Caspers J, Landuyt-Caufriez M, Deleers M, Ruysschaert J M
Biochim Biophys Acta. 1979 Jun 13;554(1):23-38. doi: 10.1016/0005-2736(79)90003-8.
The model membrane approach was used to investigate the surface charge effect on the ion-antibiotic complexation process. Mixed monolayers of valinomycin and lipids were spread on subphases containing K+ or Na+. The surface charge density was modified by spreading ionizable valinomycin analogs on aqueous subphases of different pH or by changing the nature of the lipid (neutral, negatively charged) in the mixed film. Surface pressure and surface potential measurements demonstrated that a neutral lipid (phosphatidylcholine) or positively charged valinomycin analogs didn't enhance the anti-biotic complexing capacity. However, a maximal complexation is reached for a critical lipid concentration in the valinomycin-phosphatidylserine mixed film. The role of the surface charge on the valinomycin complexing properties was examined in terms of the Gouy-Chapman theory. As a consequence of the negative charge of the lipid monolayer, the K+ concentration near the surface is larger than the bulk concentration, by a Boltzmann factor. A good agreement was observed between the experimental results and the theoretical predictions. Conductance measurements of asymmetric bilayers containing a neutral lipid (egg lecithin) on one side and a negatively charged lipid (phosphatidyl-serine) on the other, confirm the role of the surface charge. Indeed, addition of K+ to the neutral side of the bilayer containing valinomycin had no effect on the conductance whereas addition of K+ to the charged side of the bilayer caused a 80-fold conductance increase.
采用模型膜方法研究表面电荷对离子 - 抗生素络合过程的影响。将缬氨霉素和脂质的混合单层铺展在含有K⁺或Na⁺的亚相中。通过在不同pH值的水性亚相中铺展可电离的缬氨霉素类似物,或通过改变混合膜中脂质的性质(中性、带负电荷)来改变表面电荷密度。表面压力和表面电位测量表明,中性脂质(磷脂酰胆碱)或带正电荷的缬氨霉素类似物不会增强抗生素的络合能力。然而,在缬氨霉素 - 磷脂酰丝氨酸混合膜中,当脂质浓度达到临界值时会达到最大络合。根据 Gouy - Chapman 理论研究了表面电荷对缬氨霉素络合性质的作用。由于脂质单层带负电荷,表面附近的K⁺浓度比本体浓度大一个玻尔兹曼因子。实验结果与理论预测之间观察到良好的一致性。对一侧含有中性脂质(卵磷脂)而另一侧含有带负电荷脂质(磷脂酰丝氨酸)的不对称双层膜进行电导测量,证实了表面电荷的作用。实际上,向含有缬氨霉素的双层膜的中性侧添加K⁺对电导没有影响,而向双层膜的带电侧添加K⁺会导致电导增加80倍。