Haran N, Shporer M
Biochim Biophys Acta. 1977 Feb 14;465(1):11-8. doi: 10.1016/0005-2736(77)90351-0.
The intensity of the proton magnetic resonance signal of the (CH2)n chain in phospholipids of sonicated lecithins is sensitive to the cholesterol content in the resulting vesicles. In the present study this signal has been used to monitor transfer of cholesterol between phospholipid vesicles. Vesicles prepared from pure egg yolk lecithin were mixed with vesicles that contained equimolar amounts of cholesterol and lecithin, and the time evolution of the (CH2)n signal intensity was followed. The results show that a homogenous distribution of cholesterol amoung vesicles is reached after about 4 h at 37 degrees C and 60 h at 4 degrees C. In order to determine the mechanism of the cholesterol transfer process, experiments were performed over a 2.5-fold range of vesicles concentrations. The accuracy of the kinetic results was not sufficient however to decide on the order of the reaction with respect ot vesicle concentration. Simultaneous observation of the choline proton resonance in the presence of Eu+3 and Pr+3 indicates that fusion between vesicles does not occur during cholesterol transfer.
超声处理的卵磷脂磷脂中(CH2)n链的质子磁共振信号强度对所得囊泡中的胆固醇含量敏感。在本研究中,该信号已被用于监测磷脂囊泡之间胆固醇的转移。将由纯蛋黄卵磷脂制备的囊泡与含有等摩尔量胆固醇和卵磷脂的囊泡混合,并跟踪(CH2)n信号强度随时间的变化。结果表明,在37℃下约4小时和4℃下60小时后,囊泡之间达到了胆固醇的均匀分布。为了确定胆固醇转移过程的机制,在2.5倍的囊泡浓度范围内进行了实验。然而,动力学结果的准确性不足以确定反应相对于囊泡浓度的级数。在Eu+3和Pr+3存在下对胆碱质子共振的同时观察表明,在胆固醇转移过程中囊泡之间不会发生融合。