Small Molecule Neuropilin-1 Antagonists Combine Antiangiogenic and Antitumor Activity with Immune Modulation through Reduction of Transforming Growth Factor Beta (TGFβ) Production in Regulatory T-Cells.
Jonathan PowellFilipa MotaDavid SteadmanChristelle SoudyJeremy T MiyauchiStuart CrosbyAshley JarvisTifelle ReisingerNatalie WinfieldGraham EvansAled FinniearTamas YellandYi-Tai ChouA W Edith ChanAndrew O'LearyLili ChengDan LiuConstantina FotinouCarla MilagreJohn F MartinHaiyan JiaPaul FrankelSnezana DjordjevicStella E TsirkaIan C ZacharyDavid L SelwoodPublished in: Journal of medicinal chemistry (2018)
We report the design, synthesis, and biological evaluation of some potent small-molecule neuropilin-1 (NRP1) antagonists. NRP1 is implicated in the immune response to tumors, particularly in Treg cell fragility, required for PD1 checkpoint blockade. The design of these compounds was based on a previously identified compound EG00229. The design of these molecules was informed and supported by X-ray crystal structures. Compound 1 (EG01377) was identified as having properties suitable for further investigation. Compound 1 was then tested in several in vitro assays and was shown to have antiangiogenic, antimigratory, and antitumor effects. Remarkably, 1 was shown to be selective for NRP1 over the closely related protein NRP2. In purified Nrp1+, FoxP3+, and CD25+ populations of Tregs from mice, 1 was able to block a glioma-conditioned medium-induced increase in TGFβ production. This comprehensive characterization of a small-molecule NRP1 antagonist provides the basis for future in vivo studies.
Keyphrases
- small molecule
- transforming growth factor
- regulatory t cells
- epithelial mesenchymal transition
- protein protein
- dendritic cells
- dna damage
- single cell
- computed tomography
- stem cells
- cell cycle
- cell therapy
- high resolution
- anti inflammatory
- oxidative stress
- adipose tissue
- magnetic resonance
- current status
- mesenchymal stem cells
- skeletal muscle
- dual energy
- genetic diversity
- wild type
- hip fracture