Hsuchen C C, Feingold D S
Antimicrob Agents Chemother. 1973 Sep;4(3):309-15. doi: 10.1128/AAC.4.3.309.
In the absence of sterol, amphotericin B at 5 x 10(-6) M caused maximum marker release from the saturated dipalmitoyl lecithin liposomes, minimum release from the unsaturated dioleoyl lecithin liposomes, and an in-between response from egg lecithin liposomes. Nystatin at 2.5 to 4.0 x 10(-5) M induced appreciable marker release from all three types of sterol-free liposomes. The amphotericin B- and nystatin-induced permeability changes in dipalmitoyl lecithin liposomes were drastically suppressed by the incorporation of cholesterol or stigmasterol (with identical Delta5 sterol nuclei), but were unaffected by the incorporation of ergosterol or 5,7-cholestadien-3beta-ol (with identical Delta5,7 sterol nuclei). The nystatin sensitivity of dioleoyl lecithin liposomes remained low after the incorporation of cholesterol or stigmasterol, but was greatly enhanced by the incorporation of ergosterol or 5,7-cholestadien-3beta-ol. Digitonin, a compound known to interact specifically with membrane sterol, induced marker release from liposomes in proportion to the amount of either cholesterol or ergosterol incorporated; epicholesterol did not sensitize to digitonin. These results lead to the following conclusions: (i) polyene-induced permeability alteration in model membrane systems is effected by the composition of membrane phospholipid fatty acyl chains; (ii) the distribution of double bonds in the sterol nucleus is related to the selective toxicity of the polyenes toward natural sterol-containing membranes; and (iii) polyenes differ in membrane selectivity.
在没有甾醇的情况下,5×10⁻⁶ M的两性霉素B可使饱和二棕榈酰卵磷脂脂质体释放出最大量的标记物,使不饱和二油酰卵磷脂脂质体释放量最小,而使鸡蛋卵磷脂脂质体释放量介于两者之间。2.5至4.0×10⁻⁵ M的制霉菌素可使所有三种不含甾醇的脂质体释放出可观的标记物。二棕榈酰卵磷脂脂质体中两性霉素B和制霉菌素诱导的通透性变化可通过掺入胆固醇或豆甾醇(具有相同的Δ⁵甾醇核)而被显著抑制,但不受掺入麦角甾醇或5,7-胆甾二烯-3β-醇(具有相同的Δ⁵,⁷甾醇核)的影响。掺入胆固醇或豆甾醇后,二油酰卵磷脂脂质体对制霉菌素的敏感性仍然较低,但掺入麦角甾醇或5,7-胆甾二烯-3β-醇后其敏感性大大增强。洋地黄皂苷是一种已知与膜甾醇特异性相互作用的化合物,它可按掺入的胆固醇或麦角甾醇的量成比例地诱导脂质体释放标记物;表胆固醇对洋地黄皂苷不敏感。这些结果得出以下结论:(i)多烯诱导的模型膜系统通透性改变受膜磷脂脂肪酰链组成的影响;(ii)甾醇核中双键的分布与多烯对天然含甾醇膜的选择性毒性有关;(iii)多烯在膜选择性方面存在差异。