Many biologically active compounds feature low solubility in aqueous media and, thus, poor bioavailability. The formation of the host-guest complex by using calixarene-based macrocy-cles (i.e., resorcinol-derived cyclic oligomers) with a good solubility profile can improve solubiliza-tion of hydrophobic drugs. Herein, we explore the ability of resorc[4]arenes to self-assemble in polar solutions, to form supramolecular aggregates, and to promote water-solubility of an isoflavone en-dowed with anti-cancer activity, namely Glabrescione B (GlaB). Accordingly, we synthesized sev-eral architectures featuring a different pattern of substitution on the upper rim including functional groups able to undergo acid dissociation (i.e., carboxyl and hydroxyl groups). The aggregation phe-nomenon of the amphiphilic resorc[4]arenes has been investigated in a THF/water solution by UV– visible spectroscopy, at different pH values. Based on their ionization properties, we demonstrated that the supramolecular assembly of resorc[4]arene-based systems can be modulated at given pH values, and thus promoting the solubility of GlaB.

Exploring the assembly of resorc[4]arenes for the construction of supramolecular nano-aggregates / Buonsenso F.; Ghirga F.; Romeo I.; Siani G.; Pilato S.; Quaglio D.; Pierini M.; Botta B.; Calcaterra A.. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - ELETTRONICO. - 22:(2021), pp. 11785.1-11785.16. [10.3390/ijms222111785]

Exploring the assembly of resorc[4]arenes for the construction of supramolecular nano-aggregates

Buonsenso F.;
2021

Abstract

Many biologically active compounds feature low solubility in aqueous media and, thus, poor bioavailability. The formation of the host-guest complex by using calixarene-based macrocy-cles (i.e., resorcinol-derived cyclic oligomers) with a good solubility profile can improve solubiliza-tion of hydrophobic drugs. Herein, we explore the ability of resorc[4]arenes to self-assemble in polar solutions, to form supramolecular aggregates, and to promote water-solubility of an isoflavone en-dowed with anti-cancer activity, namely Glabrescione B (GlaB). Accordingly, we synthesized sev-eral architectures featuring a different pattern of substitution on the upper rim including functional groups able to undergo acid dissociation (i.e., carboxyl and hydroxyl groups). The aggregation phe-nomenon of the amphiphilic resorc[4]arenes has been investigated in a THF/water solution by UV– visible spectroscopy, at different pH values. Based on their ionization properties, we demonstrated that the supramolecular assembly of resorc[4]arene-based systems can be modulated at given pH values, and thus promoting the solubility of GlaB.
2021
22
1
16
Goal 3: Good health and well-being
Buonsenso F.; Ghirga F.; Romeo I.; Siani G.; Pilato S.; Quaglio D.; Pierini M.; Botta B.; Calcaterra A.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1397095
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