Cerdan S, Subramanian V H, Hilberman M, Cone J, Egan J, Chance B, Williamson J R
Magn Reson Med. 1986 Jun;3(3):432-9. doi: 10.1002/mrm.1910030308.
The in vivo dog brain 31P NMR spectrum has a large peak in the phosphodiester region accounting for more than 35% of the total observable phosphorus metabolites. It is possible to reduce the intensity of this peak by off-resonance saturation. To characterize the nature of this peak, extracts of dog brain frozen in situ were analyzed by high resolution 31P NMR. ATP, phosphocreatine, inorganic phosphate, and phosphomonoesters were recovered in appropriate amounts in the methanol:HCl extract. However, acid soluble phosphodiesters accounted for only 8% of the observable phosphorus. More NMR observable phosphodiesters were selectively recovered following CHCl3:methanol extraction of phospholipids. These results suggest that the in vivo phosphodiester resonance has substantial contributions from a fraction of mobile brain phospholipids.
犬脑的体内31P NMR谱在磷酸二酯区域有一个大峰,占可观察到的总磷代谢物的35%以上。通过失谐饱和可以降低该峰的强度。为了表征该峰的性质,对原位冷冻的犬脑提取物进行了高分辨率31P NMR分析。在甲醇:盐酸提取物中以适当的量回收了ATP、磷酸肌酸、无机磷酸盐和磷酸单酯。然而,酸溶性磷酸二酯仅占可观察到的磷的8%。在对磷脂进行氯仿:甲醇萃取后,选择性地回收了更多NMR可观察到的磷酸二酯。这些结果表明,体内磷酸二酯共振有一部分来自可移动的脑磷脂。