Instituto de Investigación Médica M. y M. Ferreyra-INIMEC , CONICET-Universidad Nacional de Córdoba , Córdoba 5000 , Argentina.
Biological Physics Group, Physics Department , Carnegie Mellon University , Pittsburgh , Pennsylvania 15213 , United States.
J Phys Chem B. 2018 Jul 26;122(29):7332-7339. doi: 10.1021/acs.jpcb.8b04001. Epub 2018 Jul 17.
Drugs for treating Leishmaniasis, a parasitic tropical orphan disease, currently have several limitations on their use, which topical treatments could alleviate. Topical treatment requires penetration of drugs deep into the skin, which is aided by encapsulation within ultradeformable liposomes. Penetrability depends on the flexibility of the lipid membrane, which may be affected by the drugs. We have studied the biophysical effects of four anti-Leishmania drugs (miltefosine (Milt), amphotericin B (AmpB), indole (Ind), and imiquimod (Imiq)) on a soy phosphatidylcholine/sodium cholate membrane. Using diffuse X-ray scattering techniques, we determined bending modulus ( K) and chain order parameter ( S) of the membrane at several drug concentrations. Form factor scattering data allowed construction of electron density profiles, which yielded bilayer thickness and area per lipid. Results show that AmpB had the largest effect on K and S, causing the bilayer to lose integrity at high concentrations. Imiq and Ind induced slight membrane stiffening, whereas Milt had little effect. Imiq also notably decreased chain order at high concentrations. These results will aid in the design of new topical treatments, where Milt, Ind, and Imiq could be used at any concentration without affecting liposome integrity or physical properties, whereas AmpB should not be used at high concentrations.
治疗利什曼病(一种寄生性热带孤儿病)的药物目前在使用上存在一些局限性,而局部治疗可以缓解这些局限性。局部治疗需要药物深入皮肤渗透,这可以通过封装在超变形脂质体中来实现。渗透性取决于脂质膜的柔韧性,而药物可能会影响其柔韧性。我们研究了四种抗利什曼病药物(米替福新(Milt)、两性霉素 B(AmpB)、吲哚(Ind)和咪喹莫特(Imiq))对大豆磷脂酰胆碱/胆酸钠膜的生物物理效应。我们使用漫散射 X 射线散射技术,在几种药物浓度下确定了膜的弯曲模量(K)和链序参数(S)。形态因子散射数据允许构建电子密度分布,从而得出双层厚度和每个脂质的面积。结果表明,AmpB 对 K 和 S 的影响最大,导致双层在高浓度下失去完整性。Imiq 和 Ind 引起膜轻微变硬,而 Milt 几乎没有影响。Imiq 还在高浓度下显著降低了链序。这些结果将有助于设计新的局部治疗方法,其中 Milt、Ind 和 Imiq 可以在任何浓度下使用而不会影响脂质体的完整性或物理性质,而 AmpB 则不应在高浓度下使用。