A bio-predictive release assay for liposomal prednisolone phosphate

IF 10.5 1区 医学 Q1 CHEMISTRY, MULTIDISCIPLINARY
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Abstract

Predictive performance assays are crucial for the development and approval of nanomedicines and their bioequivalent successors. At present, there are no established compendial methods that provide a reliable standard for comparing and selecting these formulation prototypes, and our understanding of the in vivo release remains still incomplete. Consequently, extensive animal studies, with enhanced analytical resolution for both, released and encapsulated drug, are necessary to assess bioequivalence. This significantly raises the cost and duration of nanomedicine development. This work presents the development of a discriminatory and biopredictive release test method for liposomal prednisolone phosphate. Using model-informed deconvolution, we identified an in vivo target release. The experimental design employed a discrete L-optimal configuration to refine the analytical method and determine the impact of in vitro parameters on the dosage form. A three-point specification evaluated the key phases of in vivo release: early (T-5%), intermediate (T-20%), and late release behavior (T-40%), compared to the in vivo release profile of the reference product, NanoCort®. Various levels of shear responses and the influence of clinically relevant release media compositions were tested. This enabled an assessment of the effect of shear on the release, an essential aspect of their in vivo deformation and release behavior. The type and concentration of proteins in the medium influence liposome release. Fetal bovine serum strongly impacted the discriminatory performance at intermediate shear conditions. The method provided deep insights into the release response of liposomes and offers an interesting workflow for in vitro bioequivalence evaluation.

Abstract Image

磷酸泼尼松龙脂质体的生物预测释放测定。
预测性能测定对于开发和批准纳米药物及其生物等效后继药物至关重要。目前,还没有既定的药典方法为比较和选择这些制剂原型提供可靠的标准,而且我们对体内释放的了解仍不全面。因此,要评估生物等效性,就必须进行广泛的动物实验,并提高对释放药物和封装药物的分析分辨率。这大大增加了纳米药物开发的成本和时间。本研究介绍了一种针对脂质体磷酸泼尼松龙的鉴别性和生物预测性释放测试方法。利用模型信息解卷积,我们确定了体内目标释放。实验设计采用了离散 L-最优配置,以完善分析方法并确定体外参数对剂型的影响。三点规范评估了体内释放的关键阶段:早期(T-5%)、中期(T-20%)和晚期(T-40%)释放行为,并与参考产品 NanoCort® 的体内释放曲线进行了比较。测试了各种水平的剪切反应以及临床相关释放介质成分的影响。这样就能评估剪切力对释放的影响,这是体内变形和释放行为的一个重要方面。介质中蛋白质的类型和浓度会影响脂质体的释放。胎牛血清对中等剪切力条件下的判别性能有很大影响。该方法深入揭示了脂质体的释放反应,为体外生物等效性评价提供了有趣的工作流程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Controlled Release
Journal of Controlled Release 医学-化学综合
CiteScore
18.50
自引率
5.60%
发文量
700
审稿时长
39 days
期刊介绍: The Journal of Controlled Release (JCR) proudly serves as the Official Journal of the Controlled Release Society and the Japan Society of Drug Delivery System. Dedicated to the broad field of delivery science and technology, JCR publishes high-quality research articles covering drug delivery systems and all facets of formulations. This includes the physicochemical and biological properties of drugs, design and characterization of dosage forms, release mechanisms, in vivo testing, and formulation research and development across pharmaceutical, diagnostic, agricultural, environmental, cosmetic, and food industries. Priority is given to manuscripts that contribute to the fundamental understanding of principles or demonstrate the advantages of novel technologies in terms of safety and efficacy over current clinical standards. JCR strives to be a leading platform for advancements in delivery science and technology.
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