Enhanced active targeting via cooperative binding of ligands on liposomes to target receptors

Tomoki Sugiyama1, Tomohiro Asai, Yuki Murase Nedachi

  • 1Department of Medical Biochemistry, School of Pharmaceutical Sciences, University of Shizuoka, 52-1 Yada, Suruga-ku, Shizuoka, Japan.

Plos One
|July 11, 2013
PubMed

Insights

Dual-targeting (DT) liposomes with VEGFR-1 and integrin αvβ3 ligands show enhanced tumor accumulation and targeting in mice. This dual-targeting strategy improves liposome affinity for cancer cells, advancing active-targeting drug delivery.

Area of Science:

  • Biomedical Engineering
  • Nanotechnology
  • Cancer Therapeutics

Background:

  • Active targeting enhances drug delivery efficacy.
  • Previous dual-targeting (DT) liposomes used VEGFR-1 and CD13 ligands.
  • Current study investigates DT liposomes with VEGFR-1 and integrin αvβ3 ligands.

Purpose of the Study:

  • To evaluate the binding characteristics and tumor targeting of DT liposomes with APRPG (VEGFR-1) and GRGDS (integrin αvβ3) ligands.
  • To compare the performance of DT liposomes against single-targeting (ST) liposomes.
  • To assess the potential of DT liposomes for cancer drug delivery.

Main Methods:

  • Surface plasmon resonance (SPR) assay to determine ligand-receptor binding affinity.
  • In vitro studies with stimulated human umbilical vein endothelial cells.
  • In vivo biodistribution assay in Colon26 NL-17 tumor-bearing mice.
  • Confocal microscopy for intratumoral liposome distribution analysis.

Main Results:

  • DT liposomes exhibited synergistic association with stimulated endothelial cells compared to ST liposomes.
  • SPR confirmed selective binding of ST liposomes to VEGFR-1 or integrin αvβ3.
  • DT liposomes demonstrated higher affinity for combined VEGFR-1 and integrin αvβ3.
  • DT liposomes showed significantly greater tumor accumulation in vivo.
  • Confocal microscopy indicated DT liposomes targeted both angiogenic endothelial and tumor cells.

Conclusions:

  • Dual-targeting with VEGFR-1 and integrin αvβ3 ligands enhances liposome affinity for target cells.
  • DT liposomes show improved tumor accumulation and broader intratumoral distribution.
  • This dual-targeting strategy holds promise for active-targeting cancer drug delivery.

Related Concept Videos

Modified-Release Drug Delivery Systems: Site-Targeted01:24

Modified-Release Drug Delivery Systems: Site-Targeted

Site-targeted drug delivery systems enhance therapeutic efficacy while minimizing systemic toxicity and treatment costs. Unlike conventional methods, these systems ensure precise drug delivery, improving bioavailability and reducing side effects. Targeted drug delivery is classified into three levels. First-order targeting directs drugs to the capillary beds of specific organs or tissues. Second-order targets specific cell types, such as tumor cells, using receptor-mediated interactions.
Receptor-mediated Endocytosis01:38

Receptor-mediated Endocytosis

Overview
Receptor-mediated Endocytosis01:20

Receptor-mediated Endocytosis

Receptor-mediated endocytosis is when bulk amounts of specific molecules are imported into a cell after binding to cell surface receptors. The molecules bound to these receptors are taken into the cell through inward folding of the cell surface membrane, which is eventually pinched off into a vesicle within the cell. Structural proteins, such as clathrin, coat the budding vesicle.
Clathrin-Mediated Endocytosis of LDL
One well-characterized example of receptor-mediated endocytosis is the...
Site-Targeted Drug Delivery Systems: Polymeric Carriers01:24

Site-Targeted Drug Delivery Systems: Polymeric Carriers

Polymeric carriers enhance targeted drug delivery by increasing efficacy while minimizing off-target effects. These carriers comprise a biodegradable polymeric backbone integrated with functional elements that enable targeting, improve physicochemical properties, and regulate drug release.Targeting MechanismsThe targeting ability of polymeric carriers is mediated by a homing device, which is a molecular recognition component designed to selectively bind to specific tissues or cells. Monoclonal...
Targets for Drug Action: Overview01:26

Targets for Drug Action: Overview

Drugs target macromolecules to modify ongoing cellular processes. Primary drug targets include receptors, ion channels, transporters, and enzymes.
Receptors are either membrane-spanning or intracellular proteins, which upon binding a ligand, get activated and transmit the signal downstream to elicit a response. Drugs bind receptors, either mimicking the action of endogenous ligands or blocking the receptor activity to bring about a modified response. Nearly 35% of approved drugs target the G...
Transducer Mechanism: Enzyme-Linked Receptors01:27

Transducer Mechanism: Enzyme-Linked Receptors

Enzyme-linked receptors are cell-surface receptors acting as an enzyme or associating with an enzyme intracellularly. They make excellent drug targets. Drugs can bind to the extracellular ligand-binding domain or directly affect their enzymatic domain and alter their activity.
Major types that are helpful drug targets include: