In-situ sequential crystallization of fenofibrate and tristearin – Understanding the distribution of API in particles and stability of solid lipid microparticles from the perspective of crystallization

IF 4.4 2区 医学 Q1 PHARMACOLOGY & PHARMACY
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Abstract

In-situ API crystallization in carrier matrices has attracted extensive attention in recent years for its advantages over traditional preparation processes. However, due to the lack of systemic research on molecular self-assembly behaviors, the products obtained by in-situ crystallization suffer from the problems of polymorphic transformation and drug expulsion during storage, limiting its industrial application. This paper investigates the in-situ sequential crystallization behavior of tristearin (SSS) and fenofibrate (FEN), utilizing SSS as the carrier and FEN as the API. It was found that the behavior of mixed crystallization significantly differs from single-component crystallization, including direct formation of stable form of SSS and the rapid crystallization of FEN. During the crystallization process, the melting FEN promotes the movement of SSS molecules, while the sliding of SSS lamellae, in turn, provides a mechanical stimulus to enhance the nucleation of FEN. Based on the observed synergistic crystallization behavior, the distribution and stability of the API within FEN solid lipid microparticles (SLMs) during storage were evaluated, while also examining the stability variations in SLMs formulated at different cooling rates and drug loading concentrations. The findings indicate that the initial nucleated FEN results in a decrease in the surrounding molten FEN and the irregularity of the SSS lamellas, thereby preventing the remaining molten FEN from achieving complete crystallization within a brief period. Due to the compatibility between FEN and SSS, some SSS may blend with the molten FEN, potentially resulting in further crystallization during storage and consequently increasing the risk of drug expulsion.

Abstract Image

非诺贝特和三尖杉酯的原位顺序结晶--从结晶的角度了解原料药在颗粒中的分布和固体脂质微粒的稳定性。
近年来,载体基质中的原料药原位结晶因其优于传统制备工艺而受到广泛关注。然而,由于缺乏对分子自组装行为的系统研究,原位结晶得到的产物在贮存过程中存在多晶型转化和药物排出等问题,限制了其工业应用。本文以 SSS 为载体,FEN 为原料药,研究了三苯乙烯(SSS)和非诺贝特(FEN)的原位顺序结晶行为。研究发现,混合结晶的行为与单组分结晶明显不同,包括直接形成稳定的 SSS 和 FEN 的快速结晶。在结晶过程中,FEN 的熔化促进了 SSS 分子的运动,而 SSS 片层的滑动反过来又为 FEN 的成核提供了机械刺激。根据观察到的协同结晶行为,对 FEN 固体脂质微颗粒(SLMs)中原料药在储存期间的分布和稳定性进行了评估,同时还研究了不同冷却速率和药物负载浓度下配制的 SLMs 的稳定性变化。研究结果表明,最初成核的 FEN 会导致周围熔融 FEN 的减少和 SSS 片层的不规则性,从而使剩余的熔融 FEN 无法在短时间内完全结晶。由于 FEN 和 SSS 之间的相容性,一些 SSS 可能会与熔融 FEN 混合,有可能在储存期间进一步结晶,从而增加药物排出的风险。
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来源期刊
CiteScore
8.80
自引率
4.10%
发文量
211
审稿时长
36 days
期刊介绍: The European Journal of Pharmaceutics and Biopharmaceutics provides a medium for the publication of novel, innovative and hypothesis-driven research from the areas of Pharmaceutics and Biopharmaceutics. Topics covered include for example: Design and development of drug delivery systems for pharmaceuticals and biopharmaceuticals (small molecules, proteins, nucleic acids) Aspects of manufacturing process design Biomedical aspects of drug product design Strategies and formulations for controlled drug transport across biological barriers Physicochemical aspects of drug product development Novel excipients for drug product design Drug delivery and controlled release systems for systemic and local applications Nanomaterials for therapeutic and diagnostic purposes Advanced therapy medicinal products Medical devices supporting a distinct pharmacological effect.
文献相关原料
公司名称 产品信息 采购帮参考价格
上海源叶 FEN
¥22.00~¥18770.00
阿拉丁 FEN
¥22.00~¥18770.00
上海源叶 carbon black
¥69.00~¥15617.30
阿拉丁 carbon black
¥69.00~¥15617.30
上海源叶 SSS
¥17.00~¥6172.00
阿拉丁 SSS
¥17.00~¥6172.00
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