School of Science, College of Science, Engineering and Health, RMIT University, Melbourne, Victoria, Australia.
Nat Commun. 2019 Oct 3;10(1):4492. doi: 10.1038/s41467-019-12508-8.
Drug delivery with nanocarriers relies on the interaction of individual nanocarriers with the cell surface. For lipid-based NCs, this interaction uniquely involves a process of membrane fusion between the lipid bilayer that makes up the NC and the cell membrane. Cubosomes have emerged as promising fusogenic NCs, however their individual interactions had not yet been directly observed due to difficulties in achieving adequate resolution or disentangling multiple interactions with common characterization techniques. Moreover, many studies on these interactions have been performed under static conditions which may not mimic the actual transport of NCs. Herein we have observed fusion of lipid cubosome NCs with lipid bilayers under flow. Total internal reflection microscopy has allowed visualisation of the fusion event which was sensitive to the lipid compositions and rationalized by lipid diffusion. The fusion event in supported lipid bilayers has been compared with those in cells, revealing a distinct similarity in kinetics.
纳米载体的药物传递依赖于单个纳米载体与细胞表面的相互作用。对于基于脂质的 NCs,这种相互作用独特地涉及构成 NC 的脂质双层与细胞膜之间的膜融合过程。立方脂质体已成为很有前途的融合性 NCs,但是由于难以实现足够的分辨率或理清常见表征技术中的多种相互作用,因此尚未直接观察到它们的个体相互作用。此外,许多关于这些相互作用的研究都是在静态条件下进行的,这可能无法模拟 NCs 的实际运输。在此,我们观察到脂质立方脂质体 NC 在流动下与脂质双层融合。全内反射显微镜允许可视化融合事件,该事件对脂质组成敏感,并通过脂质扩散进行了合理化。比较了支撑脂质双层中的融合事件与细胞中的融合事件,发现动力学具有明显的相似性。