| Literature DB >> 27493683 |
Jin-Xia Mu1, Yan-Xia Shi2, Hong-Ke Wu3, Zhao-Hui Sun3, Ming-Yan Yang3, Xing-Hai Liu3, Bao-Ju Li2.
Abstract
BACKGROUND: The increasing prevalence of multi-drug resistant fungal infections has encouraged the search for new antifungal agents. Hydrazone derivatives always exhibited diversity activities, including antifungal, anti-inflammatory, anti-oxidation, anti-cancer activity. Regarding the heterocyclic moiety, 1,2,4-triazolo[4,3-a]pyridine derivatives also display broad activities, such as antifungal activity, anticonvulsant activity, herbicidal activity, antimicrobial activity and anticancer activity.Entities:
Keywords: 1,2,4-Triazolo[4,3-a]pyridine; Antifungal activity; DFT; Hydrazone; Microwave assisted synthesis
Year: 2016 PMID: 27493683 PMCID: PMC4973519 DOI: 10.1186/s13065-016-0196-6
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
Scheme 1Design strategy of compounds 4a–4q
Scheme 2The synthetic route of compounds 4a–4q
Comparison of yields of 4d through methods with or without microwave irradiation
| Entry | Solvent | Method | Time (min) | Temperature/°C | Yield/ % |
|---|---|---|---|---|---|
| 1 | EtOH | No-MW | 300 | r.t. | 90 |
| 2 | EtOH | No-MW | 120 | Reflux | 85 |
| 3 | EtOH | MW | 1 | 78 | 68 |
| 4 | EtOH | MW | 5 | 78 | 80 |
| 5 | EtOH | MW | 10 | 78 | 92 |
| 6 | EtOH | MW | 15 | 78 | 92 |
| 7 | EtOH | MW | 10 | 70 | 78 |
| 8 | EtOH | MW | 10 | 85 | 91 |
The antifungal activity of title compounds in vivo at 100 μg/mL
| No. | R |
|
|
|
|---|---|---|---|---|
|
|
| 7.14 | 53.89 | 4.44 |
|
|
| 2.38 | 75.56 | 10.00 |
|
|
| 2.83 | 38.61 | 12.22 |
|
|
| 40.18 | 46.67 | 22.22 |
|
|
| 45.54 | 64.44 | 23.33 |
|
|
| 39.88 | 13.33 | 21.11 |
|
|
| 26.19 | 16.67 | 29.63 |
|
|
| 63.99 | 31.11 | 20.00 |
|
|
| 82.74 | 22.22 | 24.44 |
|
|
| 69.05 | 4.44 | 21.11 |
|
|
| 83.53 | 88.89 | 16.67 |
|
|
| 62.30 | 77.22 | 20.00 |
|
|
| 39.29 | 70.00 | 19.44 |
|
|
| 26.19 | 66.67 | 23.33 |
|
|
| 37.20 | 50.00 | 20.00 |
|
|
| 58.63 | 69.81 | 11.11 |
|
|
| 61.61 | 65.56 | 24.44 |
| Zhongshengmycin | 59.58 | |||
| Thiophanate-methyl | 81.69 | |||
| Cyprodynil | 45.56 |
LogP, total energy, energy gap and frontier orbital energy
| DFT |
|
|
|---|---|---|
|
| −1519.50133881 | −1339.28590225 |
|
| −0.12708 | −0.23503 |
|
| 0.00908 | −0.07634 |
| Δ | 0.13616 | 0.15869 |
| LogP | 1.91 | −0.43 |
aΔE = E LUMO − E HOMO
b1 Hartree = 4.35974417 × 10−18, J = 27.2113845 eV
Fig. 1Frontier molecular orbitals of compound 4c and 4k
Fig. 2Overlay of energy-minimized structures of 4c and 4k