Harrigan P R, Madden T D, Cullis P R
Department of Biochemistry, University of British Columbia, Vancouver, Canada.
Chem Phys Lipids. 1990 Jan;52(2):139-49. doi: 10.1016/0009-3084(90)90157-m.
When liposomes are subjected to dehydration or freeze-thawing, vesicle fusion and/or leakage of vesicle contents can occur. The disaccharide, trehalose and the cryoprotectant, glycerol, are known to protect vesicle integrity during dehydration and freezing respectively. Here we examine their protective abilities as a function of vesicle size and lipid composition. It is shown that fatty acyl composition, cholesterol content and, with the exception of phosphatidylglycerol, acidic lipid content do not significantly alter the retention of aqueous contents by vesicles dehydrated and rehydrated in the presence of trehalose. The susceptibility to leakage induced by both dehydration and freezing is, however, critically dependent upon vesicle size with the smallest systems (70-100 nm diameter) being most stable. The mechanism whereby trehalose protects against vesicle fusion and leakage is also discussed.
当脂质体经历脱水或冻融过程时,可能会发生囊泡融合和/或囊泡内容物泄漏。已知二糖海藻糖和冷冻保护剂甘油分别在脱水和冷冻过程中保护囊泡完整性。在这里,我们研究了它们作为囊泡大小和脂质组成的函数的保护能力。结果表明,脂肪酰基组成、胆固醇含量以及除磷脂酰甘油外的酸性脂质含量,并不会显著改变在海藻糖存在下脱水和再水化的囊泡对水性内容物的保留能力。然而,脱水和冷冻引起的泄漏敏感性关键取决于囊泡大小,最小的体系(直径70 - 100 nm)最稳定。本文还讨论了海藻糖防止囊泡融合和泄漏的机制。