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Dark-field microscopic study of the interactions between gold/silver nanoparticles and giant unilamellar vesicles

机译:金/银纳米粒子与巨型单层囊泡之间相互作用的暗场显微镜研究

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Giant unilamellar vesicles (GUVs) are well-established model systems for studying lipid packing and membrane dynamics. With sizes larger than 1 μm, GUVs are easily observable using optical microscopy. Gold nanoparticles (AuNPs) are well known for their biocompatibility and such biomedical applications in drug and gene delivery as well as medical diagnostics and therapeutics. On the other hand, silver nanoparticles (AgNPs) have long been known for their potent antimicrobial and anti-inflammatory effects for such applications as wound dressing and biomedical implants. In this work, we employed the dark-field microscopy (CytoViva Inc.) to study the interactions between AuNPs/AgNPs and GUVs, respectively. The GUVs used in this study were prepared with 1,2 dimyristoyl-sn-glycero-3-phosphocholine (DMPC) as well as cholesterol (chol) at various mol% concentrations (0, 10, 20, 30, 40%). The electroformed GUVs were allowed to incubate with gold or silver nanoparticles of various sizes (between 10 and 100 nm) for 2 hrs before microscopic examination. The experiment has shown that the size of nanoparticles is a critical factor that determines the penetration rate. In addition, the membrane rigidity increases with the molar concentration of cholesterol hence making the NP penetration more difficult. Comparative studies have been made between AuNPs and AgNPs in regard to NP penetration and loading rate as well as the morphological changes induced in GUVs. This work aims to better understand the mechanisms of AuNP/AgNP and membrane interactions for their respective future applications in nanomedicine and nanotechnology.
机译:巨型单层囊泡(GUV)是研究脂质堆积和膜动力学的公认模型系统。尺寸大于1μm的GUV可以使用光学显微镜轻松观察到。金纳米颗粒(AuNPs)因其生物相容性以及此类生物医学在药物和基因传递以及医学诊断和治疗中的应用而闻名。另一方面,银纳米颗粒(AgNPs)长期以来因其在伤口敷料和生物医学植入物等方面的有效抗菌和消炎作用而广为人知。在这项工作中,我们使用了暗场显微镜(CytoViva Inc.)分别研究了AuNPs / AgNPs和GUVs之间的相互作用。本研究中使用的GUV是由1,2二肉豆蔻酰基-sn-甘油-3-磷酸胆碱(DMPC)以及胆固醇(chol)制成的,摩尔浓度分别为(0%,10%,20%,30%,40%)。在显微镜检查之前,将电铸的GUV与各种大小(10至100 nm之间)的金或银纳米粒子孵育2小时。实验表明,纳米颗粒的大小是决定渗透率的关键因素。另外,膜的刚度随着胆固醇的摩尔浓度而增加,因此使得NP渗透更加困难。在AuNPs和AgNPs之间就NP的渗透和负载率以及在GUVs中诱导的形态学变化进行了比较研究。这项工作旨在更好地了解AuNP / AgNP和膜相互作用的机制,以用于它们各自在纳米医学和纳米技术中的未来应用。

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