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热熔挤出法制备硝苯地平无定形固体分散体中机械能和热能的影响:制备和物理稳定性。

Influence of mechanical and thermal energy on nifedipine amorphous solid dispersions prepared by hot melt extrusion: Preparation and physical stability.

机构信息

Molecular Pharmaceutics and Drug Delivery, College of Pharmacy, The University of Texas at Austin, 2409 University Avenue, 78712 Austin, TX, USA.

Small Molecule Design and Development, Lilly Research Laboratories, Eli Lilly and Company, 46221 Indianapolis, IN, USA.

出版信息

Int J Pharm. 2019 Apr 20;561:324-334. doi: 10.1016/j.ijpharm.2019.03.014. Epub 2019 Mar 8.

Abstract

Hot melt extrusion (HME) has been used to prepare solid dispersions, especially molecularly dispersed amorphous solid dispersions (ASDs) for solubility enhancement purposes. The energy generated by the extruder in the form of mechanical and thermal output enables the dispersion and dissolution of crystalline drugs in polymeric carriers. However, the impact of this thermal and mechanical energy on ASD systems remains unclear. We selected a model ASD system containing nifedipine (NIF) and polyvinylpyrrolidone vinyl acetate (PVP/VA 64) to investigate how different types of energy input affect the preparation and physical stability of ASDs. Formulations were prepared using a Leistritz Nano-16 extruder, and we varied the screw design, barrel temperature, screw speed, and feed rate to control the mechanical and thermal energy input. Specific mechanical energy (SME) was calculated to quantitate the mechanical energy input, and the thermal energy was estimated using barrel temperature. We find that both mechanical and thermal energy inputs affect the conversion of crystalline NIF into an amorphous form, and they also affect the level of mixing and the degree of homogeneity in NIF ASDs. However, for small size extruders (e.g., Leistritz Nano-16), thermal energy is more efficient than mechanical energy in preparing NIF ASDs that have better stability.

摘要

热熔挤出(HME)已被用于制备固体分散体,特别是用于提高溶解度的分子分散无定形固体分散体(ASD)。挤出机以机械和热输出的形式产生的能量使结晶药物在聚合物载体中分散和溶解。然而,这种热能和机械能对 ASD 系统的影响尚不清楚。我们选择了一个包含硝苯地平(NIF)和聚乙烯吡咯烷酮醋酸乙烯酯(PVP/VA64)的模型 ASD 系统,以研究不同类型的能量输入如何影响 ASD 的制备和物理稳定性。使用 Leistritz Nano-16 挤出机制备配方,并通过改变螺杆设计、机筒温度、螺杆速度和进料速率来控制机械和热能输入。计算特定机械能(SME)以定量机械能量输入,并用机筒温度估算热能。我们发现机械和热能输入都会影响结晶 NIF 转化为无定形形式的程度,并且它们还会影响 NIF ASD 中的混合水平和均匀度。然而,对于小型挤出机(例如 Leistritz Nano-16),在制备具有更好稳定性的 NIF ASD 时,热能比机械能更有效。

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