Aldridge P K, Melvin D W, Williams B A, Bratin K, Kostek L J, Sekulic S S
Analytical Research & Development, Pfizer Central Research, Groton, CT, USA.
J Pharm Sci. 1995 Aug;84(8):909-14. doi: 10.1002/jps.2600840802.
An automated, robotic system has been developed with on-line UV fiber optics for real time dissolution analysis of solid dosage forms. The system is comprised of "off-the-shelf" hardware including a UV-Vis diode array spectrophotometer, fiber optic coupler, immersion probe, robot, and dissolution apparatus. The software system is modular with the functionalities of control, data acquisition, and spectral analysis separated into three Windows applications with communications performed via Dynamic Data Exchange (DDE). The fiber optic spectrophotometer collects a full spectrum over the range of 190-810 nm. Single wavelength UV analysis is performed on dosage forms in six dissolution vessels. The robotic system automates all facets of the analyses: measuring, degassing, and dispensing of the media; thermostating the media to physiologic temperature; dropping the dosage forms into the vessels; immersing the fiber optic probe at the appropriate time intervals; initiating the data acquisition, analyses, and reporting; and emptying and washing of the vessels prior to the next automated run. As a representative dosage form, 10 mg active tablets were selected and analyzed by this method. This fiber optic system has significantly improved the throughput of the robotic systems by eliminating the need for time consuming off-line HPLC or UV analyses. In addition, with the exception of system calibration, it is no longer necessary for laboratory personnel to come in contact with samples.
已开发出一种带有在线紫外光纤的自动化机器人系统,用于固体剂型的实时溶出度分析。该系统由“现成的”硬件组成,包括紫外可见二极管阵列分光光度计、光纤耦合器、浸入式探头、机器人和溶出度测定仪。软件系统是模块化的,控制、数据采集和光谱分析功能被分离到三个Windows应用程序中,通过动态数据交换(DDE)进行通信。光纤分光光度计在190 - 810 nm范围内采集全光谱。对六个溶出度容器中的剂型进行单波长紫外分析。机器人系统使分析的各个方面自动化:测量、脱气和分配介质;将介质恒温至生理温度;将剂型放入容器中;在适当的时间间隔浸入光纤探头;启动数据采集、分析和报告;以及在下一次自动运行之前清空和清洗容器。作为代表性剂型,选择了10 mg活性片剂并用该方法进行分析。这种光纤系统通过消除耗时的离线HPLC或紫外分析的需要,显著提高了机器人系统的通量。此外,除了系统校准外,实验室人员不再需要接触样品。