腺苷酸激酶
计算生物学
生物流体
细胞代谢
仿形(计算机编程)
化学
代谢组学
蛋白质组学
生物
体内
生化工程
一磷酸腺苷
能量代谢
样品制备
生物化学
三磷酸腺苷
生物信息学
不稳定性
生物材料
从长凳到床边
作者
Natalia Treder,Janusz Pawliszyn
标识
DOI:10.1016/j.trac.2025.118524
摘要
Adenylate compounds – adenosine triphosphate (ATP), diphosphate (ADP), and monophosphate (AMP) – are central regulators of cellular energy metabolism and biomarkers of physiological and pathological states. Their rapid interconversion and enzymatic lability make accurate quantification challenging, especially in complex matrices. This review summarizes strategies for the analysis of ATP, ADP, and AMP, focusing on sample preparation and analytical methodologies for biological systems. Analytical techniques – including bioluminescent assays, biosensors, and chromatographic methods – have improved sensitivity and throughput, but most remain limited to endpoint measurements and cannot capture the dynamic nature of adenylate metabolism in vivo. Emerging trends emphasize integrative, miniaturized, and minimally invasive strategies for near-real-time monitoring. In particular, in vivo solid-phase microextraction (SPME) has gained attention as a minimally invasive sampling technique capable of extracting labile metabolites from tissues under physiological conditions. By assessing advancements and challenges, this review highlights the evolution of adenylate determination and the need for tools compatible with dynamic, spatially resolved sampling. • ATP, ADP, AMP analysis provides insight into physiological and pathological states. • Chromatographic strategies for the analysis of phosphate-rich compounds. • Sample preparation approaches for labile ATP, ADP, and AMP under native conditions. • Methodological challenges for ATP, ADP, and AMP determination in biological samples. • In vivo SPME as a minimally invasive tool for spatiotemporal profiling of adenylates.
科研通智能强力驱动
Strongly Powered by AbleSci AI