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通过标准化且与生理相关的体外渗透研究助力的舌下环苯扎林片的制剂研发

Formulation Development of Sublingual Cyclobenzaprine Tablets Empowered by Standardized and Physiologically Relevant Ex Vivo Permeation Studies.

作者信息

Majid Haidara, Puzik Andreas, Maier Tanja, Merk Raphaela, Bartel Anke, Mueller Hans-Christian, Burckhardt Bjoern B

机构信息

Institute of Clinical Pharmacy and Pharmacotherapy, Heinrich Heine University, 40225 Dusseldorf, Germany.

Hexal AG, Analytical Development, 83607 Holzkirchen, Germany.

出版信息

Pharmaceutics. 2021 Sep 6;13(9):1409. doi: 10.3390/pharmaceutics13091409.

Abstract

Suitable ex vivo models are required as predictive tools of oromucosal permeability between in vitro characterizations and in vivo studies in order to support the development of novel intraoral formulations. To counter a lack of clinical relevance and observed method heterogenicity, a standardized, controlled and physiologically relevant ex vivo permeation model was established. This model combined the Kerski diffusion cell, process automation, novel assays for tissue integrity and viability, and sensitive LC-MS/MS analysis. The study aimed to assess the effectiveness of the permeation model in the sublingual formulation development of cyclobenzaprine, a promising agent for the treatment of psychological disorders. A 4.68-fold enhancement was achieved through permeation model-led focused formulation development. Here, findings from the preformulation with regard to pH and microenvironment-modulating excipients proved supportive. Moreover, monitoring of drug metabolism during transmucosal permeation was incorporated into the model. In addition, it was feasible to assess the impact of dosage form alterations under stress conditions, with the detection of a 33.85% lower permeation due to salt disproportionation. Integrating the coherent processes of disintegration, dissolution, permeation, and metabolization within a physiological study design, the model enabled successful formulation development for cyclobenzaprine sublingual tablets and targeted development of patient-oriented drugs for the oral cavity.

摘要

为了支持新型口腔内制剂的开发,需要合适的体外模型作为体外表征和体内研究之间口腔黏膜渗透性的预测工具。为了解决缺乏临床相关性和观察到的方法异质性问题,建立了一个标准化、可控且具有生理相关性的体外渗透模型。该模型结合了Kerski扩散池、过程自动化、用于组织完整性和活力的新型检测方法以及灵敏的液相色谱-串联质谱分析。该研究旨在评估渗透模型在环苯扎林舌下制剂开发中的有效性,环苯扎林是一种治疗心理障碍的有前景的药物。通过渗透模型引导的聚焦制剂开发,实现了4.68倍的增强。在此,关于pH值和微环境调节辅料的处方前研究结果得到了支持。此外,该模型还纳入了对跨黏膜渗透过程中药物代谢的监测。此外,在应激条件下评估剂型改变的影响是可行的,由于盐歧化作用,检测到渗透率降低了33.85%。该模型在生理研究设计中整合了崩解、溶解、渗透和代谢等连贯过程,成功实现了环苯扎林舌下片的制剂开发,并针对口腔疾病进行了以患者为导向的药物靶向开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aefd/8472530/62650e190297/pharmaceutics-13-01409-g0A1.jpg

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