Selective endocytic uptake of targeted liposomes occurs within a narrow range of liposome diameter

Grant Ashby1, Kayla E Keng1, Carl C Hayden1

  • 1Department of Biomedical Engineering, The University of Texas at Austin.

Insights

Liposome size, not ligand density, primarily dictates cellular uptake via endocytosis. Targeting ligands are most effective for intermediate-sized liposomes, revealing limitations for drug delivery systems.

Area of Science:

  • Cell biology
  • Biophysics

Background:

  • Cell surface receptors mediate critical cellular functions like signaling and nutrient uptake.
  • Receptor recycling via endocytosis is essential for cellular dynamics.
  • Targeted drug delivery systems utilize ligands to bind cell surface receptors, but uptake mechanisms require further elucidation.

Approach:

  • Live-cell imaging was used to observe individual liposome-cell interactions during endocytosis.
  • The study tracked the internalization of liposomes interacting with clathrin-coated structures.
  • Individual endocytic events were analyzed to understand uptake mechanisms.

Key Points:

  • Liposome size is a primary determinant of cellular uptake probability, outweighing ligand density.
  • Ligand targeting significantly impacts the endocytosis of intermediate-diameter liposomes.
  • Small liposomes are consistently internalized, while large liposomes are excluded, irrespective of targeting.

Conclusions:

  • Liposome size presents a critical, previously unrecognized factor influencing the efficacy of targeted drug delivery.
  • Understanding these size-dependent uptake dynamics can optimize the design of future drug carriers.
  • This research provides insights into the limitations of ligand-mediated endocytosis for nanoparticles.