Department of Biochemistry and Molecular Biology, Life Sciences Centre, University of British Columbia, 2350 Health Sciences Mall, Vancouver, BC V6T 1Z3, Canada.
Langmuir. 2022 Jun 28;38(25):7858-7866. doi: 10.1021/acs.langmuir.2c01221. Epub 2022 Jun 16.
Hybrid lipid nanoparticles containing gold nanoparticles (LNP-GNPs) and drugs have potential for imaging applications as well as triggered release of LNP contents in response to pulsed laser or X-ray radiation mediated by the GNPs. However, methods to synthesize LNP-GNP systems that efficiently entrap GNPs (the potential triggered release and imaging agent) and then load and retain the drug cargo in a manner that may have clinical applications have proven elusive. Here, we develop a straightforward "bottom-up" approach to manufacture drug-loaded LNP-GNP systems. We show that negatively charged GNPs of 5 nm diameter can be stably loaded into LNPs containing 10 mol % ionizable cationic lipid using an ethanol dilution, rapid mixing approach and that these systems also exhibit aqueous compartments. Further, we show that such systems can also entrap ammonium sulfate, enabling pH-dependent loading of the weak base anti-cancer drug doxorubicin into the aqueous compartments. Cryo-transmission electron microscopy (Cryo-TEM) imaging clearly demonstrates the presence of GNPs in the interior of the resulting hybrid nanostructures as well as the formation of electron-dense drug precipitates in the aqueous core of the LNP-GNPs. The approach described here is a robust and straightforward method to generate hybrid LNP-GNP-drug and other LNP-metal nanoparticle-drug systems with potential applications for a variety of triggered release protocols.
载金脂质纳米粒(LNP-GNPs)是一种含有金纳米颗粒(LNP-GNPs)的混合脂质纳米粒,具有成像应用的潜力,并且可以在金纳米颗粒介导的脉冲激光或 X 射线辐射下触发 LNP 内容物的释放。然而,合成能够有效包封金纳米颗粒(潜在的触发释放和成像剂),然后以可能具有临床应用的方式装载和保留药物的 LNP-GNP 系统的方法一直难以捉摸。在这里,我们开发了一种简单的“自下而上”方法来制造载药的 LNP-GNP 系统。我们表明,直径为 5nm 的带负电荷的金纳米颗粒可以通过乙醇稀释、快速混合的方法稳定地装载到含有 10mol%可离子化阳离子脂质的 LNPs 中,并且这些系统还表现出水性隔室。此外,我们还表明,这些系统还可以包封硫酸铵,从而能够实现弱碱性抗癌药物阿霉素在水性隔室中的 pH 依赖性装载。冷冻透射电子显微镜(Cryo-TEM)成像清楚地表明,GNPs 存在于所得杂交纳米结构的内部,并且在 LNP-GNPs 的水性核中形成了电子致密的药物沉淀物。这里描述的方法是一种强大而简单的方法,可以生成具有各种触发释放方案应用潜力的杂交 LNP-GNP-药物和其他 LNP-金属纳米颗粒-药物系统。