Ali S, Smaby J M, Momsen M M, Brockman H L, Brown R E
The Hormel Institute, University of Minnesota, Austin 55912, USA.
Biophys J. 1998 Jan;74(1):338-48. doi: 10.1016/S0006-3495(98)77791-4.
Phosphatidylcholines (PCs) with stearoyl (18:0) sn-1 chains and variable-length, saturated sn-2 acyl chains were synthesized and investigated using a Langmuir-type film balance. Surface pressure was monitored as a function of lipid molecular area at various constant temperatures between 10 degrees C and 30 degrees C. Over this temperature range, 18:0-10:0 PC displayed only liquid-expanded behavior. In contrast, di-14:0 PC displayed liquid-expanded behavior at 24 degrees C and 30 degrees C, but two-dimensional phase transitions were evident at 20 degrees C, 15 degrees C, and 10 degrees C. The average molecular area of 18:0-10:0 PC was larger than that of liquid-expanded di-14:0 PC at equivalent surface pressures, and the shapes of their liquid expanded isotherms were somewhat dissimilar. Analysis of the elastic moduli of area compressibility (Cs(-1)) as a function of molecular area revealed shallower slopes in the semilog plots of 18:0-10:0 PC compared to di-14:0 PC. At membrane-like surface pressures (e.g., 30 mN/m), 18:0-10:0 PC was 20-25% more elastic (in an in-plane sense) than di-14:0 PC. Other PCs with varying degrees of chain-length asymmetry (18:0-8:0 PC, 18:0-12:0 PC, 18:0-14:0 PC, 18:0-16:0 PC) were also investigated to determine whether the higher in-plane elasticity of fluid-phase 18:0-10:0 PC is a common feature of PCs with asymmetrical chain lengths. Two-dimensional phase transitions in 18:0-14:0 PC and 18:0-16:0 PC prevented meaningful comparison with other fluid-phase PCs at 30 mN/m. However, the Cs(-1) values for fluid-phase 18:0-8:0 PC and 18:0-12:0 PC were similar to that of 18:0-10:0 PC (85-90 mN/m). These values showed chain-length asymmetrical PCs to have 20-25% greater in-plane elasticity than fluid-phase PCs with mono- or diunsaturated acyl chains.
合成了具有硬脂酰基(18:0)sn-1链和可变长度饱和sn-2酰基链的磷脂酰胆碱(PCs),并使用朗缪尔型膜天平进行了研究。在10℃至30℃之间的各种恒定温度下,监测表面压力作为脂质分子面积的函数。在此温度范围内,18:0-10:0 PC仅表现出液晶态行为。相比之下,二-14:0 PC在24℃和30℃时表现出液晶态行为,但在20℃、15℃和10℃时二维相变明显。在等效表面压力下,18:0-10:0 PC的平均分子面积大于液晶态二-14:0 PC 的平均分子面积,并且它们的液晶态等温线形状有些不同。分析面积压缩弹性模量(Cs(-1))作为分子面积的函数,结果显示与二-14:0 PC相比,18:0-10:0 PC的半对数图斜率更浅。在类似膜的表面压力下(例如30 mN/m),18:0-10:0 PC在平面内的弹性比二-14:0 PC高20-25%。还研究了其他具有不同程度链长不对称性的PCs(18:0-8:0 PC、18:0-12:0 PC、18:0-14:0 PC、18:0-16:0 PC),以确定液相18:0-10:0 PC较高的平面内弹性是否是具有不对称链长的PCs的共同特征。18:0-14:0 PC和18:0-16:0 PC中的二维相变使得无法在30 mN/m下与其他液相PCs进行有意义的比较。然而,液相18:0-8:0 PC和18:0-12:0 PC的Cs(-1)值与18:0-10:0 PC(85-90 mN/m)的值相似。这些值表明,链长不对称的PCs在平面内的弹性比具有单不饱和或双不饱和酰基链的液相PCs高20-25%。