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Preparation and Characterization of Nanoliposomes for the Entrapment of Bioactive Hydrophilic Globular Proteins
Published on: August 31, 2019
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.
Abstract:
Cell surface receptors facilitate signaling and nutrient uptake. These processes are dynamic, requiring receptors to be actively recycled by endocytosis. Due to their differential expression in disease states, receptors are often the target of drug-carrier particles, which are adorned with ligands that bind specifically to receptors. These targeted particles are taken into the cell by multiple routes of internalization, where the best-characterized pathway is clathrin-mediated endocytosis. Most studies of particle uptake have utilized bulk assays, rather than observing individual endocytic events. As a result, the detailed mechanisms of particle uptake remain obscure. To address this gap, we have employed a live-cell imaging approach to study the uptake of individual liposomes as they interact with clathrin-coated structures. By tracking individual internalization events, we find that the size of liposomes, rather than the density of the ligands on their surfaces, primarily determines their probability of uptake. Interestingly, targeting has the greatest impact on endocytosis of liposomes of intermediate diameters, with the smallest and largest liposomes being internalized or excluded, respectively, regardless of whether they are targeted. These findings, which highlight a previously unexplored limitation of targeted delivery, can be used to design more effective drug carriers.
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.
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