...
首页> 外文期刊>Prostaglandins, Leukotrienes, and Essential Fatty Acids >A human in vivo study of the extent to which 31-phosphorus neurospectroscopy phosphomonoesters index cerebral cell membrane phospholipid anabolism
【24h】

A human in vivo study of the extent to which 31-phosphorus neurospectroscopy phosphomonoesters index cerebral cell membrane phospholipid anabolism

机译:体内研究的人类研究了31-磷神经痉挛磷酸磷素酯指数脑细胞膜磷脂合成的

获取原文
获取原文并翻译 | 示例

摘要

The phosphomonoester narrow resonance of human in vivo 31-phosphorus neurospectroscopy studies is believed to index the anabolism of cell membrane phospholipids and has therefore been used to study phospholipid anabolism in the brain non-invasively. However, it is an indirect measure of phospholipid metabolism and although it does contain major contributions from phosphocholine, phosphoethano-lamine and L-phosphoserine, which are important precursors Of membrane phospholipids, many other metabolites, including sugar phosphates, can contribute to this region of the spectrum, and separation of these different peaks is not achieved with the present in vivo methodology. Recently, it has become possible to analyze signal directly from the cell membrane motion-restricted phospholipids by analysis of a broad resonance signal. We therefore hypothesized that there should be a positive correlation between the phosphomonoester narrow resonance and the broad resonance signal if the former does indeed index cell membrane phospholipid anabolism. Cerebral 31-phosphorus magnetic resonance spectroscopy was carried out in 54 human subjects, including normal volunteers and patients with schizophrenia in order to widen the range of phosphomonoester and broad resonance values. Spectra were obtained from 70 x 70 x 70 mm~3 voxels using an image-selected in vivo spectroscopy pulse sequence. There was a highly significant positive correlation between the phosphomonoester resonances and the broad resonance signals (r=0.404, P< 0.005). These results are consistent with the hypothesis that the phosphomonoester narrow resonance does indeed index cell membrane phospholipid anabolism in brain studies.
机译:据信,人体内31-磷的磷酸磷酯狭窄的人类共振的共振是指细胞膜磷脂的合成,因此已被用于研究脑中的磷脂非侵入性的磷脂。然而,它是磷脂代谢的间接测量,虽然它确实含有磷光啉,磷乙酰氯和L-磷素的主要贡献,这是薄膜磷脂的重要前体,许多其他代谢物,包括糖磷酸盐,可贡献这一区域使用本发明的体内方法,不实现这些不同峰的光谱和分离。最近,通过分析广泛的共振信号,可以通过分析来自细胞膜运动限制的磷脂直接分析信号。因此,我们假设磷酸酯之间的常见共振和广泛的共振信号之间应该存在正相关性,如果前者确实指数细胞膜磷脂合成代谢。脑31-磷磁共振光谱法在54例人受试者中进行,包括正常志愿者和精神分裂症患者,以扩大磷酸酯和广泛的共振值。使用在体内光谱脉冲序列中选择的图像选择,从70×70×70mm〜3血管凝胶获得光谱。磷酸酯共振和宽共振信号之间存在显着的正相关性(r = 0.404,p <0.005)。这些结果与假设一致,即磷酸磷酯窄的共振确实指数细胞膜磷脂的脑研究中的磷脂。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号