Development of Biotinylated Liposomes Encapsulating Metformin for Therapeutic Targeting of Inflammation-Based Diseases

Author:

Ailuno Giorgia1ORCID,Baldassari Sara1ORCID,Balboni Alice1,Pastorino Sara2,Zuccari Guendalina1ORCID,Cortese Katia3ORCID,Barbieri Federica4ORCID,Drava Giuliana1ORCID,Florio Tullio45ORCID,Caviglioli Gabriele1

Affiliation:

1. Department of Pharmacy, University of Genoa, Viale Cembrano 4, 16148 Genova, Italy

2. Territorial Pharmacy of Azienda Sociosanitaria Ligure 2, Via Carlo Collodi 13, 17100 Savona, Italy

3. Department of Experimental Medicine, University of Genoa, Via Antonio de Toni 14, 16132 Genova, Italy

4. Department of Internal Medicine, University of Genoa, Viale Benedetto XV 2, 16132 Genova, Italy

5. IRCCS Ospedale Policlinico San Martino, Largo Rosanna Benzi 10, 16132 Genova, Italy

Abstract

Inflammation is a physiological response to a damaging stimulus but sometimes can be the cause of the onset of neurodegenerative diseases, atherosclerosis, and cancer. These pathologies are characterized by the overexpression of inflammatory markers like endothelial adhesion molecules, such as Vascular Cell Adhesion Molecule-1 (VCAM-1). In the present work, the development of liposomes for therapeutic targeted delivery to inflamed endothelia is described. The idea is to exploit a three-step pretargeting system based on the biotin–avidin high-affinity interaction: the first step involves a previously described biotin derivative bearing a VCAM-1 binding peptide; in the second step, the avidin derivative NeutrAvidinTM, which strongly binds to the biotin moiety, is injected; the final step is the administration of biotinylated liposomes that would bind to NeutravidinTM immobilized onto VCAM-1 overexpressing endothelium. Stealth biotinylated liposomes, prepared via the thin film hydration method followed by extrusion and purification via size exclusion chromatography, have been thoroughly characterized for their chemico-physical and morphological features and loaded with metformin hydrochloride, a potential anti-inflammatory agent. The three-step system, tested in vitro on different cell lines via confocal microscopy, FACS analysis and metformin uptake, has proved its suitability for therapeutic applications.

Publisher

MDPI AG

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