Affiliation:
1. Institute for Organic Synthesis and Photoreactivity (ISOF) National Research Council (CNR) via P. Gobetti 101 40129 Bologna Italy
2. Department of Pharmacognosy Semmelweis University Üllői út 26. 1085 Budapest Hungary
3. CarboHyde Zrt. Berlini Str. 47–49 Budapest 1045 Hungary
Abstract
AbstractIn the quest for new therapies targeting hypoxia, aromatic endoperoxides have intriguing potential as oxygen releasing agents (ORAs) able to free O2 in tissues upon suitable trigger. Four aromatic substrates were synthesized and the formation of their corresponding endoperoxides was optimized in organic solvent upon selective irradiation of Methylene Blue, a low‐cost photocatalyst, producing the reactive singlet oxygen species. Complexation of the hydrophobic substrates within a hydrophilic cyclodextrin (CyD) polymer allowed their photooxygenation in homogeneous aqueous environment using the same optimized protocol upon dissolution in water of the three readily accessible reagents. Notably, reaction rates were comparable in buffered D2O and organic solvent and, for the first time, the photooxygenation of highly hydrophobic substrates was achieved for millimolar solutions in non‐deuterated water. Quantitative conversion of the substrates, straightforward isolation of the endoperoxides and recovery of the polymeric matrix were achieved. Cycloreversion of one ORA to the original aromatic substrate was observed upon thermolysis. These results hold great potential for the launch of CyD polymers both as reaction vessels for green, homogeneous photocatalysis and as carrier for the delivery of ORAs in tissues.
Funder
H2020 Marie Skłodowska-Curie Actions
Associazione di Fondazioni e di Casse di Risparmio
Subject
General Chemistry,Catalysis,Organic Chemistry
Cited by
2 articles.
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