Mohri K, Takeuchi K, Shinozuka K, Bjur R A, Westfall D P
Department of Biopharmacy, Meiji College of Pharmacy, Tokyo, Japan.
Anal Biochem. 1993 May 1;210(2):262-7. doi: 10.1006/abio.1993.1194.
Electrical field stimulation elicits the release of catecholamines, adenine nucleotides, and adenosine from the rabbit pulmonary artery in a frequency dependent manner. To enhance our ability to investigate the release of endogenous adenine nucleotides and adenosine from this and other biological preparations, a new analytical procedure has been developed. This procedure involves the use of an internal standard, 9-beta-D-arabinofuranosyladenine (IS), the derivatization of ATP, ADP, AMP, adenosine (Ado), and IS with chloroacetaldehyde, the isocratic high-performance liquid chromatographic separation of these ethenopurine derivatives on an Ultron N-phenyl HPLC column, and their detection and quantitation by fluorescence spectroscopy. This procedure has enhanced sensitivity and reliability over existing procedures due to the stability of the chromatographic baseline and the use of an internal standard. When this analytical procedure was utilized to measure the adenine nucleotides and Ado that are released from the rabbit pulmonary artery in response to electrical field stimulation, it was observed that the release of endogenous ATP, ADP, AMP, and Ado exceeded that of endogenous norepinephrine. A molar ratio (6-amino purines:catecholamines) of approximately 2000:1 was obtained at a stimulation frequency of 16 Hz. This observation suggests an important extracellular role for adenine nucleotides and nucleosides in the physiology of vascular tissues.
电场刺激能使家兔肺动脉以频率依赖的方式释放儿茶酚胺、腺嘌呤核苷酸和腺苷。为了提高我们研究这种及其他生物制剂中内源性腺嘌呤核苷酸和腺苷释放的能力,已开发出一种新的分析方法。该方法包括使用内标物9-β-D-阿拉伯呋喃糖基腺嘌呤(IS),用氯乙醛对ATP、ADP、AMP、腺苷(Ado)和IS进行衍生化,在Ultron N-苯基高效液相色谱柱上对这些乙烯基嘌呤衍生物进行等度高效液相色谱分离,以及通过荧光光谱法对其进行检测和定量。由于色谱基线的稳定性和内标物的使用,该方法比现有方法具有更高的灵敏度和可靠性。当利用这种分析方法来测量电场刺激引起的家兔肺动脉释放的腺嘌呤核苷酸和Ado时,观察到内源性ATP、ADP、AMP和Ado的释放量超过了内源性去甲肾上腺素。在16Hz的刺激频率下,获得了约2000:1的摩尔比(6-氨基嘌呤:儿茶酚胺)。这一观察结果表明腺嘌呤核苷酸和核苷在血管组织生理学中具有重要的细胞外作用。