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热熔挤出制备的表面活性剂对伊曲康唑-HPMCAS 固体分散体的影响 I:相容性和药物释放。

Effects of Surfactants on Itraconazole-HPMCAS Solid Dispersion Prepared by Hot-Melt Extrusion I: Miscibility and Drug Release.

机构信息

Department of Pharmaceutical Sciences, College of Pharmacy and Health Sciences, St. John's University, 8000 Utopia Parkway, Queens, New York 11439.

Albert Nerken School of Engineering, The Cooper Union for the Advancement of Science and Art, 41 Cooper Square, New York 10003.

出版信息

J Pharm Sci. 2019 Apr;108(4):1453-1465. doi: 10.1016/j.xphs.2018.10.058. Epub 2018 Nov 3.

Abstract

Hydroxypropyl methylcellulose acetate succinate (HPMCAS) has been widely investigated as a carrier for amorphous solid dispersion (ASD) of poorly water-soluble drugs. However, its use has mostly been limited to ASDs prepared by spray drying using organic solvents, and the solvent-free method, hot-melt extrusion (HME), has only limited use because it requires high processing temperature where the polymer and drug may degrade. In this investigation, surfactants were used as plasticizers to reduce the processing temperature. Their effects on drug release were also determined. To determine suitability of using surfactants, the miscibility of HPMCAS with 3 surfactants (poloxamer 188, poloxamer 407, and d-alpha tocopheryl polyethylene glycol 1000 succinate) and a model drug, itraconazole (ITZ), was studied by film casting. HPMCAS was miscible with ITZ (>30%) and each surfactant (>20%), and in ternary HPMCAS-ITZ-surfactant (60:20:20) system. ASDs prepared by HME of HPMCAS-ITZ-surfactant mixtures (70:20:10 and 65:20:15) at 160°C were physically stable after exposure to 40°C and 75% relative humidity for 1 month. The presence of 15% w/w surfactant provided up to 50% drug release at pH 1 as compared to only 8% from ASDs with HPMCAS alone. On changing the pH of the dissolution medium from 1 to 6.8 in a step-dissolution process, complete drug release (90%-100%) and extremely high apparent supersaturation (∼75,000 times) of ITZ were observed when the solutions were filtered through 0.45 μm filters. The apparently supersaturated solutions consisted of colloidal particles of ∼300 nm size. The present study demonstrates that stable ASDs with improved processability and drug release may be prepared by HME.

摘要

羟丙甲纤维素醋酸琥珀酸酯(HPMCAS)已被广泛研究作为制备无定形固体分散体(ASD)的载体,用于改善水溶性差的药物的性能。然而,其应用主要局限于使用有机溶剂喷雾干燥制备的 ASD,而无溶剂的热熔挤出(HME)方法由于需要聚合物和药物可能降解的高加工温度,因此使用有限。在这项研究中,使用表面活性剂作为增塑剂来降低加工温度。还确定了它们对药物释放的影响。为了确定使用表面活性剂的适用性,通过薄膜铸造研究了 HPMCAS 与 3 种表面活性剂(泊洛沙姆 188、泊洛沙姆 407 和 d-α生育酚聚乙二醇 1000 琥珀酸酯)和模型药物伊曲康唑(ITZ)的混溶性。HPMCAS 与 ITZ(>30%)和每种表面活性剂(>20%)以及三元 HPMCAS-ITZ-表面活性剂(60:20:20)系统混溶。在 160°C 下通过 HME 制备的 HPMCAS-ITZ-表面活性剂混合物(70:20:10 和 65:20:15)在暴露于 40°C 和 75%相对湿度 1 个月后物理稳定。与单独使用 HPMCAS 的 ASD 相比,含有 15%w/w 表面活性剂可提供高达 50%的药物在 pH1 下的释放。在逐步溶解过程中,将溶解介质的 pH 从 1 改变到 6.8 时,当溶液通过 0.45μm 过滤器过滤时,观察到 ITZ 的完全药物释放(90%-100%)和极高的表观过饱和度(~75000 倍)。显然过饱和溶液由约 300nm 大小的胶体颗粒组成。本研究表明,通过 HME 可以制备具有改善的加工性能和药物释放的稳定 ASD。

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