Solid-phase microextraction - a future technique in pharmacology and coating trends.
Aleksandra OwczarzyKarolina KuligKatarzyna PiordasPatrycja PiślaPatrycja SarkowiczWojciech RogóżMałgorzata Maciążek-JurczykPublished in: Analytical methods : advancing methods and applications (2024)
Traditional sample preparation techniques based on liquid-liquid extraction (LLE) or solid-phase extraction (SPE) often suffer from a major error due to the matrix effects caused by significant co-extraction of matrix components. The implementation of a modern extraction technique such as solid-phase microextraction (SPME) was aimed at reducing analysis time and the use of organic solvents, as well as eliminating pre-analytical and analytical errors. Solid-phase microextraction (SPME) is an innovative technique for extracting low molecular weight compounds (less than 1500 Da) from highly complex matrices, including biological matrices. It has a wide range of applications in various types of analysis including pharmaceutical, clinical, metabolomics and proteomics. SPME has a number of advantages over other extraction techniques. Among the most important are low environmental impact, the ability to sample and preconcentrate analytes in one step, simple automation, and the ability to extract multiple analytes simultaneously. It is expected to become, in the future, another method for cell cycle research. Numerous available literature sources prove that solid-phase microextraction can be a future technique in many scientific fields, including pharmaceutical sciences. This paper provides a literature review of trends in SPME coatings and pharmacological applications.
Keyphrases
- cell cycle
- solid phase extraction
- liquid chromatography
- current status
- mass spectrometry
- molecularly imprinted
- liquid chromatography tandem mass spectrometry
- cell proliferation
- systematic review
- high performance liquid chromatography
- healthcare
- ms ms
- tandem mass spectrometry
- emergency department
- case report
- patient safety
- gas chromatography mass spectrometry
- ionic liquid
- risk assessment
- high resolution
- high resolution mass spectrometry