Photochemical Transformations of Diverse Biologically Active Resveratrol Analogs in Batch and Flow Reactors
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Published:2023-12-29
Issue:1
Volume:29
Page:201
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ISSN:1420-3049
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Container-title:Molecules
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language:en
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Short-container-title:Molecules
Author:
Mlakić Milena1, Perinić Hana12, Vušak Vitomir2, Horváth Ottó3ORCID, Sampedro Diego4ORCID, Losantos Raúl4ORCID, Odak Ilijana5ORCID, Škorić Irena1ORCID
Affiliation:
1. Department of Organic Chemistry, Faculty of Chemical Engineering and Technology, University of Zagreb, Marulićev trg 19, HR-10 000 Zagreb, Croatia 2. Pliva R&D, Teva Pharmaceutical Industries Ltd., Prilaz baruna Filipovića 29, HR-10 000 Zagreb, Croatia 3. Environmental and Inorganic Photochemistry Research Group, Center for Natural Sciences, Faculty of Engineering, University of Pannonia, P.O. Box 1158, H-8210 Veszprém, Hungary 4. Departamento de Química, Centro de Investigación en Síntesis Química (CISQ), Universidad de La Rioja, 26006 Logroño, Spain 5. Department of Chemistry, Faculty of Science and Education, University of Mostar, Matice Hrvatske bb, 88000 Mostar, Bosnia and Herzegovina
Abstract
Previous biological tests have shown that some resveratrol analogs exhibited significant antioxidative and cholinesterase inhibitory potential, as evidenced by lower IC50 values compared to the established standards, resveratrol and galantamine, respectively. Photochemical transformations were made in parallel on these compounds in the presence of porphyrin photocatalysts in batch and microreactor, showing the significant advantage of flow photochemistry concerning productivity, selectivity, and yields. In this research, the products of photocatalysis and direct irradiation (photolysis) of resveratrol analogs were compared to elucidate how the types and ratios of the products depend on the excitation energy, to reveal the effects of the substituent on the photoinduced reactions and to rationalize experimentally and computationally the nature and ratio of the obtained products. Thus, two main paths were computed in agreement with the experimental results: isomerization with the participation of triplet state intermediates to yield the experimentally detected cis-isomers and subsequent cyclization following a pathway not available for the trans-isomers. The investigation of five model compounds confirmed the advantages of the flow photoreactor in the photochemical reactions of heterocyclic resveratrol analogs.
Funder
University of Zagreb Ministry of Culture and Innovation of Hungary from the National Research, Development and Innovation Fund
Subject
Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science
Reference24 articles.
1. Mlakić, M., Odak, I., Barić, D., Talić, S., Šagud, I., Štefanić, Z., Molčanov, K., Lasić, Z., Kovačević, B., and Škorić, I. (2024). New resveratrol analogs as improved biologically active structures: Design, synthesis and computational modeling. Bioorg. Chem., 143. 2. Mlakić, M., Ljubić, A., Šalić, A., Zelić, B., Horváth, O., Milašinović, V., Gojun, M., Molčanov, K., and Škorić, I. (2022). Photocatalytic transformations of the resveratrol derivative in microflow reactor. Catalysts, 12. 3. Tuning the photocatalytic properties of porphyrins for hydrogen evolution reaction: An in-silico design strategy;Marchiori;J. Power Sources Adv.,2022 4. Porphyrins as Promising Photocatalysts for Red-Light-Induced Functionalizations of Biomolecules;Wdowik;ACS Org. Inorg. Au,2022 5. Porphyrin-based heterogeneous photocatalysts for solar energy conversion;Zhang;Chinese Chem. Lett.,2022
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