| Literature DB >> 32287424 |
Petr Jansa1, Ondřej Hradil1, Ondřej Baszczyňski1, Martin Dračínský1, Blanka Klepetářová1, Antonín Holý1, Jan Balzarini2, Zlatko Janeba1.
Abstract
Entities:
Keywords: 1,3,5-Triazines; Influenza virus; Microwave-assisted synthesis; Phosphonic acids; Pyrimidines
Year: 2011 PMID: 32287424 PMCID: PMC7125588 DOI: 10.1016/j.tet.2011.11.040
Source DB: PubMed Journal: Tetrahedron ISSN: 0040-4020 Impact factor: 2.457
Fig. 1Prototype of the ‘open-ring’ ANPs (1) and examples of the target analogues (2 and 3).
Scheme 1Ammonolysis of the compound 4.
Scheme 2Synthesis of the dialkyl ester phosphonates 6 and their corresponding phosphonic acids 3 and 7.
MW-assisted Michaelis–Arbuzov reaction for the synthesis of phosphonates 6
| Entry | Starting compounds | Phosphite | Conditions | Product | Yield |
|---|---|---|---|---|---|
| 1 | P(OiPr)3 | 200 °C, 30 min | 78% | ||
| 2 | P(OiPr)3 | 120 °C, 20 min | 80% | ||
| 3 | P(OiPr)3 | 150 °C, 10 min | 93% | ||
| 4 | P(OiPr)3 | 220 °C, 30 min | 72% | ||
| 5 | P(OiPr)3 | 200 °C, 30 min | 91% | ||
| 6 | P(OiPr)3 | 190 °C, 20 min | 51%+ | ||
| 7 | P(OEt)3 | 160 °C, 20 min | 90% |
Isolated yields.
Fig. 2(a) ORTEP drawing of compound 6e. (b) ORTEP drawing of compound 6f. Thermal ellipsoids are drawn at the 50% probability level.
Scheme 3Synthesis of the diisopropyl ester 6h and its free phosphonic acid 2.
Antiviral and cytotoxic activity of the compound 7a against influenza viruses
| Compound | Cytotoxicity (μM) | Anti-influenza EC50 | |||
|---|---|---|---|---|---|
| CC50 | MCC | A (H1N1) | A (H3N2) | B | |
| >100 | >100 | 50±14 | 28±10 | 72±68 | |
| Oseltamivir | >100 | >100 | 5.7±4.1 | 1.5±0.6 | 26.0±27.7 |
| Ribavirin | >100 | >100 | 9.2±0.8 | 8.7±3.8 | 5.6±2.8 |
| Amantadine | >100 | >100 | 36.8±2.6 | >200 | >200 |
| Rimantadine | >100 | >100 | 13.2±0.2 | >500 | >500 |
50% Cytostatic concentration or compound concentration required to reduce cell growth by 50% as measured by the cell viability staining of the cell cultures using MTS.
MCC or compound concentration required to cause a microscopically visible alteration of cell culture morphology.
50% Effective concentration or compound concentration required to inhibit virus-induced cytopathicity (CPE) by 50%, as scored by the cell viability staining of the cell cultures using MTS.