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February 26, 2026Journal of the American Chemical Society4 citations

Safe and Highly Efficient Lipid-Pro-Dexamethasone Nanoparticles for mRNA Delivery and Base Editing

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YZYan ZongHZHaiping ZhongYWYuqing Wang

Key Points

  • The research aims to create a safe and effective mRNA delivery system using innovative lipid nanoparticles.
  • Developed dexamethasone prodrug ionizable lipids for mRNA delivery.
  • Established the SHIELD LNP platform for enhanced delivery efficiency.
  • Evaluated anti-inflammatory effects and mRNA expression in various organs.
  • Codelivered ABEmax mRNA and sgRNA for gene editing applications.
  • Significantly reduced proinflammatory cytokine levels with the lead formulation.
  • Achieved mRNA delivery efficiency comparable to the FDA-approved SM-102 LNP.
  • Demonstrated notable reductions in inflammation and enhanced mRNA expression in targeted organs.
  • Showed excellent delivery efficacy in therapeutic applications with minimal immunogenicity.

Abstract

The inherent immunogenicity of mRNA lipid nanoparticles (LNPs) poses a major challenge to their application in disease treatment. In this study, we developed a series of innovative dexamethasone (DEX) prodrug ionizable lipids (DPILs) to address the need for safe and effective mRNA delivery, leading to the establishment of the Safe and Highly Efficient Lipid-pro-dexamethasone (SHIELD) LNP platform. The lead formulation, DEX-SPM-CP10 SHIELD LNP, not only markedly decreased the levels of multiple proinflammatory cytokines but also achieved mRNA delivery efficiency comparable to that of the FDA-approved SM-102 LNP. Furthermore, the SHIELD platform demonstrated universality, as incorporating specific ratios of DPILs into various LNPs targeting different organs (such as the liver, lungs, spleen, and pancreas) led to notable reductions in inflammatory responses and enhancements in mRNA expression, highlighting its superiority over strategies that incorporate free DEX. Subsequently, we investigated its application in gene editing therapy by codelivering ABEmax mRNA and sgRNA to edit the EGFP reporter gene and endogenous PCSK9 gene, as well as in protein replacement therapy through multiple injections of mRNA-SHIELD LNPs. All of these results demonstrated excellent delivery efficacy with minimal immunogenicity, fully illustrating the therapeutic potential of this platform. Taken together, the SHIELD platform offers safe and efficient mRNA delivery and has the potential to expand the therapeutic applications of mRNA-based therapies.

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Cite This Study

Zong et al. (2026) studied this question.

synapsesocial.com/papers/699f95951bc9fecf3dab373chttps://doi.org/10.1021/jacs.6c01708
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