Photodecarboxylative Ring Annulation of α‐ and β‐Functionalized Phthaloyl‐GABA Derivatives: Bioactive Pyrroloisoindolinones with High Quantum Efficiency

Author:

Schulze Wolfram1,Zimmer Anne1,Neudörfl Jörg‐Martin1,Dato Florian M.2,Sommerfeld Paul2,Pietsch Markus23,Derondeau Henrieta4,Gaida Florian1,Riedle Eberhard4,Griesbeck Axel G.1ORCID

Affiliation:

1. Department of Chemistry Faculty of Mathematics and Natural Sciences University of Cologne Greinstr. 4 D-50939 Köln Germany

2. Institutes I & II of Pharmacology Center of Pharmacology Faculty of Medicine and University Hospital Cologne University of Cologne Gleueler Str. 24 50931 Cologne Germany

3. Faculty of Applied Natural Sciences TH Köln-University of Applied Sciences Campus Leverkusen Campusplatz 1 51379 Leverkusen Germany

4. Faculty of Physics BioMolecular Optics LMU München Oettingenstr. 67 80538 München Germany

Abstract

AbstractThe triplet‐sensitized (by the solvent acetone) as well as the direct (λex=300–320 nm) photochemical decarboxylation of N‐phthaloylated γ‐aminobutyric acid (GABA) derivatives are versatile and high‐yielding routes to benzopyrrolizidines via intramolecular electron transfer initiated decarboxylation followed by radical coupling. The ß‐mono‐ and ß,ß'‐disubstituted N‐phthaloyl GABA derivatives 7 a7 g, respectively, were applied as substrates. Decarboxylative photocyclization yielded hydroxy benzopyrrolizidines 8 a8 g in high chemical yields and with moderate diastereoselectivities from the ß‐monosubstituted substrates. The analogous α‐substituted GABA derivatives 11 a11 c were also applied as potential substrates for memory of chirality effects. The reaction quantum yields of the photodecarboxylation reactions for the parent GABA derivative 13 and for the new substrates 7 h and 11 a were determined by the quantum yield determination system (QYDS) and showed a remarkable concentration dependency indicating aggregation at higher substrate concentrations. Inhibition studies on the atherogenic human serine hydrolase cholesterol esterase showed derivatives 8 a and 8 d to exhibit a hyperbolic mode of inhibition with moderate IC50 values of about 60–80 μM.

Funder

Universität zu Köln

Publisher

Wiley

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