版信息

Biotechnol Bioeng. 2010 Feb 1;105(2):409-20. doi: 10.1002/bit.22523.

DOI:10.1002/bit.22523
PMID:19725042
Abstract

The ability to quantitatively predict the influence of a solubilization technology on oral absorption would be highly beneficial in rational selection of drug delivery technology and formulation design. Cyclodextrins (CDs) are cyclic oligosaccharides which form inclusion complexes with a large variety of compounds including drugs. There are many studies in the literature showing that complexation between CD and drug enhances oral bioavailability and some demonstrating failure of CD in bioavailability enhancement, but relatively little guidance regarding when CD can be used to enhance bioavailability. A model was developed based upon mass transport expressions for drug dissolution and absorption and a pseudo-equilibrium assumption for the complexation reaction with CD. The model considers neutral compound delivered as a physical mixture with CD in both immediate release (IR) and controlled release (CR) formulations. Simulation results demonstrated that cyclodextrins can enhance, have no effect, or hurt drug absorption when delivered as a physical mixture with drug. The predicted influence depends on interacting parameter values, including solubility, drug absorption constant, binding constant, CD:drug molar ratio, dose, and assumed volume of the intestinal lumen. In general, the predicted positive influence of dosing as a physical mixture with CD was minimal, alluding to the significance of dosing as a preformed complex. The model developed enabled examination of which physical and chemical properties result in oral absorption enhancement for neutral drug administered as a physical mixture with CD, demonstrating the utility of modeling the influence of a drug delivery agent (e.g., CD) on absorption for rational dosage form design.

摘要

定量预测增溶技术对口服吸收影响的能力将极大地有益于合理选择药物传递技术和制剂设计。环糊精(CDs)是环状低聚糖,能与包括药物在内的多种化合物形成包合络合物。文献中有许多研究表明,CD 与药物的络合能提高口服生物利用度,还有一些研究表明 CD 不能提高生物利用度,但关于何时可以使用 CD 来提高生物利用度的指导相对较少。本研究基于药物溶解和吸收的传质表达式以及与 CD 的假平衡假设,建立了一个模型。该模型考虑了以物理混合物形式与 CD 共同递药的中性化合物,包括即刻释放(IR)和控制释放(CR)制剂。模拟结果表明,CD 作为药物的物理混合物给药时,可增强、无影响或损害药物吸收。预测的影响取决于相互作用参数值,包括溶解度、药物吸收常数、结合常数、CD:药物摩尔比、剂量和假定的肠腔体积。一般来说,以物理混合物形式与 CD 给药的预测正向影响很小,这暗示了以预形成络合物形式给药的重要性。所建立的模型能够检查哪些物理和化学性质导致以物理混合物形式与 CD 给药的中性药物的口服吸收增强,证明了对药物传递剂(如 CD)对吸收影响进行建模对于合理的剂型设计的实用性。

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Biotechnol Bioeng. 2010 Feb 1;105(2):409-20. doi: 10.1002/bit.22523.
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引用本文的文献

1
Oral delivery of lipophilic drugs: the tradeoff between solubility increase and permeability decrease when using cyclodextrin-based formulations.环糊精制剂增加亲脂性药物溶解度和降低渗透性的权衡。
PLoS One. 2013 Jul 16;8(7):e68237. doi: 10.1371/journal.pone.0068237. Print 2013.
2
The solubility-permeability interplay and its implications in formulation design and development for poorly soluble drugs.溶解度-渗透性相互作用及其对难溶性药物制剂设计和开发的意义。
AAPS J. 2012 Jun;14(2):244-51. doi: 10.1208/s12248-012-9337-6. Epub 2012 Mar 6.
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Predicting the effect of fed-state intestinal contents on drug dissolution.
预测进食状态下肠内容物对药物溶出度的影响。
Pharm Res. 2010 Dec;27(12):2646-56. doi: 10.1007/s11095-010-0264-x. Epub 2010 Oct 21.