Published 2021
| Version v1
Publication
Considerable Improvement of Ursolic Acid Water Solubility by Its Encapsulation in Dendrimer Nanoparticles: Design, Synthesis and Physicochemical Characterization
Contributors
Description
Ursolic acid (UA) is a pentacyclic triterpenoid found in many medicinal plants and aromas
endowed with numerous in vitro pharmacological activities, including antibacterial effects. Unfortunately, UA is poorly administered in vivo, due to its water insolubility, low bioavailability, and
residual systemic toxicity, thus making urgent the development of water-soluble UA formulations.
Dendrimers are nonpareil macromolecules possessing highly controlled size, shape, and architecture.
In dendrimers with cationic surface, the contemporary presence of inner cavities and of hydrophilic
peripheral functions, allows to encapsulate hydrophobic non-water-soluble drugs as UA, to enhance their water-solubility and stability, and to promote their protracted release, thus decreasing
their systemic toxicity. In this paper, aiming at developing a new UA-based antibacterial agent
administrable in vivo, we reported the physical entrapment of UA in a biodegradable not cytotoxic
cationic dendrimer (G4K). UA-loaded dendrimer nanoparticles (UA-G4K) were obtained, which
showed a drug loading (DL%) much higher than those previously reported, a protracted release
profile governed by diffusion mechanisms, and no cytotoxicity. Also, UA-G4K was characterized by
principal components analysis (PCA)-processed FTIR spectroscopy, by NMR and elemental analyses,
and by dynamic light scattering experiments (DLS). The water solubility of UA-G4K was found to be
1868-fold times higher than that of pristine UA, thus making its clinical application feasible.
Additional details
Identifiers
- URL
- http://hdl.handle.net/11567/1054713
- URN
- urn:oai:iris.unige.it:11567/1054713
Origin repository
- Origin repository
- UNIGE