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阿洛昔(盐酸帕洛诺司琼)与磷酸地塞米松混合后的相容性和稳定性。

Compatibility and stability of aloxi (palonosetron hydrochloride) admixed with dexamethasone sodium phosphate.

作者信息

Trissel Lawrence A, Zhang Yanping

机构信息

Clinical Pharmaceutics Research, Division of Pharmacy, The University of Texas, M.D. Anderson Cancer Center, Houston, Texas.

出版信息

Int J Pharm Compd. 2004 Sep-Oct;8(5):398-403.

Abstract

The purpose of this study was to evaluate the physical and chemical stability of palonosetron hydrochloride 0.25 mg admixed with dexamethasone (as sodium phophate) 10 mg or 20 mg in 5% dextrose injection or 0.9% sodium chloride injection in polyvinylchloride minibags, and also admixed with dexamethasone (as sodium phosphate) 3.3 mg in 5% dextrose injection or 0.9% sodium chloride injection in polypropylene syringes, at 4 deg C stored in the dark for 14 days, and at 23 deg C exposed to normal laboratory fluorescent light over 48 hours. Test samples of palonosetron hydrochloride 5 micrograms/mL with dexamethasone (as sodium phosphate) 0.2 mg/mL and also 0.4 mg/mL were prepared in polyvinylchloride minibags of each infusion solution. Additionally, palonosetron hydrochloride 25 micrograms/mL with dexamethasone (as sodium phosphate) 0.33 mg/mL in each infusion solution were prepared as 10 mL of test solution in 20-mL polypropylene syringes. Evaluations for physical and chemical stability were performed on samples taken initially and after 1, 3, 7 and 14 days of storage at 4 deg C and after 1, 4, 24 and 48 hours at 23 deg C. Physical stability was assessed using visual observation in normal room light and using a high-intensity monodirectional light beam. In addition, turbidity and particle content were measured electronically. Chemical stability of the drug was evaluated by using a stability-indicating high-performance liquid chromatographic analytical technique. All samples were physically compatible throughout the study. The solutions remained clear and showed little or no change in particulate burden and haze level. Additionally, little or no loss of palonosetron hydrochloride and dexamethasone occurred in any of the samples at either temperature throughout the entire study period. Admixtures of palonosetron hydrochloride with dexamethasone sodium phosphate in 5% dextrose injection or in 0.9% sodium chloride injection packaged in polyvinylchloride minibags or in polypropylene syringes were physically compatible and chemically stable for at least 48 hours at room temperature and for 14 days under refrigeration.

摘要

本研究旨在评估0.25 mg盐酸帕洛诺司琼与10 mg或20 mg地塞米松(磷酸钠)在5%葡萄糖注射液或0.9%氯化钠注射液中于聚氯乙烯迷你袋中混合后的物理和化学稳定性,以及0.25 mg盐酸帕洛诺司琼与3.3 mg地塞米松(磷酸钠)在5%葡萄糖注射液或0.9%氯化钠注射液中于聚丙烯注射器中混合后的物理和化学稳定性,于4℃避光储存14天,并于23℃暴露于正常实验室荧光灯下48小时。在每种输液溶液的聚氯乙烯迷你袋中制备了浓度为5微克/毫升盐酸帕洛诺司琼与0.2毫克/毫升和0.4毫克/毫升地塞米松(磷酸钠)的测试样品。此外,在20毫升聚丙烯注射器中制备了10毫升测试溶液,其中含有浓度为25微克/毫升盐酸帕洛诺司琼与0.33毫克/毫升地塞米松(磷酸钠)。对在4℃储存1天、3天、7天和14天后以及在23℃储存1小时、4小时、24小时和48小时后采集的样品进行物理和化学稳定性评估。通过在正常室内光线下目视观察以及使用高强度单向光束评估物理稳定性。此外,通过电子方式测量浊度和颗粒含量。使用稳定性指示高效液相色谱分析技术评估药物的化学稳定性。在整个研究过程中,所有样品在物理上都是相容的。溶液保持澄清,颗粒负荷和浑浊度几乎没有变化或没有变化。此外,在整个研究期间,在任何一个温度下,任何样品中盐酸帕洛诺司琼和地塞米松的损失都很少或没有损失。盐酸帕洛诺司琼与地塞米松磷酸钠在5%葡萄糖注射液或0.9%氯化钠注射液中于聚氯乙烯迷你袋或聚丙烯注射器中混合后,在室温下至少48小时以及在冷藏条件下14天内物理相容且化学稳定。

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