Hope M J, Bally M B, Webb G, Cullis P R
Department of Biochemistry, University of British Columbia, Vancouver, B.C., V6T 1W5, Canada.
Biochim Biophys Acta. 1985 Jan 10;812(1):55-65. doi: 10.1016/0005-2736(85)90521-8.
A technique for the rapid production of large unilamellar vesicles by repeated extrusion under moderate pressures (≤ 500 lb/in²) of multilamellar vesicles through polycarbonate filters (100 nm pore size) is demonstrated. In combination with freeze-thaw protocols where required, this procedure results in unilamellar vesicles with diameters in the range 60-100 nm and with trapped volumes in the region of 1-3 μl/μmol phospholipid. Advantages of this technique include the absence of organic solvents or detergents, the high lipid concentrations (up to 300 μmol/ml) that can be employed and the high trapping efficiencies (up to 30%) that can be achieved. Further, the procedure for generating these 'LUVET's' (large unilamellar vesicles by extrusion techniques) is rapid (≤ min preparation time) and can be employed to generate large unilamellar vesicles from a wide variety of lipid species and mixtures. As a particular illustration of the utility of this vesicle preparation, LUVET systems exhibiting a membrane potential (ΔΨ) in response to a transmembrane Na⁺/K⁺ gradient (K⁺ inside) have been characterized. By employing the lipophilic cation methyltriphenylphosphonium (MTPP⁺) it is shown that a K⁺ of diffusion potential (ΔΨ < -100 mV) forms rapidly in the presence of the K⁺ ionophore valinomycin for soya phosphatidylcholine (soya PC) LUVET's. The values of Δψ obtained correlate well with the K⁺ concentration gradient across the membrane, and it is demonstrated that the decay of Δψ with time depends on the flux of Na+ into the vesicles.
展示了一种通过在适度压力(≤500磅/平方英寸)下将多层囊泡反复挤压通过聚碳酸酯滤膜(孔径100纳米)来快速制备大单层囊泡的技术。在需要时结合冻融方案,该程序可产生直径在60 - 100纳米范围内、捕获体积在1 - 3微升/微摩尔磷脂区域的单层囊泡。该技术的优点包括不存在有机溶剂或去污剂、可采用高脂质浓度(高达300微摩尔/毫升)以及可实现高捕获效率(高达30%)。此外,生成这些“LUVET”(通过挤压技术制备的大单层囊泡)的程序快速(制备时间≤分钟),并且可用于从多种脂质种类和混合物中生成大单层囊泡。作为这种囊泡制备实用性的一个具体例证,已对响应跨膜Na⁺/K⁺梯度(K⁺在内部)表现出膜电位(ΔΨ)的LUVET系统进行了表征。通过使用亲脂性阳离子甲基三苯基鏻(MTPP⁺)表明,在K⁺离子载体缬氨霉素存在下,大豆磷脂酰胆碱(大豆PC)LUVET中会迅速形成扩散电位(ΔΨ < -100 mV)的K⁺。获得的Δψ值与跨膜K⁺浓度梯度相关性良好,并且证明Δψ随时间的衰减取决于Na⁺流入囊泡的通量。