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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Relevance of charges and polymer mechanical stiffness in the mechanism and kinetics of formation of liponanoparticles probed by the supported bilayer model approach
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Relevance of charges and polymer mechanical stiffness in the mechanism and kinetics of formation of liponanoparticles probed by the supported bilayer model approach

机译:电荷和聚合物机械刚度在由支撑双层模型方法探测的脂质瘤形成机理和动力学中的相关性

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In specific conditions, co-incubation of polymer nanoparticles and phospholipid vesicles leads to the formation of lipid bilayer coated nanoparticles usable as biocompatible drug delivery systems for co-encapsulation of two drugs. In this work, we focused on the preparation and characterization of liponanoparticles obtained by co-incubation of poly(d,l, lactic acid) (PDLLA) and neutral (POPC) or cationic (POPC/DOTAP) liposomes. The comparison of the behavior of the various studied vesicles co-incubated with nanoparticles highlighted the role of electrostatic interactions. Although the bilayer adsorbed at the surface of polymer nanoparticles was not visible by cryoTEM, zeta-potential measurements and fluorescence confocal microscopy showed evidence of the formation of hybrid nanoparticles in the presence of cationic vesicles. Using silicon dioxide and Langmuir-Schaefer transferred polymer layer-coated surfaces, a thorough analysis of the process of formation of a phospholipid bilayer at the surface of a PDLLA film was performed by combining QCM-D and AFM experiments, taking into account the nature and properties of the support, and the concentration and charge of the lipids. Contrarily to POPC vesicles, cationic ones formed a bilayer on the PDLLA layer in water, but their fast rupture on the soft material did not allow complete nanoparticle surface coverage. This work demonstrates the role of charges and polymer mechanical stiffness in the mechanism and kinetics of formation of PDLLA liponanoparticles in pure water.
机译:在具体条件下,聚合物纳米颗粒和磷脂囊泡的共育导致脂质双层涂覆纳米颗粒的形成可用作生物相容性药物递送系统,用于共同包封两种药物。在这项工作中,我们专注于通过共孵育聚(d,l,乳酸)(pdlla)和中性(popc)或阳离子(popc / dotap)脂质体而获得的脂质腈的制备和表征。与纳米颗粒共孵育的各种研究囊泡的行为的比较强调了静电相互作用的作用。尽管在聚合物纳米颗粒表面上吸附的双层通过Cryotem,Zeta-Polysoct测量和荧光共聚焦显微镜观察,但荧光共聚焦显微镜显示出在阳离子囊泡存在下形成杂化纳米颗粒的证据。使用二氧化硅和朗米尔 - 施发转移的聚合物层涂覆的表面,通过组合QCM-D和AFM实验,进行对PDLLA薄膜表面形成的磷脂双层的形成过程的彻底分析,考虑到性质和支持的性质,以及脂质的浓度和电荷。与Popc囊泡相反,阳离子的囊泡在水中形成了双层层,但它们在软材料上的快速破裂不允许完全纳米粒子表面覆盖。这项工作展示了电荷和聚合物机械刚度在纯水中PDLLA脂质基颗粒形成的机制和动力学中的作用。

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