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钙、胆固醇和不饱和度对卵磷脂单分子层的影响。

Influence of calcium, cholesterol, and unsaturation on lecithin monolayers.

作者信息

Shah D O, Schulman J H

出版信息

J Lipid Res. 1967 May;8(3):215-26.

PMID:6038561
Abstract

Surface pressures and potentials of mixed monolayers of dicetyl phosphate-cholesterol, dipalmitoyl lecithin-cholesterol, egg lecithin-cholesterol, and phosphatidic acid-cholesterol were measured. The surface potential is shown to be a more reliable parameter for the study of interactions in monolayers than the surface pressure. Monolayers of dicetyl phosphate-cholesterol follow the additivity rule for area/molecule whereas lecithin-cholesterol monolayers deviate from it. The reverse is true for the additivity rule with regard to surface potential/molecule. Thus, the surface potential indicates that there is no interaction (or complex formation) between lecithin and cholesterol, but that there is ion-dipole interaction between dicetyl phosphate and cholesterol, as well as between phosphatidic acid and cholesterol. The apparent condensation of mixed monolayers of lecithin when cholesterol is added is explained by a consideration of molecular cavities or vacancies caused by thermal motion of the fatty acyl chains, the size of these cavities being influenced by the length and degree of saturation (especially the proportion of monounsaturation) of the fatty acyl chains and the extent of compression of the monolayer. The cholesterol molecules occupy these cavities and therefore cause no proportional increase in area/molecule in the mixed monolayers. Monolayers are liquefied by the presence of cholesterol as well as of unsaturated fatty acyl chains; in contrast, Ca(++)tends to solidify lecithin monolayers. The available evidence suggests that cholesterol can both impart fluidity to the monolayer and occupy the molecular cavities caused by the fatty acyl chains.

摘要

测量了磷酸二鲸蜡酯 - 胆固醇、二棕榈酰卵磷脂 - 胆固醇、蛋黄卵磷脂 - 胆固醇和磷脂酸 - 胆固醇混合单分子层的表面压力和表面电势。结果表明,对于研究单分子层中的相互作用,表面电势是比表面压力更可靠的参数。磷酸二鲸蜡酯 - 胆固醇单分子层遵循分子面积的加和规则,而卵磷脂 - 胆固醇单分子层则偏离该规则。对于分子表面电势的加和规则,情况则相反。因此,表面电势表明卵磷脂和胆固醇之间不存在相互作用(或复合物形成),但磷酸二鲸蜡酯与胆固醇之间以及磷脂酸与胆固醇之间存在离子 - 偶极相互作用。添加胆固醇时卵磷脂混合单分子层的明显凝聚现象,可通过考虑由脂肪酰链热运动引起的分子腔或空位来解释,这些腔的大小受脂肪酰链的长度和饱和度(特别是单不饱和比例)以及单分子层压缩程度的影响。胆固醇分子占据这些腔,因此在混合单分子层中不会导致分子面积成比例增加。胆固醇以及不饱和脂肪酰链的存在会使单分子层液化;相反,Ca(++) 倾向于使卵磷脂单分子层固化。现有证据表明,胆固醇既能赋予单分子层流动性,又能占据由脂肪酰链引起的分子腔。

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