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Advances in an active and passive targeting to tumor and adipose tissues
Yu Sakurai1, Kazuaki Kajimoto, Hiroto Hatakeyama
1Hokkaido University, Laboratory of Innovative Nanomedicine, Faculty of Pharmaceutical Sciences , Kita 12, Nishi 6, Kita-ku, Sapporo, Hokkaido 060-0812 , Japan.
Introduction:
Data reported during the last decade of the twentieth century indicate that passive targeting is an efficient strategy for delivering nanocarrier systems to tumor tissues. The focus of this review is on active targeting as a next-generation strategy for extending the capacity of a drug delivery system (DDS).
Areas Covered:
Tumor vasculature targeting was achieved using arginine- glycine-aspartic acid, asparagine-glycine-arginine and other peptides, which are well-known peptides, as ligand against tumor vasculature. An efficient system for delivering small interfering RNA to the tumor vasculature involved the use of a multifunctional envelope-type nanodevice based on a pH-modified cationic lipid and targeting ligands. The active-targeting system was extended from tumor delivery to adipose tissue delivery, where endothelial cells are tightly linked and are impermeable to nanocarriers. In mice, prohibitin-targeted nanoparticles can be used to successfully deliver macromolecules to induce anti-obese effects. Finally, the successful delivery of nanocarriers to adipose tissue in obese mice via the enhanced permeability and retention-effect is reported, which can be achieved in tumor tissue.
Expert Opinion:
Unlike tumor tissues, only a few reports have appeared on how liposomal carriers accumulate in adipose tissues after systemic injection. This finding, as well as active targeting to the adipose vasculature, promises to extend the capacity of DDS to adipose tissue. Since the site of action of nucleic acids is the cytosol, the intracellular trafficking of carriers and their cargoes as well as cellular uptake must be taken into consideration.
Insights
Active targeting enhances drug delivery systems (DDS) beyond tumors to adipose tissue. This strategy utilizes specific ligands and nanocarriers for improved macromolecule delivery, offering new therapeutic possibilities.
Area of Science:
- Nanomedicine
- Drug Delivery Systems
- Adipose Tissue Therapeutics
Background:
- Passive targeting of nanocarriers to tumors is established.
- Active targeting represents a next-generation strategy for drug delivery systems (DDS).
Purpose of the Study:
- To review active targeting strategies for extending DDS capacity.
- To explore the application of active targeting beyond tumor tissues to adipose tissue.
Main Methods:
- Utilizing peptides like arginine-glycine-aspartic acid as ligands for tumor vasculature targeting.
- Employing multifunctional envelope-type nanodevices for small interfering RNA delivery.
- Investigating prohibitin-targeted nanoparticles for macromolecule delivery to adipose tissue in mice.
Main Results:
- Active targeting successfully delivered nanocarriers to tumor vasculature.
- Prohibitin-targeted nanoparticles induced anti-obesity effects in mice.
- Enhanced permeability and retention effect facilitated nanocarrier delivery to adipose tissue.
Conclusions:
- Active targeting to adipose vasculature offers potential for extending DDS capacity.
- Limited data exists on liposomal carrier accumulation in adipose tissues.
- Intracellular trafficking and cellular uptake are critical for nucleic acid-based therapies.
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