Mayer L D, Hope M J, Cullis P R, Janoff A S
Biochim Biophys Acta. 1985 Jul 11;817(1):193-6. doi: 10.1016/0005-2736(85)90084-7.
It has recently been observed (Gruner, Lenk, Janoff and Ostro (1985) Biochemistry, in the press) that mechanical dispersion of dry lipid in an aqueous buffer to form multilamellar vesicle (MLV) systems does not result in equilibrium trans-membrane distributions of solute. In particular, the entrapped buffer exhibits reduced solute concentrations. Here we demonstrate that egg phosphatidylcholine MLV systems dispersed in the presence of Mn2+ also exhibit non-equilibrium solute distributions, and that repetitive freeze-thawing cycles can remove such solute heterogeneity. Further, the resulting freeze-thawed MLVs exhibit dramatically enhanced trapped volumes and trapping efficiencies. At 400 mg phospholipid per ml, for example, the trapping efficiencies can be as high as 90%. This is associated with a remarkable change in MLV morphology where large inter-bilayer separations are commonly observed.
最近有人观察到(格鲁纳、伦克、贾诺夫和奥斯特罗(1985年),《生物化学》,即将发表),在水性缓冲液中对干燥脂质进行机械分散以形成多层囊泡(MLV)系统时,溶质不会在跨膜达到平衡分布。特别是,被包裹的缓冲液中溶质浓度降低。在此我们证明,在Mn2+存在下分散的卵磷脂MLV系统也表现出非平衡溶质分布,并且反复冻融循环可以消除这种溶质异质性。此外,由此产生的冻融MLV表现出显著增强的包裹体积和包裹效率。例如,在每毫升400毫克磷脂的情况下,包裹效率可高达90%。这与MLV形态的显著变化有关,在这种变化中通常可以观察到较大的双层间间距。