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April 8, 2026ACS Nano0 citations

Deciphering Apolipoprotein A4 in the Protein Corona of Ligand-Modified Liposomes for Tumor Targeting and Penetration

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YLY I X I U LiangXLXianlu LiYZYichen Zhang

Key Points

  • The study aims to explore how different ligand modifications in liposomes affect their ability to target tumors and penetrate tissue.
  • Designing liposomes with various targeting ligands like PEGylation, folic acid, mannose, RGD peptide, and melittin.
  • Testing these liposomes in primary and metastatic breast cancer models to assess distribution and targeting effectiveness.
  • Analyzing the composition of the protein corona, focusing on the levels of Apolipoprotein A4 (ApoA4).
  • Melittin-modified liposomes showed the best tumor targeting and therapeutic outcomes.
  • Ligand modifications influenced the protein corona composition, particularly affecting ApoA4 levels.
  • Increased ApoA4 levels correlated with improved tumor targeting and distribution, leading to better therapeutic results.

Abstract

Modifying nanomedicines with targeting ligands represents an encouraging strategy for active tumor targeting, but its clinical failure underscores ongoing challenges. Herein, a series of liposomes with different targeting ligands (e.g., PEGylation, folic acid, mannose, RGD peptide, and melittin) were rationally designed to investigate the principles and mechanisms governing tumor targeting and penetration profiles. In primary and lung metastatic breast cancer models, these liposomes exhibited a systematic tendency of intratumor distribution, with melittin-modified liposomes showing optimal tumor targeting and therapeutic performance. Further studies revealed that the ligand modifications in liposomes could modulate the composition of their protein corona, particularly the level of Apolipoprotein A4 (ApoA4), which, in turn, influenced tumor targeting and intratumor distribution, ultimately affecting the therapeutic outcome of tumor inhibition and survival prolongation. This research provided a distinct correlation between ligand modification of liposomes and their in vivo biological performances, offering key insights for designing effective active-targeting nanomedicines.

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Cite This Study

Liang et al. (2026) studied this question.

synapsesocial.com/papers/69d5f14b74eaea4b11a7ae47https://doi.org/10.1021/acsnano.5c19739
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