University of Greifswald, Institute of Pharmacy, Department of Biopharmaceutics and Pharmaceutical Technology, Center of Drug Absorption and Transport, Felix-Hausdorff-Strasse 3, 17487 Greifswald, Germany.
University of Greifswald, Institute of Pharmacy, Department of Biopharmaceutics and Pharmaceutical Technology, Center of Drug Absorption and Transport, Felix-Hausdorff-Strasse 3, 17487 Greifswald, Germany.
Eur J Pharm Sci. 2017 Sep 30;107:71-77. doi: 10.1016/j.ejps.2017.06.037. Epub 2017 Jun 30.
Novel in vitro dissolution tools can aid the development of orally administered drugs by explaining dosage form related in vivo phenomena that are not explainable with standard test apparatuses. Such novel tools are able to mimic various parameters in accordance with gastrointestinal conditions. Hereby, in vivo occurring pressure events were shown to be of major importance since they largely affect dosage form disintegration, drug dissolution and subsequently resulting drug plasma concentration profiles. The aim of the present study was to investigate the feasibility of producing biorelevant pressure events with standard test apparatuses and with the dynamic open flow through test apparatus. For this purpose, we used the SmartPill®, a swallowable capsule that houses a pressure sensor and that was already applied to gather human in vivo data. Among the standard apparatuses, highest pressures were measured in the reciprocating cylinder apparatus and the disintegration tester. No relevant pressure peaks could be detected in the paddle apparatus and the mini paddle apparatus. In contrast, the dynamic open flow through test apparatus enabled the simulation of complete gastric pressure profiles as they occur in vivo. The present work underlines the potential of novel in vitro dissolution models as useful tools during the drug development process as well as for explanatory purposes.
新型体外溶解工具可以通过解释标准测试仪器无法解释的与剂型相关的体内现象,来帮助口服药物的开发。这些新型工具能够根据胃肠道条件模拟各种参数。由此可见,体内发生的压力事件非常重要,因为它们会极大地影响剂型的崩解、药物的溶解以及随后的药物血浆浓度曲线。本研究的目的是调查使用标准测试仪器和动态开放流动测试仪器产生生物相关压力事件的可行性。为此,我们使用了 SmartPill®,这是一种可吞咽的胶囊,其中装有压力传感器,并且已经用于收集人体体内数据。在标准仪器中,在往复圆筒仪器和崩解测试仪中测量到的压力最高。在桨式仪器和迷你桨式仪器中未检测到相关的压力峰值。相比之下,动态开放流动测试仪器能够模拟体内发生的完整胃压曲线。本工作强调了新型体外溶解模型在药物开发过程中作为有用工具的潜力,以及用于解释目的的潜力。