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卡托普利从胃内漂浮型缓释片中的持续释放。

Sustained delivery of captopril from floating matrix tablets.

作者信息

Jiménez-Martínez Inéz, Quirino-Barreda Tomás, Villafuerte-Robles Leopoldo

机构信息

Department of Biological Systems, Autonomous Metropolitan University-Xochimilco, Calzada del Hueso 1100, Col. Villa Quietud, C.P. 04960, D.F., Mexico.

出版信息

Int J Pharm. 2008 Oct 1;362(1-2):37-43. doi: 10.1016/j.ijpharm.2008.05.040. Epub 2008 Jun 7.

Abstract

The development of a controlled release formulation of captopril has been a challenge for some time. In this work, the in vitro sustained release of captopril from Metolose SH 4000 SR/sodium bicarbonate floating tablets has been studied, varying the proportions of Metolose and bicarbonate. This was studied at two different compaction pressures. Other studied variables include the kinetics of the hydration volume, the matrices floating time and the matrix density. The results show that matrices compacted at 55 MPa float in the dissolution medium for more than 8h while those compacted at 165 MPa float only when sodium bicarbonate is included in the formulation. The increase of the matrix polymer proportion increases the maximal hydration volume as well as the time to attain this maximum. The matrices hydration volume increases with the inclusion of sodium bicarbonate in the formulation. The matrix density is lower when compacted at 55 MPa. The drug release constant (k) decreases and the exponent indicative of the release mechanism (n) increases with increasing polymer contents. The drug released with time is lesser when sodium bicarbonate is included in the formulation. Carbon dioxide bubbles obstruct the diffusion path and decrease the matrix coherence. The effect of compaction pressure to reduce the drug release rate has to be made clear in further studies.

摘要

一段时间以来,卡托普利控释制剂的研发一直是一项挑战。在这项工作中,研究了卡托普利从甲基纤维素SH 4000 SR/碳酸氢钠漂浮片中的体外缓释情况,改变了甲基纤维素和碳酸氢盐的比例。这是在两种不同的压制压力下进行研究的。其他研究变量包括水合体积动力学、基质漂浮时间和基质密度。结果表明,在55 MPa下压制的基质在溶出介质中漂浮超过8小时,而在165 MPa下压制的基质仅在制剂中包含碳酸氢钠时才漂浮。基质聚合物比例的增加会增加最大水合体积以及达到该最大值的时间。制剂中加入碳酸氢钠后,基质水合体积增加。在55 MPa下压制时,基质密度较低。随着聚合物含量的增加,药物释放常数(k)降低,表明释放机制的指数(n)增加。制剂中加入碳酸氢钠后,随时间释放的药物较少。二氧化碳气泡阻碍了扩散路径并降低了基质的连贯性。压制压力对降低药物释放速率的影响有待在进一步研究中明确。

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