Risbo J, Jørgensen K, Sperotto M M, Mouritsen O G
Department of Chemistry, The Technical University of Denmark, Lyngby.
Biochim Biophys Acta. 1997 Oct 2;1329(1):85-96. doi: 10.1016/s0005-2736(97)00091-6.
The thermodynamic phase behavior and trans-bilayer permeability properties of multilamellar phospholipid vesicles containing a short-chain DC10PC phospholipid permeability enhancer have been studied by means of differential scanning calorimetry and fluorescence spectroscopy. The calorimetric scans of DC14PC lipid bilayer vesicles incorporated with high concentrations of DC10PC demonstrate a distinct influence on the lipid bilayer thermodynamics manifested as a pronounced freezing-point depression and a narrow phase coexistence region. Increasing amounts of DC10PC lead to a progressive lowering of the melting enthalpy, implying a mixing behavior of the DC10PC in the bilayer matrix similar to that of a substitutional impurity. The phase behavior of the DC10PC-DC14PC mixture is supported by fluorescence polarization measurements which, furthermore, in the low-temperature gel phase reveal a non-monotonic concentration-dependent influence on the structural bilayer properties; small concentrations of DC10PC induce a disordering of the acyl chains, whereas higher concentrations lead to an ordering. Irreversible fluorescence quench measurements demonstrate a substantial increase in the trans-bilayer permeability over broad temperature and composition ranges. At temperatures corresponding to the peak positions of the heat capacity, a maximum in the trans-bilayer permeability is observed. The influence of DC10PC on the lipid bilayer thermodynamics and the associated permeability properties is discussed in terms of microscopic effects on the lateral lipid organization and heterogeneity of the bilayer.
通过差示扫描量热法和荧光光谱法研究了含有短链DC10PC磷脂渗透增强剂的多层磷脂囊泡的热力学相行为和跨双层渗透特性。掺入高浓度DC10PC的DC14PC脂质双层囊泡的量热扫描显示出对脂质双层热力学有明显影响,表现为明显的冰点降低和狭窄的相共存区域。DC10PC含量的增加导致熔化焓逐渐降低,这意味着DC10PC在双层基质中的混合行为类似于替代杂质。DC10PC-DC14PC混合物的相行为得到荧光偏振测量的支持,此外,在低温凝胶相中,该测量揭示了对双层结构性质的非单调浓度依赖性影响;低浓度的DC10PC会导致酰基链无序,而高浓度则会导致有序。不可逆荧光猝灭测量表明,在很宽的温度和组成范围内,跨双层渗透率大幅增加。在对应于热容峰值位置的温度下,观察到跨双层渗透率的最大值。从对双层横向脂质组织和异质性的微观影响方面讨论了DC10PC对脂质双层热力学和相关渗透特性的影响。