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新型普鲁士蓝-脂质纳米复合物的简便合成。

Facile Synthesis of Novel Prussian Blue-Lipid Nanocomplexes.

机构信息

Pharmacy and Pharmaceutical Technology and, Physical Chemistry Department, Faculty of Pharmacy and Food Sciences, University of Barcelona, Avda. Joan XXIII, 27-31, 08028 Barcelona, Catalonia, Spain.

Institute of Nanoscience and Nanotechnology, IN2UB, Diagonal 645, 08028 Barcelona, Catalonia, Spain.

出版信息

Molecules. 2019 Nov 15;24(22):4137. doi: 10.3390/molecules24224137.

Abstract

Prussian blue (PB) is known for its multiple applications ranging from fine arts to therapeutics. More recently, PB nanoparticles have been pointed to as appealing photothermal agents (PA) when irradiated with wavelengths corresponding to the biological windows, namely regions located in the near infrared (NIR) zone. In addition, the combination of PB with other components such as phospholipids boosts their therapeutical potential by facilitating, for instance, the incorporation of drugs becoming suitable drug delivery systems. The novelty of the research relies on the synthesis procedure and characterization of hybrid lipid-PB nanoparticles with a high yield in a friendly environment suitable for photothermal therapy. This goal was achieved by first obtaining insoluble PB coated with oleylamine (OA) to facilitate its combination with lipids. The resulting lipid-PB complex showed a monomodal distribution of sizes with an overall size of around 100 nm and a polydispersity index of about 0.200. It highlights one critical step in the synthesis procedure that is the shaking time of the mixture of PB-OA nanoparticles with the lipid, which was found to be 48 h. This time assured homogeneous preparation without the need of further separation stages. Samples were stable for more than three months under several storage conditions.

摘要

普鲁士蓝 (PB) 以其从美术到治疗学的多种应用而闻名。最近,当用对应生物窗口(即近红外 (NIR) 区域内的区域)的波长照射时,PB 纳米粒子已被指出是有吸引力的光热剂 (PA)。此外,将 PB 与磷脂等其他成分结合使用,通过促进药物的掺入,使其成为合适的药物输送系统,从而提高了它们的治疗潜力。该研究的新颖之处在于在适合光热治疗的友好环境中以高产率合成和表征具有高产量的混合脂质-PB 纳米粒子。这一目标是通过首先获得用油胺 (OA) 涂覆的不溶性 PB 来实现的,以促进其与脂质的结合。所得的脂质-PB 复合物表现出单模态尺寸分布,总尺寸约为 100nm,多分散指数约为 0.200。它突出了合成过程中的一个关键步骤,即 PB-OA 纳米粒子与脂质混合物的摇晃时间,发现需要 48 小时。这个时间确保了在没有进一步分离阶段的情况下进行均匀的制备。在几种储存条件下,样品在超过三个月的时间内保持稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0142/6891449/af1bf3281f87/molecules-24-04137-g001.jpg

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