Department of Pharmacodynamics and Molecular Pharmacology, Faculty of Pharmacy, Collegium Medicum in Bydgoszcz, Nicolaus Copernicus University in Torun, Dr. A. Jurasza 2, 85-089, Bydgoszcz, Poland.
Anal Bioanal Chem. 2024 Apr;416(9):2117-2124. doi: 10.1007/s00216-024-05139-6. Epub 2024 Jan 22.
Analytical chemistry is a broad area of science comprised of many sub-disciplines. Although each sub-discipline has its own dominant trends, one trend is common to all of them: greenness and sustainability. Efforts to develop more ecological and environmentally friendly methods have been ongoing for over a decade with initial attempts largely focusing on limiting the necessary volume of solvents required and eliminating the use of toxic solvents. Over time, the miniaturization of analytical devices gained popularity as a way of not only reducing chemical usage, but also enabling analyses using smaller sample volumes and more "remote" applications (e.g., on-site sampling and analysis). Of course, miniaturization poses numerous challenges for researchers, for instance, in relation to the method's sensitivity and reproducibility. Developments in the design of detection systems have largely helped to mitigate these issues, but they also often restrict the potential for on-site analysis. Therefore, attempts have been made to improve analysis throughout the entire analytical process, from sampling through sample preparation and instrumental analysis to data handling. Furthermore, clinical chemistry labs must adhere to certain regulations and use certified protocols and materials, which precludes the rapid implementation of solutions developed in research labs. What are the obstacles in translating such innovations to practical applications, and what inventions can make a difference in the future? The answers to these two questions define the trends in analytical chemistry in the field of medical analysis.
分析化学是一个包含许多子学科的广泛科学领域。尽管每个子学科都有其自身的主导趋势,但有一种趋势是它们共有的:绿色化和可持续性。十多年来,人们一直在努力开发更具生态和环境友好性的方法,最初的尝试主要集中在限制所需溶剂的必要体积和消除有毒溶剂的使用上。随着时间的推移,分析设备的小型化变得越来越流行,不仅可以减少化学物质的使用,还可以使用更小的样品体积和更“远程”的应用(例如现场采样和分析)进行分析。当然,小型化给研究人员带来了许多挑战,例如与方法的灵敏度和重现性有关的挑战。检测系统设计的发展在很大程度上有助于缓解这些问题,但它们也经常限制现场分析的潜力。因此,人们试图改进从采样到样品制备和仪器分析再到数据处理的整个分析过程中的分析。此外,临床化学实验室必须遵守某些规定并使用经过认证的协议和材料,这使得研究实验室开发的解决方案无法迅速实施。将这些创新转化为实际应用的障碍是什么,以及未来哪些发明可以有所作为?这两个问题的答案定义了医学分析领域分析化学的趋势。