Shokoya Mariam Majida, Benkő Beáta-Mária, Süvegh Károly, Zelkó Romána, Sebe István
University Pharmacy Department of Pharmacy Administration, Semmelweis University, 7-9 Hőgyes Street, 1092 Budapest, Hungary.
Department of Nuclear Chemistry, Eötvös Loránd University, 1518 Budapest, Hungary.
Pharmaceuticals (Basel). 2023 Feb 7;16(2):252. doi: 10.3390/ph16020252.
The aims of this systematic review are to explore the possibilities of using the positron annihilation lifetime spectroscopy (PALS) method in the pharmaceutical industry and to examine the application of PALS as a supportive, predictive method during the research process. In addition, the review aims to provide a comprehensive picture of additional medical and pharmaceutical uses, as the application of the PALS test method is limited and not widely known in this sector. We collected the scientific literature of the last 20 years (2002-2022) from several databases (PubMed, Embase, SciFinder-n, and Google Scholar) and evaluated the data gathered in relation to the combination of three directives, namely, the utilization of the PALS method, the testing of solid systems, and their application in the medical and pharmaceutical fields. The application of the PALS method is discussed based on three large groups: substances, drug delivery systems, and medical devices, starting with simpler systems and moving to more complex ones. The results are discussed based on the functionality of the PALS method, via microstructural analysis, the tracking of ageing and microstructural changes during stability testing, the examination of the effects of excipients and external factors, and defect characterization, with a strong emphasis on the benefits of this technique. The review highlights the wide range of possible applications of the PALS method as a non-invasive analytical tool for examining microstructures and monitoring changes; it can be effectively applied in many fields, alone or with complementary testing methods.
本系统评价的目的是探索在制药行业中使用正电子湮没寿命谱(PALS)方法的可能性,并研究PALS作为研究过程中的一种辅助性预测方法的应用。此外,由于PALS测试方法的应用有限且在该领域并不广为人知,该评价旨在全面介绍其在医学和制药方面的其他用途。我们从多个数据库(PubMed、Embase、SciFinder-n和谷歌学术)收集了过去20年(2002 - 2022年)的科学文献,并根据三个指标对收集到的数据进行了评估,即PALS方法的应用、固体系统的测试及其在医学和制药领域的应用。基于三大类进行讨论PALS方法的应用:物质、药物递送系统和医疗设备,从较简单的系统开始,逐步过渡到更复杂的系统。通过微观结构分析、稳定性测试期间老化和微观结构变化的跟踪、辅料和外部因素影响的检查以及缺陷表征,基于PALS方法的功能对结果进行了讨论,重点强调了该技术的优势。该评价强调了PALS方法作为一种用于检查微观结构和监测变化的非侵入性分析工具的广泛可能应用;它可以单独或与补充测试方法一起有效地应用于许多领域。