稀释剂对有效药物成分损失的影响,直到患者摄入粉末制剂。

IF 1.5 4区 医学 Q4 CHEMISTRY, MEDICINAL
Pharmazie Pub Date : 2023-07-01 DOI:10.1691/ph.2023.3544
K Takami, T Fukuda, A Yamatani, Y Ikeuchi-Takahashi
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引用次数: 0

摘要

在粉末制剂中,由于活性药物成分(API)的损失而无法获得所需的治疗剂量是一个问题。在本研究中,我们研究了三种广泛用作药用辅料的乳糖稀释剂,用于配制强的松龙粉末。超细结晶乳糖,通常用作稀释剂在复合粉末配方,作为一个比较。通过分析配药后从单剂量包装中取出的粉剂制剂中强的松龙的量来检测乳糖对原料药损失率的影响。结果表明,Dilactose-F的API损失率最低(22%),其次是粉状乳糖(37.8%)、超细结晶乳糖(45.9%)和结晶型乳糖(48.6%),说明在配制粉状配方时,使用Dilactose-F作为稀释剂可显著改善API损失率。由于商品强的松龙粉剂和乳糖的每种混合物在包装前均在可接受的均匀性和损失率范围内,因此我们认为在患者服用前将粉剂从单剂量包装中取出时发生了API损失。然后,研究了影响原料药损失率的乳糖的物理性质。流动性与原料药损失率之间没有很强的相关性,但粒径分布和容重与原料药损失率有很强的相关性。此外,API损失率最低的Dilactose-F在差示扫描量热法中没有表现出与无水β -乳糖外聚的放热峰,而在粉末x射线衍射中表现出与β -乳糖特异性的放热峰。这些结果表明,在原料药含量较低的粉末复合中,乳糖的物理性质,如粒度分布、堆积密度和结晶形式,与原料药的损失有复杂的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Diluents on Active Pharmaceutical Ingredient Loss Until Patients Ingest Powder Formulation.

In powder formulations, it is a problem that the required therapeutic dose is not obtained because of loss of the active pharmaceutical ingredient (API). In this study, we investigated three types of lactose diluents, which are widely used as pharmaceutical excipients, for dispensing prednisolone powder. Extra-fine crystalline lactose, commonly used as a diluent in compounding powder formulations, was used as a comparison. The effect of lactose on the API loss rate was examined by analyzing the amount of prednisolone in the powder formulation taken out of a single-dose package after dispensing. The results showed that Dilactose-F had the lowest API loss rate (22%), followed by powder lactose (37.8%), extra-fine crystalline lactose (45.9%), and crystal form lactose (48.6%), indicating that the use of Dilactose-F as a diluent significantly improved API loss when compounding the powder formulation. Because each mixture of commercial prednisolone powder and lactose was within acceptable uniformity and loss rate before packaging, we considered that API loss occurred when the powder was taken out of the single-dose package before patients ingested them. Then, the physical properties of these lactose types affecting the API loss rate were examined. Strong correlation was not found between flowability and the API loss rate, but particle size distribution and bulk density were strongly correlated with the API loss rate. Furthermore, Dilactose-F, which showed the lowest API loss rate, did not show an exothermic peak due to epimerization to anhydrous β -lactose in differential scanning calorimetry and showed a peak specific to β -lactose in powder X-ray diffractometer. These results suggested that in powder compounding where the API content is low, the physical properties of lactose, such as particle size distribution, bulk density, and crystalline form, are intricately related to API loss.

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来源期刊
Pharmazie
Pharmazie 医学-化学综合
CiteScore
3.10
自引率
0.00%
发文量
56
审稿时长
1.2 months
期刊介绍: The journal DiePharmazie publishs reviews, experimental studies, letters to the editor, as well as book reviews. The following fields of pharmacy are covered: Pharmaceutical and medicinal chemistry; Pharmaceutical analysis and drug control; Pharmaceutical technolgy; Biopharmacy (biopharmaceutics, pharmacokinetics, biotransformation); Experimental and clinical pharmacology; Pharmaceutical biology (pharmacognosy); Clinical pharmacy; History of pharmacy.
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