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注射用拉罗他赛脂质微球混悬液解决难溶性和化学不稳定性问题。

Parenteral formulation of larotaxel lipid microsphere tackling poor solubility and chemical instability.

机构信息

School of Pharmacy, Shenyang Pharmaceutical University, China.

School of Pharmacy, Shenyang Pharmaceutical University, China.

出版信息

Int J Pharm. 2014 Jan 2;460(1-2):212-9. doi: 10.1016/j.ijpharm.2013.10.039. Epub 2013 Oct 29.

Abstract

The purpose of this study was to develop a parenteral larotaxel lipid microsphere (LTX-LM) and evaluate its stability. The preformulation study showed that LTX possessed poor solubility (0.057 μg/mL in aqueous phase) and chemical instability. LM was selected as the drug carrier due to its higher drug-loading capacities, higher physicochemical stability and reduced irritation and toxicity. High speed shear mixing and high-pressure homogenization were employed to prepare the LTX-LM. Particle size distribution (PSD), zeta-potential, drug content and entrapment efficiency (EE) were taken as indexes to optimize formulations. The dissolution studies were performed using a ZRS-8G dissolution apparatus according to the paddle method. Degradation kinetics test, freezing and thawing test and long term stability test were combined to evaluate the physicochemical stability of LTX-LM. From the degradation kinetics results, the shelf lives (T90%) of LTX in LM at 25 and 4°C (165, 555 days) were about 20 times as long as those in aqueous phase (200, 676 h), which were dramatically prolonged. The activation energies in aqueous solution and in LM calculated from the slopes were 41.93 and 42.25 kJ/mol. And its frequency factors (A) were 4.9 × 10(3)/s and 2.3 × 10(2)/s, respectively. Freezing and thawing test showed the PSD of LTX-LM became larger and wider increasing from 166.9 ± 53.2 nm to 257.4 ± 85.5 nm with more freeze-thaw cycles. From the long term stability test results, all the parameters changes were in qualified range.

摘要

本研究旨在开发一种注射用紫杉醇脂质微球(LTX-LM)并对其稳定性进行评价。预配方研究表明,LTX 溶解度差(水相中为 0.057μg/mL)且化学稳定性差。由于载药能力高、物理化学稳定性高、刺激性和毒性降低,选择 LM 作为药物载体。采用高速剪切混合和高压匀质法制备 LTX-LM。以粒径分布(PSD)、Zeta 电位、药物含量和包封效率(EE)为指标优化处方。采用 ZRS-8G 溶出仪桨法进行溶出度研究。降解动力学试验、冻融试验和长期稳定性试验相结合,评价 LTX-LM 的物理化学稳定性。从降解动力学结果可知,LTX 在 LM 中 25°C 和 4°C 时的保质期(T90%)分别为在水相中的约 20 倍(200、676 h),显著延长。从斜率计算得出水溶液和 LM 中的活化能分别为 41.93 和 42.25 kJ/mol。其频率因子(A)分别为 4.9×10(3)/s 和 2.3×10(2)/s。冻融试验表明,随着冻融循环次数的增加,LTX-LM 的 PSD 从 166.9±53.2nm 增大到 257.4±85.5nm,变宽。从长期稳定性试验结果可知,所有参数变化均在合格范围内。

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