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In recent decades, the relationship between drug chirality and biological activity has been assuming enormous importance in medicinal chemistry. Particularly, chiral derivatives of xanthones (CDXs) have interesting biological activities, including enantioselective anti-inflammatory activity. Herein, the synthesis of a library of CDXs is described, by coupling a carboxyxanthone () with both enantiomers of proteinogenic amino esters as chiral building blocks (-), following the chiral pool strategy. The coupling reactions were performed at room temperature with good yields (from 44 to 99.9%) and very high enantiomeric purity, with most of them presenting an enantiomeric ratio close to 100%. To afford the respective amino acid derivatives (-), the ester group of the CDXs was hydrolyzed in mild alkaline conditions. Consequently, in this work, sixty new derivatives of CDXs were synthetized. The cytocompatibility and anti-inflammatory activity in the presence of M1 macrophages were studied for forty-four of the new synthesized CDXs. A significant decrease in the levels of a proinflammatory cytokine targeted in the treatment of several inflammatory diseases, namely interleukin 6 (IL-6), was achieved in the presence of many CDXs. The amino ester of L-tyrosine (X1AELT) was the most effective in reducing IL-6 production (52.2 ± 13.2%) by LPS-stimulated macrophages. Moreover, it was ≈1.2 times better than the D-enantiomer. Indeed, enantioselectivity was observed for the majority of the tested compounds. Thus, their evaluation as promising anti-inflammatory drugs should be considered.
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http://dx.doi.org/10.3390/ijms241210357 | DOI Listing |
Chem Commun (Camb)
September 2025
International Joint Research Centre for Molecular Science, College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, 518060, P. R. China.
Deuterated compounds possess significant research value. As interest in chiral deuterated compounds intensifies, various deuteration methods are garnering increased attention. This article primarily reviews the asymmetric deuterium synthesis methods reported in recent years, focusing on the following strategies: one-step reductive deuteration, the series reaction of H/D exchange and asymmetric allylation, the [3+2] asymmetric cycloaddition of 1,3-dipoles and alkenes, asymmetric deuteration photocatalysis, asymmetric deuteration using organic catalysis, and asymmetric deuteration of chiral amino acids and their derivatives through biocatalysis.
View Article and Find Full Text PDFOrg Lett
September 2025
State Key Laboratory of Chemistry for NBC Hazards Protection, Beijing 102205, China.
Optically active α-aminophosphonic acids are unique analogues of α-amino acids, and numerous synthetic methods have been developed. Herein, we present a highly diastereoselective α-azidation approach to the CAMDOL-derived phosphonates, enabling ready access to 27 diverse α-azidophosphonates with defined chirality in up to 85% yield and more than 99:1 dr. Late-stage transformations through the Staudinger reaction or click reaction efficiently delivered the related pharmacological α-aminophosphonic acids or the unique α-triazolylphosphonate derivative, respectively.
View Article and Find Full Text PDFACS Omega
September 2025
International Centre for Materials Science, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur- P.O., Bangalore 560064, India.
Lambert and co-workers have developed several chiral bases using a cyclopropeneimine as the basic moiety. Typically, these catalysts have a pendant hydroxyl group which acts as a hydrogen-bond donor and activates the electrophile. In catalysts with a hydrogen-bond donor, prior work from the Sigman group has shown that the acidity of the donor plays an important role in imparting selectivity.
View Article and Find Full Text PDFCarbohydr Polym
November 2025
Zhejiang Key Laboratory of Bioorganic Synthesis, Zhejiang University of Technology, Hangzhou, Zhejiang 310014, China; The National and Local Joint Engineering Research Center for Biomanufacturing of Chiral Chemicals, Zhejiang University of Technology, Hangzhou, Zhejiang 310014, China; Huadong Indust
Heparin, a clinically essential anticoagulant, has long been derived from animal sources, posing risks of contamination and supply chain instability. Bioengineered heparin, synthesized via microbial fermentation and enzymatic modification, offers a promising alternative with enhanced safety, homogeneity, and scalability. This review highlights recent advances in heparosan biosynthesis, enzymatic sulfation strategies, and analytical characterization for bioengineered heparin.
View Article and Find Full Text PDFJ Org Chem
September 2025
Key Laboratory of Chemistry in Ethnic Medicinal Resources, State Ethnic Affairs Commission & Ministry of Education, School of Ethnic Medicine, Yunnan Minzu University, Kunming 650500, China.
Herein, we describe an enantioselective 1,4-addition of benzofuran-derived azadienes with indolizines under the catalysis of chiral phosphoric acid, which afforded new enantioenriched triarylmethane products in generally good yields (up to 90%) with high enantioselectivities (up to 98% ee). This method enabled the precise synthesis of enantioenriched triarylmethane products, which are notable for their intricate structures and the presence of two (hetero)aryls.
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