| Literature DB >> 27781494 |
Mikhail Krasavin1, Alexey Lukin2, Daria Bagnyukova2, Nikolay Zhurilo2, Ihor Zahanich3, Sergey Zozulya3,4.
Abstract
A series of nine compounds based on 3-[4-(benzyloxy)phenyl]propanoic acid core containing a 1-oxa-9-azaspiro[5.5]undecane periphery was designed, synthesized and evaluated as free fatty acid 1 (FFA1 or GPR40) agonists. The spirocyclic appendages included in these compounds were inspired by LY2881835, Eli Lilly's advanced drug candidate for type II diabetes mellitus that was in phase I clinical trials. These polar spirocyclic, fully saturated appendages (that are themselves uncharacteristic of the known FFA1 ligand space) were further decorated with diverse polar groups (such as basic heterocycles or secondary amides). To our surprise, while seven of nine compounds were found to be inactive (likely due to the decrease in lipophilicity, which is known to be detrimental to FFA1 ligand affinity), two compounds containing 2-pyridyloxy and 2-pyrimidinyloxy groups were found to have EC50 of 1.621 and 0.904 µM, respectively. This result is significant in the context of the worldwide quest for more polar FFA1 agonists, which would be devoid of liver toxicity effects earlier observed for a FFA1 agonist fasiglifam (TAk-875) in clinical studies.Entities:
Keywords: Agonists; GPR40; cLogP; free fatty acid receptor 1; potency; total polar surface area
Mesh:
Substances:
Year: 2016 PMID: 27781494 PMCID: PMC6021034 DOI: 10.1080/14756366.2016.1230110
Source DB: PubMed Journal: J Enzyme Inhib Med Chem ISSN: 1475-6366 Impact factor: 5.051
Figure 1.Advanced GPR40 agonists containing the 3-[4-(benzyloxy)phenyl]propanoic acid core.
Figure 2.Design and retrosynthetic analysis of new series of FFA1 agonists 4.
Scheme 1.Synthesis of spirocyclic building blocks 2a–i from common precursor 3.
Scheme 2.Preparation of FFA1 agonists 4a–s studied in this work.
Compounds 4a–i synthesized and FFA1 activation data obtained in this work.
| Compound | R | Isolated yield, % | % FFA1 activation at 5 μM | EC50 (μM) | % Efficacy |
|---|---|---|---|---|---|
| 33 | 32.5 | >20.0 | n/a | ||
| 30 | 80.0 | 1.62 | 80 | ||
| 30 | 61.4 | 0.90 | 61 | ||
| 19 | 13.6 | >20.0 | n/a | ||
| 73 | 9.1 | >20.0 | n/a | ||
| 31 | 10.2 | >20.0 | n/a | ||
| 43 | 9.9 | >20.0 | n/a | ||
| 22 | 10.0 | >20.0 | n/a | ||
| 29 | 11.6 | >20.0 | n/a |
Relative to GPR40 activation by 20 μM of GW9509, n = 2.
cLogP and EC50 values for selected spirocyclic derivatives reported earlier (7 and 8) and investigated in this work (4b–c).
| Compound | Structure | cLogP | FFA1 EC50 (μM) |
|---|---|---|---|
| 4.69 | >20.0 | ||
| 6.36 | 0.055 | ||
| 4.03 | 1.82 | ||
| 4.95 | 0.90 |