Civil and Environmental Engineering, Northeastern University, Boston, MA, United States.
Curr Opin Biotechnol. 2012 Dec;23(6):852-9. doi: 10.1016/j.copbio.2012.06.002. Epub 2012 Jul 12.
In general, conventional P analysis methods suffer from not only the fastidious extraction and pre-treatment procedures required but also the generally low specificity and poor resolution regarding the P composition and its temporal and spatial dynamics. More powerful yet feasible P analysis tools are in demand to help elucidating the biochemistry nature, roles and dynamics of various phosphorus-containing molecules in vitro and in vivo. Recent advances in analytical chemistry, especially in molecular and atomic spectrometry such as NMR, Raman and X-ray techniques, have enabled unique capability of P analysis relevant to submicron scale biochemical processes in individual cell and in natural samples without introducing too complex and invasive pretreatment steps. Great potential still remains to be explored in wider and more combined and integrated requests of these techniques to allow for new possibilities and more powerful P analysis in biological systems. This review provides a comprehensive summary of the available methods and recent developments in analytical techniques and their applications for characterization and quantification of various forms of phosphorus, particularly polyphosphate, in different biological sources.
一般来说,传统的磷分析方法不仅需要繁琐的提取和预处理步骤,而且在磷组成及其时空动态方面的特异性和分辨率通常较低。需要更强大但可行的磷分析工具来帮助阐明各种含磷分子的生物化学性质、作用和动态,无论是在体外还是体内。分析化学的最新进展,特别是在 NMR、拉曼和 X 射线技术等分子和原子光谱领域的进展,使人们能够在不引入过于复杂和侵入性预处理步骤的情况下,对单个细胞和自然样本中涉及亚微米级生化过程的磷进行独特的分析。这些技术在更广泛、更综合和更集成的应用方面仍有很大的潜力有待探索,以在生物系统中实现新的可能性和更强大的磷分析。本综述全面总结了分析技术的现有方法和最新进展及其在不同生物来源中各种形式磷(特别是多磷酸盐)的表征和定量中的应用。