硫唑嘌呤悬浮液在PCCA基质中的理化和微生物稳定性。

Q4 Medicine
Yahoda V Pramar, Tarun K Mandal, Levon A Bostanian, Cyndy Kader, Tommy C Morris, Richard A Graves
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引用次数: 0

摘要

硫唑嘌呤用于治疗类风湿性关节炎的症状和预防移植排斥反应。对硫唑嘌呤治疗用途的综述揭示了给药灵活性的必要性。使用口服液体剂型可以很容易地实现这种灵活性。然而,目前还不存在硫唑嘌呤的商业液体剂型。硫唑嘌呤在市场上只能买到50毫克的片剂。纯药物粉末的即时复合悬浮液将提供一种灵活、可定制的选择,以方便准确的给药方式满足患者的独特需求。本研究的目的是测定PCCA基质悬浮液It中即时复合的硫唑嘌呤悬浮液的物理化学和微生物稳定性。这种基质是一种不含糖、不含尼泊金酯、不含染料和无麸质的触变载体,含有从僧果中获得的天然甜味剂。研究设计包括两种硫唑嘌呤浓度,以提供括号内浓度范围内的稳定性文件,供配制药剂师最终使用。建立并验证了一种稳定高效液相色谱法测定PCCA悬浮液中硫唑嘌呤的化学稳定性。在PCCA悬浮液It中以10 mg/mL和50 mg/mL的浓度制备硫唑嘌呤的悬浮液,所述浓度被选择为代表药物通常给药的范围。样品在两种温度条件下(5°C和25°C)储存在琥珀色塑料处方瓶中。最初对样品进行分析,并在以下时间点(天)进行分析:7、14、28、49、63、90、119和182。还记录了物理数据,如pH、粘度和外观。测试了微生物稳定性。所有测量结果一式三份。稳定的临时产品被定义为在整个采样期内保持至少90%的初始药物浓度并防止微生物生长的产品。研究表明,在所研究的两种温度下,硫唑嘌呤的浓度均未低于标签声明的96.8%(初始药物浓度)。未观察到微生物生长。pH值保持恒定。悬浮液的粘度允许药物颗粒在摇动时容易地重新分散。这项研究表明,硫唑嘌呤在PCCA悬浮液中在冰箱和室温下保持182天的物理、化学和微生物稳定性,从而为硫唑嘌呤的液体剂型提供了一种可行的复合替代品,并延长了使用期限以满足患者需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physiochemical and Microbiological Stability of Azathioprine Suspensions in PCCA Base, SuspendIt.

Azathioprine is used to treat the symptoms of rheumatoid arthritis and for the prevention of transplant rejection. A review of the therapeutic uses of Azathioprine reveals the need for flexibility in dosing. This flexibility is readily achieved using an oral liquid dosage form. However, no commercial liquid dosage form of Azathioprine currently exists. Azathioprine is commercially available only as a 50-mg tablet. An extemporaneously compounded suspension from pure drug powder would provide a flexible, customizable option to meet unique patient needs with convenient and accurate dosing options. The purpose of this study was to determine the physicochemical and microbiological stability of extemporaneously compounded Azathioprine suspensions in the PCCA Base, SuspendIt. This base is a sugar-free, paraben free, dye-free, and gluten-free thixotropic vehicle containing a natural sweetener obtained from the monk fruit. The study design included two Azathioprine concentrations to provide stability documentation over a bracketed concentration range for eventual use by compounding pharmacists. A robust stability-indicating high-performance liquid chromatographic assay for the determination of the chemical stability of Azathioprine in PCCA SuspendIt was developed and validated. Suspensions of Azathioprine were prepared in PCCA SuspendIt at 10-mg/mL and 50-mg/mL concentrations, selected to represent a range within which the drug is commonly dosed. Samples were stored in amber plastic prescription bottles at two temperature conditions (5°C and 25°C). Samples were assayed initially, and on the following time points (days): 7, 14, 28, 49, 63, 90, 119, and 182. Physical data such as pH, viscosity, and appearance were also noted. Microbiological stability was tested. All measurements were obtained in triplicate. A stable extemporaneous product is defined as one that retains at least 90% of the initial drug concentration throughout the sampling period and is protected against microbial growth. The study showed that Azathioprine concentrations did not go below 96.8% of the label claim (initial drug concentration) at both temperatures studied. No microbial growth was observed. The pH values remained constant. The viscosity of the suspensions allowed easy re-dispersal of the drug particles upon shaking. This study demonstrates that Azathioprine is physically, chemically, and microbiologically stable in PCCA SuspendIt for 182 days in the refrigerator and at room temperature, thus providing a viable, compounded alternative for Azathioprine in a liquid dosage form, with an extended beyond-use date to meet patient needs.

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来源期刊
CiteScore
0.40
自引率
0.00%
发文量
62
期刊介绍: The International Journal of Pharmaceutical Compounding (IJPC) is a bi-monthly, scientific and professional journal emphasizing quality pharmaceutical compounding. IJPC is the only publication that covers pharmaceutical compounding topics relevant and necessary to empower pharmacists to meet the needs of today"s patients. No other publication features hands-on, how-to compounding techniques or the information that contemporary pharmacists need to provide individualized care.
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