| Literature DB >> 22555301 |
Jian Wu1, Qing Shi, Zhuo Chen, Ming He, Linhong Jin, Deyu Hu.
Abstract
Sixteen novel pyrazole acyl thiourea derivatives 6 were synthesized from monomethylhydrazine (phenylhydrazine) and ethyl acetoacetate. The key 5-chloro-3-methyl-1-substituted-1H-pyrazole-4-carbonyl chloride intermediates 4 were first generated in four steps through cyclization, formylation, oxidation and acylation. Thess were then reacted with ammonium thiocyanate in the presence of PEG-400 to afford 5-chloro-3-methyl-1-substituted-1H-pyrazole-4-carbonyl isothiocyanates 5. Subsequent reaction with fluorinated aromatic amines resulted in the formation of the title compounds. The synthesized compound were unequivocally characterized by IR, ¹H-NMR, ¹³C-NMR and elemental analysis and some of the synthesized compounds displayed good antifungal activities against Gibberella zeae, Fusarium oxysporum, Cytospora mandshurica and anti-TMV activity in preliminary antifungal activity tests.Entities:
Mesh:
Substances:
Year: 2012 PMID: 22555301 PMCID: PMC6268560 DOI: 10.3390/molecules17055139
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1The structure of acyl thiourea derivatives I–VI.
Scheme 1Synthetic route to compounds 6a–p.
Phase transfer catalysis compared with conventional method for 6a.
| Method | Agent | Reaction Temperature | Reaction Time | Yield |
|---|---|---|---|---|
| phase transfer catalysis | NH4SCN/PEG-400 | 25 °C | 3 h | 82.6% |
| conventional method | NH4SCN | 82 °C | 3 h | 51.2% |
Inhibition effects of pyrazole acyl thiourea derivatives 6 on phytopathogenic fungi.
| Compd. (100 µg/mL) |
|
|
|
|---|---|---|---|
|
| 2.84 | 1.46 | −5.79 |
|
| 24.7 | 50.3 | 48.7 |
|
| 8.24 | 6.92 | 1.98 |
|
| 12.8 | −3.21 | 8.16 |
|
| 9.57 | −1.15 | 8.47 |
|
| −0.57 | 4.39 | 3.42 |
|
| 17.6 | −1.46 | −3.68 |
|
| 48.6 | 57.9 | 59.7 |
|
| 19.9 | 4.09 | 6.57 |
|
| 4.55 | −3.80 | −6.31 |
|
| 15.4 | 11.8 | 7.91 |
|
| 22.9 | 0.86 | 4.80 |
|
| −1.14 | 6.73 | 3.42 |
|
| 5.85 | −0.29 | 5.08 |
|
| 7.18 | 5.19 | 11.9 |
|
| 3.46 | 9.22 | 4.24 |
| hymexazol | 69.7 | 67.1 | 69.5 |
The curative effect of the compounds 6a–p against TMV in vivo.
| Agent | Concentration (μg/mL) | Curative effect (%) | |
|---|---|---|---|
|
| 500 | 41.23 | |
|
| 500 | 29.74 | |
|
| 500 | 35.17 | |
|
| 500 | 25.47 | |
|
| 500 | 35.44 | |
|
| 500 | 37.95 | |
|
| 500 | 32.71 | |
|
| 500 | 28.07 | |
|
| 500 | 23.45 | |
|
| 500 | 19.76 | |
|
| 500 | 27.84 | |
|
| 500 | 31.82 | |
|
| 500 | 32.39 | |
|
| 500 | 30.09 | |
|
| 500 | 22.07 | |
|
| 500 | 27.08 | |
| Ningnanmycin | 500 | 51.92 | |
Appearance, melting points and yields of intermediates 5a–b.
| Intermediate | R1 | Appearance | m.p./°C | Yield/% |
|---|---|---|---|---|
|
| CH3 | Yellow solid | 51~52 °C | 82.6% |
|
| C6H5 | White solid | 69~71 °C | 81.7% |