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从胶囊中即时制备利福平颗粒以提高可用性。

Extemporaneous preparation of rifampicin granules from capsules to improve usability.

机构信息

Department of Clinical Pharmaceutics, University of Shizuoka, Shizuoka, Japan

Department of Clinical Research, Shizuoka General Hospital, Shizuoka, Japan.

出版信息

Eur J Hosp Pharm. 2023 Mar;30(e1):e10-e13. doi: 10.1136/ejhpharm-2021-002866. Epub 2021 Aug 18.

Abstract

OBJECTIVES

Manipulation of tablets or capsules is frequently carried out in pharmacies to regulate doses for personalised therapy. We proposed the use of reconstructed granules as a suitable, flexible dosage form and developed an on-site granulation method using a compounding mixer. The aim of this study was to demonstrate the feasibility of small-scale preparation of granules in a pharmacy setting. Rifampicin capsules were used as a model medicine because of the associated need for drug desensitisation therapy.

METHODS

The contents of a rifampicin capsule were granulated using a compounding mixer, and small ointment containers (12 mL) with filling rates of 4%, 8%, 12%, and 16% were used as granulation vessels. The obtained granules were examined for particle size distribution, yield, crystal transition, drug dissolution profile, storage stability, and weight loss during dosing.

RESULTS

The yields increased by >95%, and the span of the particle size distribution decreased to 1.0, as the filling rate increased. The smallest batch size was found to be 0.8 g in a 12 mL vessel. Examination of the resultant granules revealed that granulation did not affect the crystal polymorphism, dissolution profile, or storage stability of rifampicin. Furthermore, the weight loss of the granules during the dosing process was significantly lower than that of the capsule powder content.

CONCLUSIONS

We demonstrated that granules with sufficient quality for clinical use could be extemporaneously prepared using a compounding mixer in pharmacies. This improved the usability of the medicine, preventing weight loss, and making it a suitable alternative formulation for precise personalised pharmacotherapy.

摘要

目的

在药剂科经常对片剂或胶囊进行操作,以调节个体化治疗的剂量。我们提出使用重构颗粒作为一种合适的、灵活的剂型,并使用混合机开发了现场制粒方法。本研究的目的是证明在药剂科小规模制备颗粒的可行性。由于需要进行药物脱敏治疗,利福平胶囊被用作模型药物。

方法

使用混合机对利福平胶囊的内容物进行造粒,并使用填充率为 4%、8%、12%和 16%的小软膏容器作为制粒容器。对所得颗粒的粒径分布、产率、晶型转变、药物溶出曲线、储存稳定性以及给药过程中的重量损失进行了研究。

结果

随着填充率的增加,产率增加了>95%,粒径分布的跨度降低至 1.0。在 12 mL 容器中发现最小的批处理量为 0.8 g。对所得颗粒的检查表明,制粒不会影响利福平的多晶型、溶出曲线或储存稳定性。此外,颗粒在给药过程中的重量损失明显低于胶囊粉末含量的重量损失。

结论

我们证明了使用混合机在药剂科可以临时制备出足够临床使用质量的颗粒。这提高了药物的可用性,防止了重量损失,并使其成为精确个体化药物治疗的合适替代制剂。

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