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In this work, we designed and synthesized a series of bifunctional PD-L1/VISTA (V-domain immunoglobulin suppressor of T-cell activation) small molecule inhibitors. Among them, S8 showed acceptable PD-L1 inhibitory effects (IC = 1.4 μM, HTRF assay) and VISTA binding activity (K = 2.1 μM, ITC assay). BLI, ITC, and DSF assays further confirmed its dual action mode. Notably, S8 exhibited desirable in vivo pharmacokinetic properties, featuring a respectable oral bioavailability of 34.2 %. Moreover, oral administration of S8 led to a 40 % reduction in tumor weight and a 51 % decrease in tumor volume in a B16-F10 tumor model, better than the positive control an anti-PD-L1 antibody, and CA-170. PK-PD studies show that the plasma level of unbound S8 covered the biochemical IC concentration determined by ITC and HTRF assays, which is consistent with the strong antitumor activity observed in vivo. Analysis of tumor-infiltrating lymphocytes (TILs) via flow cytometry suggested that S8 activated the tumor immune microenvironment to exert its anti-cancer effects. In summary, S8 represents a dual PD-L1/VISTA inhibitor with potential for further investigation as a dual-function immunotherapeutic agent.
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http://dx.doi.org/10.1016/j.bioorg.2025.108323 | DOI Listing |
RSC Chem Biol
July 2025
Institute for Pharmaceutical Chemistry, Johann Wolfgang Goethe-University Max-von-Laue-Str. 9 D-60438 Frankfurt am Main Germany
Herein we present the rapid development of LH168, a potent and highly selective chemical probe for WDR5, streamlined by utilizing a DEL-ML (DNA encoded library-machine learning) hit as the chemical starting point. LH168 was comprehensively characterized in bioassays and demonstrated potent target engagement at the WIN-site pocket of WDR5, with an EC of approximately 10 nM, a long residence time, and exceptional proteome-wide selectivity for WDR5. In addition, we present the X-ray co-crystal structure and provide insights into the structure-activity relationships (SAR).
View Article and Find Full Text PDFNat Catal
July 2025
Department of Chemistry, The Scripps Research Institute; 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.
Despite increasing demand for chiral fluorinated organic molecules, enantioselective C-H fluorination remains among the most challenging and sought-after transformations in organic synthesis. Furthermore, utilizing nucleophilic sources of fluorine is especially desirable for F-radiolabelling. To date, methods for enantioselective nucleophilic fluorination of inert C(sp)-H bonds remain unknown.
View Article and Find Full Text PDFMed Res Rev
August 2025
State Key Laboratory of Natural Medicines and Jiangsu Key Laboratory of Drug Design and Optimization, China Pharmaceutical University, Nanjing, China.
The burgeoning field of CBMs represents a significant stride in the evolution of targeted therapeutics. This class of compounds, characterized by their ability to form stable covalent bonds with specific proteins of interest (POIs) or biological effectors, has emerged as a promising avenue for addressing complex pathological conditions such as drug-resistant diseases, undruggable targets, and chronic disorders requiring sustained target modulation. The integration of covalent chemistry in molecular design allows for the creation of highly specific and potent agents capable of modulating protein function with unprecedented precision.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
August 2025
Fakultät für Chemie und Pharmazie, Universität Regensburg, 93053, Regensburg, Germany.
Reliable, broadly applicable cross-coupling conditions that deliver the desired products with minimal optimization are essential in pharmaceutical research, where efficient synthesis accelerates lead discovery and late-stage diversification. Although advances like high-throughput additive screening and commercial catalyst/ligand libraries improve prediction in specific systems, a general strategy for vinyl halide cross-coupling across diverse bond-forming reactions remains elusive. Herein, we report a general and highly predictable method for vinyl halide cross-coupling under photoredox conditions, employing two complementary catalytic systems.
View Article and Find Full Text PDFAcc Chem Res
August 2025
Department of Chemistry, The Scripps Research Institute, 10550 N. Torrey Pines Rd., La Jolla, California 92037, United States.
ConspectusFunctionalization of carbon-hydrogen (C-H) bonds has emerged as a powerful strategy in modern organic synthesis, offering efficient routes to build molecular complexity from simple and abundant substrates. Among various transition-metal catalysts, palladium(II) complexes have proven particularly versatile for C-H activation, owing to the diverse reactivity of carbon-palladium bonds. To advance this approach, the discovery of ligands that can accelerate C-H activation as well as subsequent steps in the catalytic cycle is the pivotal driving force.
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