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April 30, 2026Materials Today2 citationsOpen Access

Chemical topology of lipo-amino fatty acid mRNA carriers triggers distinct lipid bulk phases and endosomal escape mechanisms

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MGMelina GrauEKEkaterina KostyurinaJSJohanna Seidl

Key Points

  • This research aims to explore how the chemical structure of lipo-amino fatty acid carriers affects their mRNA delivery efficiency and endosomal escape mechanisms.
  • Identified LAF-Stp xenopeptides as mRNA carriers.
  • Utilized SAXS to analyze lipid bulk phase structures.
  • Conducted experiments with bafilomycin to assess endosomal acidification impact on mRNA delivery efficacy.
  • Carriers with a U-shape structure showed a 20-fold reduction in efficacy with bafilomycin (P<0.01).
  • Bundle structures exhibited less than 4-fold reduction in delivery efficacy when treated with bafilomycin.
  • Lipid bulk phase structures were largely pH-independent, with U-shapes forming lamellar phases and Bundles forming non-lamellar bicontinuous phases.

Abstract

LAF-Stp xenopeptides (XPs) comprising lipoamino fatty acid (LAF) units connected with the tetraethylene pentamine derived polyamino acid Stp were identified as a novel class of amphiphilic mRNA carriers. A ‘chameleon-like’ polarity switch is observed upon transition from neutral physiological to endosomal acidic pH. Protonation of the lipidic tertiary amine of LAF results in an ∼2 log unit change in the octanol/water partition coefficient (logD), consistent with all-atom molecular dynamics simulations. mRNA delivery efficacy is tunable by the chemical topology (either a flexible ‘U-shape’ or a constrained ‘Bundle’ structure) and specific modifications in the LAF-Stp linker domains. Specifically, replacing lysine with shorter ornithine linkers further increases the structural rigidity of Bundles. For all LAF-XPs, protonation-induced solubilization of carriers triggers endosomal destabilization (evidenced by galectin-8 recruitment) and successful cytosolic mRNA transfection. Carriers with U-shape topology strongly depend on endosomal acidification, as demonstrated by an up to ∼20-fold drop in efficacy upon treatment with v-ATPase inhibitor bafilomycin, similar as found for the ionizable polymer polyethylenimine. In contrast, Bundles are far less affected (<4-fold reduction) by bafilomycin treatment. Small-angle X-ray scattering (SAXS) reveals that lipid bulk phase structures are largely pH-independent for both topologies. Interestingly, U-shapes form lamellar phases, whereas Bundle topology induces non-lamellar bicontinuous phases with negative membrane curvature. These findings suggest distinct endosomal escape mechanisms for Bundle and U-shapes. Both carriers benefit from endosomal protonation and solubilization, but only Bundles can adopt pH-independent membrane-destabilizing fusogenic phases, reflected by faster kinetics and characteristic cellular morphology in a galectin-8 assay.

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Cite This Study

Grau et al. (2026) studied this question.

synapsesocial.com/papers/69f2f1471e5f7920c6387087https://doi.org/10.1016/j.mattod.2026.103353
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Hydrophobic Refinement of Polarity-Switchable Lipo-Xenopeptides Modulates Endosomal Escape and Enhances mRNA Delivery In Vitro and In Vivo2026
  2. 2PEGylation Enhances Colloidal Stability and Promotes Ligand-Mediated Targeting of LAF–Xenopeptide mRNA Complexes2025
  3. 3mRNA Lipoplexes with Cationic and Ionizable α-Amino-lipophosphonates: Membrane Fusion, Transfection, mRNA Translation and Conformation2022 · 14 citations
  4. 4Elucidating Structural Configuration of Lipid Assemblies for mRNA Delivery Systems2024 · 16 citations
  5. 5Spatial Tail Design in Ionizable Lipids Enhances the Safety and Efficacy of mRNA Delivery2026