Euplotin C is a sesquiterpene of marine origin endowed with significant anti-microbial and anti-tumor properties. Despite the promising functional profile, its progress as a novel drug candidate has failed so far, due to its scarce solubility and poor stability in aqueous media, such as biological fluids. Therefore, overcoming these limits is an intriguing challenge for the scientific community. In this work, we synthesized beta-cyclodextrin-based nanosponges and investigated their use as colloidal carriers for stably complex euplotin C. Results obtained proved the ability of the carrier to include the natural compound, showing remarkable values of both loading efficiency and capacity. Moreover, it also allowed us to preserve the chemical structure of the loaded compound, which was recovered unaltered once extracted from the complex. Therefore, the use of beta-cyclodextrin-based nanosponges represents a viable option to vehiculate euplotin C, thus opening up its possible use as pharmacologically active compound.

Complexing the Marine Sesquiterpene Euplotin C by Means of Cyclodextrin-Based Nanosponges: A Preliminary Investigation / Bertoli, A., Lobue, A., Quattrini, L., Sartini, S., Polini, B., Carpi, S., Frontini, F.P., Di Giuseppe, G., Guella, G., Nieri, P., La Motta, C.. - In: MARINE DRUGS. - ISSN 1660-3397. - STAMPA. - 20:11(2022), p. 682. [10.3390/md20110682]

Complexing the Marine Sesquiterpene Euplotin C by Means of Cyclodextrin-Based Nanosponges: A Preliminary Investigation

Guella, Graziano;
2022-01-01

Abstract

Euplotin C is a sesquiterpene of marine origin endowed with significant anti-microbial and anti-tumor properties. Despite the promising functional profile, its progress as a novel drug candidate has failed so far, due to its scarce solubility and poor stability in aqueous media, such as biological fluids. Therefore, overcoming these limits is an intriguing challenge for the scientific community. In this work, we synthesized beta-cyclodextrin-based nanosponges and investigated their use as colloidal carriers for stably complex euplotin C. Results obtained proved the ability of the carrier to include the natural compound, showing remarkable values of both loading efficiency and capacity. Moreover, it also allowed us to preserve the chemical structure of the loaded compound, which was recovered unaltered once extracted from the complex. Therefore, the use of beta-cyclodextrin-based nanosponges represents a viable option to vehiculate euplotin C, thus opening up its possible use as pharmacologically active compound.
2022
11
Bertoli, Alessandra; Lobue, Anthea; Quattrini, Luca; Sartini, Stefania; Polini, Beatrice; Carpi, Sara; Frontini, Francesco Paolo; Di Giuseppe, Grazian...espandi
Complexing the Marine Sesquiterpene Euplotin C by Means of Cyclodextrin-Based Nanosponges: A Preliminary Investigation / Bertoli, A., Lobue, A., Quattrini, L., Sartini, S., Polini, B., Carpi, S., Frontini, F.P., Di Giuseppe, G., Guella, G., Nieri, P., La Motta, C.. - In: MARINE DRUGS. - ISSN 1660-3397. - STAMPA. - 20:11(2022), p. 682. [10.3390/md20110682]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/362783
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