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Phase transition behavior of single phosphatidylcholine bilayers on a solid spherical support studied by DSC NMR and FT-IR

机译:DSCNMR和FT-IR研究了单个磷脂酰胆碱双层在固体球形载体上的相变行为

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摘要

For the first time, the chain melting transition from the gel phase to the liquid crystalline phase of a single DPPC bilayer on a solid, spherical support (silica beads) is observed by differential scanning calorimetry (DSC). This transition is remarkably cooperative, exhibits a transition temperature Tm which is 2°C lower than usually found for DPPC multilamellar vesicles and its excess enthalpy is about 25% less than in DPPC multilayers. 31P- and 2H-NMR data as well as FT-IR data provide evidence that despite the highly asymmetric characteristic of the model system, the whole single bilayer undergoes the transition at Tm, i.e., there is no decoupling of the two monolayer leaflets at the main phase transition. Furthermore, our results show that the formation of the ripple (Pβ') phase is inhibited in single bilayers on a solid support. This result confirms a conclusion which we reached previously on the basis of neutron scattering data obtained on planar supported bilayers. The most likely reason for this inhibition as well as for the above mentioned thermodynamic differences between multilamellar vesicles and supported membranes is a significantly higher lateral stress in the latter. Moreover, the exchange of lipids between two populations of spherical supported vesicles (DMPC and chain perdeuterated DMPC) is studied by DSC. It is shown that this exchange process is symmetric and its half-time is a factor of 3-4 higher than observed for small sonicated DMPC vesicles.
机译:第一次,通过差示扫描量热法(DSC)观察到了固态球形支撑体(硅胶珠)上单个DPPC双层从凝胶相到液晶相的链熔化转变。该转变是明显协同的,表现出的转变温度Tm比通常对于DPPC多层囊泡发现的转变温度低2℃,并且其过量的焓比在DPPC多层中低约25%。 31P和2H-NMR数据以及FT-IR数据提供了证据,尽管模型系统具有高度不对称的特征,但整个单双层仍在Tm处经历了跃迁,即两个单层小叶在该处没有解耦。主相变。此外,我们的结果表明,在固体支持物上的单个双层中,波纹(Pβ')相的形成受到抑制。该结果证实了我们先前在平面支撑双层上获得的中子散射数据的基础上得出的结论。这种抑制作用以及多层囊泡和支撑膜之间上述热力学差异的最可能原因是后者的侧向应力明显更高。此外,DSC研究了两个球形支撑囊泡(DMPC和链式氘代DMPC)之间的脂质交换。结果表明,这种交换过程是对称的,并且其半衰期比小超声处理的DMPC囊泡所观察到的高3-4倍。

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