多型HPMC混合体系制备胶囊壳的性能研究

IF 1.7 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Jun Wu , Qingyang Meng , Ruihe Zhao , Yingling Zhu , Jianhua Huang , Yuan Zhang , Jingrou Wang , Jun Gong
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引用次数: 0

摘要

本研究的目的是制定一种可行的配方策略,旨在最大限度地减少HPMC胶囊中的凝胶含量,避免因胶囊内凝胶含量过高而导致不同介质环境下药物释放率变化的问题。通过将不同凝胶温度的各类HPMC混合,使配方随着温度的降低,易于在模具上达到阶段性凝胶化,有效地减少了胶凝剂的需用量。因此,凝胶剂含量的减少确保了胶囊壳的溶解不受介质pH值和介质中离子类型的影响。该特性允许在不同介质中均匀释放药物,在大约20分钟内完全释放药物。该改进配方不仅减少了传统HPMC配方中的胶凝剂含量,而且具有不含任何有机溶剂和操作简单的特点,从而为HPMC胶囊的合成提供了一种可靠且广泛适用的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the properties of capsule shell prepared by multi-type HPMC mixed system
The objective of this study is to develop a viable formulation strategy aimed at minimizing the gel content in HPMC capsules and avoiding the issue of variable drug release rates in the different media environments attributed to the excessive gel content within the capsules. Through mixing various types of HPMC with different gel temperatures, the formulation facilitates reaching the staged gelation upon the mold as the temperature decreases, which effectively reduces the requisite amount of gelling agent. Consequently, the decrease in gel agent content ensures that the dissolution of the capsule shell is unaffected by the pH of the medium and the type of ions in the medium. This property allows for uniform drug release rates across diverse media, with complete drug release occurring within approximately 20 min. This improved formula not only reduces the gelling agent content in conventional HPMC formulations but also is characterized by the absence of any organic solvents and the simplicity of operation, thus providing a dependable and widely applicable method for the synthesis of HPMC capsules.
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来源期刊
Medical Engineering & Physics
Medical Engineering & Physics 工程技术-工程:生物医学
CiteScore
4.30
自引率
4.50%
发文量
172
审稿时长
3.0 months
期刊介绍: Medical Engineering & Physics provides a forum for the publication of the latest developments in biomedical engineering, and reflects the essential multidisciplinary nature of the subject. The journal publishes in-depth critical reviews, scientific papers and technical notes. Our focus encompasses the application of the basic principles of physics and engineering to the development of medical devices and technology, with the ultimate aim of producing improvements in the quality of health care.Topics covered include biomechanics, biomaterials, mechanobiology, rehabilitation engineering, biomedical signal processing and medical device development. Medical Engineering & Physics aims to keep both engineers and clinicians abreast of the latest applications of technology to health care.
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