Computational Biology, Department of Biology, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Germany; Erlangen National Center for High-Performance Computing (NHR@FAU), Erlangen, Germany.
Computational Biology, Department of Biology, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Germany; Erlangen National Center for High-Performance Computing (NHR@FAU), Erlangen, Germany.
Biophys J. 2022 Oct 18;121(20):3927-3939. doi: 10.1016/j.bpj.2022.08.037. Epub 2022 Aug 31.
Crucial for mRNA-based vaccines are the composition, structure, and properties of lipid nanoparticles (LNPs) as their delivery vehicle. Using all-atom molecular dynamics simulations as a computational microscope, we provide an atomistic view of the structure of the Comirnaty vaccine LNP, its molecular organization, physicochemical properties, and insight in its pH-driven phase transition enabling mRNA release at atomistic resolution. At physiological pH, our simulations suggest an oil-like LNP core that is composed of the aminolipid ALC-0315 and cholesterol (ratio 72:28). It is surrounded by a lipid monolayer formed by distearoylphosphatidylcholine, ALC-0315, PEGylated lipids, and cholesterol at a ratio of 22:9:6:63. Protonated aminolipids enveloping mRNA formed inverted micellar structures that provide a shielding and likely protection from environmental factors. In contrast, at low pH, the Comirnaty lipid composition instead spontaneously formed lipid bilayers that display a high degree of elasticity. These pH-dependent lipid phases suggest that a change in pH of the environment upon LNP transfer to the endosome likely acts as trigger for cargo release from the LNP core by turning aminolipids inside out, thereby destabilizing both the LNP shell and the endosomal membrane.
对于基于 mRNA 的疫苗来说,脂质纳米颗粒(LNPs)的组成、结构和性质是其作为递送载体的关键。我们使用全原子分子动力学模拟作为计算显微镜,提供了 Comirnaty 疫苗 LNP 的结构、分子组织、物理化学性质的原子分辨率视图,并深入了解其 pH 驱动的相转变,使 mRNA 能够以原子分辨率释放。在生理 pH 下,我们的模拟表明 LNP 核心类似于油,由氨基脂质 ALC-0315 和胆固醇(比例为 72:28)组成。它被由二硬脂酰基磷脂酰胆碱、ALC-0315、PEG 化脂质和胆固醇以 22:9:6:63 的比例形成的脂质单层包围。包裹 mRNA 的质子化氨基脂质形成了反胶束结构,为其提供了屏蔽和可能的保护,使其免受环境因素的影响。相比之下,在低 pH 下,Comirnaty 的脂质组成反而自发形成具有高弹性的脂质双层。这些依赖 pH 的脂质相表明,LNP 转移到内涵体后环境 pH 的变化可能通过将氨基脂质外翻作为触发因素,从而破坏 LNP 壳和内涵体膜,使货物从 LNP 核心中释放出来。