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聚合物治疗中的生物物理研究:阴离子和阳离子 PAMAM 树状聚合物与脂质单层的相互作用。

Biophysical studies in polymer therapeutics: the interactions of anionic and cationic PAMAM dendrimers with lipid monolayers.

机构信息

a School of Pharmacy , University of Reading , Reading , UK.

出版信息

J Drug Target. 2017 Nov-Dec;25(9-10):910-918. doi: 10.1080/1061186X.2017.1365877. Epub 2017 Aug 25.

Abstract

Understanding how polymers interact with biological membranes is important for the development of polymer-based therapeutics and wider biomedical applications. Here, biophysical methods (surface pressure measurements, external reflection FTIR) have been used to investigate the interaction between PAMAM dendrimers (Generation 5 or 4.5) and anionic (DPPG) or zwitterionic (DPPC) model membranes. We observed a concentration-dependent binding behaviour of both PAMAM species to both model membranes; however, equivalent levels of penetration into DPPC monolayers required approximately 10-fold higher dendrimer concentrations than for penetration into DPPG monolayers. Overall, the anionic PAMAM G4.5 showed a slightly better penetration ability which could be caused by repulsive forces towards the lipid layers. In comparison, increasing concentration of cationic PAMAM G5 leads to saturation of adsorption at the anionic lipid surface before penetration into the lipid layer likely driven by electrostatic attraction. Our studies also showed that physiologically relevant concentrations of sodium chloride (144 mM) decreased PAMAM penetration into DPPG monolayers but did not significantly affect the dendrimer-DPPC interaction. These results provide an insight into the mechanism of interaction between charged dendritic polymers with a lipid interface and show that the nature of such interactions are affected by lipid headgroup, dendrimer charge and solution salinity.

摘要

了解聚合物如何与生物膜相互作用对于开发基于聚合物的治疗方法和更广泛的生物医学应用非常重要。在这里,使用了生物物理方法(表面压力测量,外部反射 FTIR)来研究 PAMAM 树状大分子(第 5 代或 4.5 代)与阴离子(DPPG)或两性离子(DPPC)模型膜之间的相互作用。我们观察到两种 PAMAM 物种与两种模型膜之间都存在浓度依赖性的结合行为;然而,渗透到 DPPC 单层所需的树状大分子浓度大约是渗透到 DPPG 单层所需浓度的 10 倍。总体而言,阴离子 PAMAM G4.5 表现出稍好的渗透能力,这可能是由于其对脂质层的排斥力所致。相比之下,阳离子 PAMAM G5 的浓度增加会导致在穿透脂质层之前,在阴离子脂质表面的吸附达到饱和,这可能是由静电吸引驱动的。我们的研究还表明,生理相关浓度的氯化钠(144 mM)会降低 PAMAM 渗透到 DPPG 单层中,但对树状大分子-DPPC 相互作用没有显著影响。这些结果深入了解了带电荷的树枝状聚合物与脂质界面之间相互作用的机制,并表明这种相互作用的性质受脂质头基、树状大分子电荷和溶液盐度的影响。

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