Industrial Pharmacy Research Group, Department of Pharmaceutical Sciences, University of Basel, Mülhauserstrasse 51, 4056 Basel, Switzerland.
Acta Biomater. 2010 Aug;6(8):3101-9. doi: 10.1016/j.actbio.2010.01.044. Epub 2010 Feb 2.
Sucrose esters (SE) are esters of sucrose and fatty acids with various hydrophilic-lipophilic properties which have attracted interest from being used in pharmaceutical applications. This study aimed to gain insight into the use of SE as controlled release agents for direct compacted matrix tablets. The study focused on the effect of hydrophilic-lipophilic properties on tableting properties and drug release. Sucrose stearate with hydrophilic-lipophilic balance (HLB) values ranging from 0 to 16 was systematically tested. Tablet formulations contained SE, metoprolol tartrate as a highly soluble model drug and dibasic calcium phosphate dihydrate as a tablet formulation filler in the ratio 1:1:2. The compaction behaviour of matrix tablets was compared with the compacts of individual starting materials as reference. SE incorporation improved the plasticity, compressibility and lubricating property of powder mixtures. The hydrophilic-lipophilic properties of SE affected tableting properties, drug release rate and release mechanism. Increasing hydrophilicity corresponding to the increased monoesters in SE composition increased the relative porosity, elastic recovery and tensile strength of the tablets due to the increased hydrogen bonding between the monoesters. This also facilitated the swelling behaviour of SE, which sustained the drug release rate. A sustained release effect prevailed in tablets containing SE with HLB values of 3-16. The ability to improve the tableting properties as well as sustain the drug release rate of the highly soluble model drug via gelation of SE highlights SE as promising controlled release regulators for direct compacted matrix tablets comprising drugs with various solubilities according to the Biopharmaceutics Classification System.
蔗糖酯(SE)是蔗糖和脂肪酸的酯,具有各种亲水亲油性质,这使其在药物应用中受到关注。本研究旨在深入了解 SE 作为直接压缩基质片剂的控释剂的用途。该研究重点研究了亲水亲油性质对片剂性质和药物释放的影响。系统测试了亲水亲油平衡(HLB)值从 0 到 16 的硬脂酸蔗糖酯。片剂配方含有 SE、酒石酸美托洛尔作为高水溶性模型药物和二水合磷酸氢钙作为片剂配方填充剂,比例为 1:1:2。将基质片剂的压缩行为与作为参考的单一起始材料的压块进行了比较。SE 的掺入改善了粉末混合物的塑性、可压缩性和润滑性能。SE 的亲水亲油性质影响片剂性质、药物释放速率和释放机制。SE 组成中增加的单酯对应于亲水性的增加,从而增加了片剂的相对孔隙率、弹性恢复和拉伸强度,这是由于单酯之间增加的氢键所致。这也促进了 SE 的溶胀行为,从而维持了药物的释放速率。在含有 HLB 值为 3-16 的 SE 的片剂中,存在持续释放效应。SE 能够改善高水溶性模型药物的压片性能并维持其释放速率,这表明 SE 作为直接压缩基质片剂的有前途的控释调节剂,适用于根据生物药剂学分类系统具有各种溶解度的药物。