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一种高载药量冻干依托泊苷亚微米乳静脉注射制剂的制备、评价及在大鼠体内的药代动力学研究。

A lyophilized etoposide submicron emulsion with a high drug loading for intravenous injection: preparation, evaluation, and pharmacokinetics in rats.

机构信息

College of Pharmacy, Shenyang Pharmaceutical University, Shenyang, PR China.

出版信息

Drug Dev Ind Pharm. 2010 Dec;36(12):1444-53. doi: 10.3109/03639045.2010.487267.

Abstract

OBJECTIVE

To develop a submicron emulsion for etoposide with a high drug loading capacity using a drug-phospholipid complex combined with drug freeze-drying techniques.

METHODS

An etoposide-phospholipid complex (EPC) was prepared and its structure was confirmed by X-ray diffraction and differential scanning calorimetry analysis. A freeze-drying technique was used to produce lyophilized etoposide emulsions (LEPE), and LEPE was investigated with regard to their appearance, particle size, and zeta potential. The pharmacokinetic study in vivo was determined by the UPLC/MS/MS system.

RESULTS

It showed that EPC significantly improved the liposolubility of etoposide, indicating a high drug loading intravenous emulsion could be easily prepared by EPC. Moreover, the obtained loading of etoposide in the submicron emulsion was 3.0 mg/mL, which was three times higher than that of the previous liquid emulsions. The optimum cryoprotectant was trehalose (15%) in freeze-drying test. The median diameter, polydispersity index, and zeta potential of the optimum formulation of LEPE were 226.1 ± 5.1 nm, 0.107 ± 0.011, and -36.20 ± 1.13 mV, respectively. In addition, these parameters had no significant change during 6 months storage at 4 ± 2°C. The main pharmacokinetic parameters exhibited no significant differences between LEPE and etoposide commercial solution except for area under the concentration-time curve and clearance.

CONCLUSIONS

The stable etoposide emulsion with a high drug loading was successfully prepared, indicating the amount of excipients such as the oil phase and emulsifiers significantly decreased following administration of the same dose of drug, effectively reducing the metabolism by patients while increasing their compliance. Therefore, LEPE has a great potential for clinical applications.

摘要

目的

通过药物-磷脂复合物结合药物冷冻干燥技术,开发一种载药量高的依托泊苷亚微乳。

方法

制备依托泊苷-磷脂复合物(EPC),并通过 X 射线衍射和差示扫描量热分析对其结构进行确认。采用冷冻干燥技术制备冻干依托泊苷乳剂(LEPE),并对其外观、粒径和 Zeta 电位进行考察。采用 UPLC/MS/MS 系统进行体内药代动力学研究。

结果

EPC 显著提高了依托泊苷的脂溶性,表明可以通过 EPC 轻松制备高载药量的静脉乳剂。此外,所获得的亚微乳中依托泊苷的载药量为 3.0mg/mL,是先前液体制剂的 3 倍。冷冻干燥试验中最佳的冻干保护剂为海藻糖(15%)。LEPE 最佳配方的中值粒径、多分散指数和 Zeta 电位分别为 226.1±5.1nm、0.107±0.011 和-36.20±1.13mV。此外,在 4±2°C 下储存 6 个月期间,这些参数没有显著变化。除 AUC 和清除率外,LEPE 与依托泊苷商业溶液的主要药代动力学参数无显著差异。

结论

成功制备了载药量高的依托泊苷稳定乳剂,表明在给予相同剂量药物时,油相和乳化剂等辅料的用量显著减少,有效降低了患者的代谢,同时提高了患者的顺应性。因此,LEPE 具有很大的临床应用潜力。

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