比较烘箱干燥法和冷冻干燥法生产含富马酸喹硫平的快速熔融薄膜。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-10-01 DOI:10.1080/03639045.2024.2409168
Hiu Ching Phang, Zhi Qi Ng, Najwa Mohamad, Yik Ling Chew, Ashok Balaraman, Phei Er Kee, Kenji Mishima, Bey Hing Goh, Long Chiau Ming, Kai Bin Liew
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引用次数: 0

摘要

背景:富马酸喹硫平(QTP)是精神分裂症患者的常用处方药:富马酸喹硫平(QTP)是精神分裂症患者的常用处方药,通常以片剂或口服混悬液形式提供,给患者带来了给药困难、窒息恐惧和苦味厌恶等挑战。快速熔融薄膜(FMF)提供了一种替代剂型,其开发过程简单,易于给药,且药物吸收和起效迅速:本研究旨在使用溶剂浇注法制备不同配方的快速熔融薄膜,并比较不同干燥方法(包括烘箱干燥和冷冻干燥)对薄膜性能的影响:方法:通过调节不同浓度的聚合物类型(淀粉、羟丙基甲基纤维素(HPMC)和瓜尔豆胶)以及固定浓度的 QTP 和其他辅料,制成各种配方。表征测试包括表面形态、重量、厚度、pH 值、拉伸强度、伸长长度、杨氏模量、耐折度和崩解时间。确定了最佳 FMF 配方,并进一步评估了水分和药物含量、溶解行为、加速稳定性、X 射线衍射(XRD)和适口性:结果:使用烘箱干燥法研制的含 10 毫克瓜尔豆胶/薄膜的 FMF 成为最佳选择,它具有理想的薄膜外观、超薄厚度(0.453 ± 0.002 毫米)、适合口服的 pH 值(pH 5.0)、11.810% 的最佳水分含量、快速崩解(52.67 ± 1.53 秒)、高柔韧性(耐折叠性大于 300 次)和较低的杨氏模量(1.308 ± 0.214):事实证明,烘箱干燥法有利于开发含有 QTP 的 FMF,符合所有测试标准,为 QTP 处方提供了另一种选择。
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Comparison of oven drying and freeze drying methods for the production of fast melt films containing quetiapine fumarate.

Background: Quetiapine fumarate (QTP) is commonly prescribed for schizophrenic patient, typically available in tablet or oral suspension form, presenting challenges such as administration difficulties, fear of choking and distaste for its bitter taste. Fast melt films (FMF) offer an alternative dosage form with a simple development process, ease of administration and rapid drug absorption and action onset.

Objective: This study aims to prepare FMF with different formulations using solvent casting methods and to compare the effects of different drying methods, including oven drying and freeze drying, on the properties of the films.

Methods: Various formulations were created by manipulating polymer types (starch, hydroxypropyl methylcellulose (HPMC) and guar gum) at different concentrations, along with fixed concentrations of QTP and other excipients. Characterization tests including surface morphology, weight, thickness, pH, tensile strength, elongation length, Young's modulus, folding endurance and disintegration time were conducted. The optimal FMF formulation was identified and further evaluated for moisture and drug content, dissolution behavior, accelerated stability, X-ray diffraction (XRD), and palatability.

Results: FMF containing 10 mg guar gum/film developed using oven drying emerged as the optimum choice, exhibiting desirable film appearance, ultra-thin thickness (0.453 ± 0.002 mm), appropriate pH for oral intake (pH 5.0), optimal moisture content of 11.810%, rapid disintegration (52.67 ± 1.53 s), high flexibility (folding endurance > 300 times) and lower Young's modulus (1.308 ± 0.214).

Conclusion: Oven drying method has been proven to be favorable for developing FMF containing QTP, meeting all testing criteria and providing an alternative option for QTP prescription.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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