Molecular Dynamics of Lipid Nanoparticles Explored through Solution and Solid-State NMR Spectroscopy and MD Simulations

Jun 11, 2025The journal of physical chemistry. B

Molecular behavior of lipid nanoparticles studied using different NMR methods and computer simulations

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Abstract

Lipid X demonstrates significantly higher dynamics at nanosecond time scales compared to other lipid components in siRNA-encapsulated lipid nanoparticles (LNPs).

  • siRNA encapsulation reduces the mobility of Lipid X, supporting a dense core model for siRNA-loaded LNPs.
  • DSPC and cholesterol exhibit slower motion than Lipid X, indicating a structural hierarchy within the LNP.
  • PEGylated lipid content affects LNP membrane dynamics, resulting in a broad dynamic distribution of polyethylene glycol chains.
  • A phase transition occurs in the siRNA-cationic-lipid core at -50 °C, while the outer membrane undergoes a phase change at -20 °C.
  • The freezing of the bulk solution and water domain within the core region influences the motions of both the outer membrane and the siRNA-cationic-lipid complex.
  • Molecular dynamics simulations provide insights into lipid organization and dynamics across the temperature range studied.

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