| Literature DB >> 24868553 |
A Bharathi1, Selvaraj Mohana Roopan1, Abdul Abdul Rahuman2, Govindasamy Rajakumar2.
Abstract
Many naturally occurring and synthetic compounds containing dihydrocyanopyridine and cyanopyran moiety show pharmacological properties. The aim of this study is to investigate the larvicidal and antioxidant potential of dihydrophenanthroline-3-carbonitrile derivatives 4a-f. A novel series of 2-amino-10-chloro-4,12-diphenyl-1,4,5,6-tetrahydrobenzo[j][1,7]phenanthroline-3-carbonitrile derivatives were synthesized by reacting different substituted acridine chalcones through Michel addition. The compounds were synthesized in excellent yields and the structures were corroborated on the basis of FT-IR, 1H NMR, 13C NMR, and ESI Mass analysis data. All the synthesized compounds were evaluated for larvicidal activity against Aedes aegypti and Culex quinquefasciatus larvae. Furthermore, the antioxidant activity was studied by the 1,1-diphenyl-2-picrylhydrazyl (DPPH) assay method. From the antioxidant assay, the compound 4c was reported with profound antioxidant potential.Entities:
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Year: 2014 PMID: 24868553 PMCID: PMC4017795 DOI: 10.1155/2014/915797
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Figure 1Biologically important 1,4-DHP heterocycles.
Figure 3Percentage radical scavenging activity at various concentrations.
Scheme 1Synthesis of 2-amino-10-chloro-4,12-diphenyl-1,4,5,6-tetrahydrobenzo[j][1,7]phenanthroline-3-carbonitriles (4a–f).
Summary of synthesized dihydropyridine derivatives (4a–f) via Scheme 1.
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Figure 2DPPH antiradical scavenging activity with time-dependent antiradical scavenging activity.
Larvicidal activity, mean efficacy (percentage ± S.D) of synthetic compounds against fourth instar larvae of Aedes aegypti and Culex quinquefasciatus.
| Compound | Concentration | % Mortality a(ppm) ± SD | |
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| 50 | 22.4 ± 6.69 | 36.2 ± 4.24 |
| 25 | 16.2 ± 1.26 | 16.2 ± 6.00 | |
| 12.5 | 12.0 ± 4.01 | 10.0 ± 4.28 | |
| 6.25 | 8.2 ± 0.24 | 6.8 ± 0.43 | |
| 3.12 | 4.6 ± 0.62 | 2.0 ± 1.86 | |
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| 50 | 78.2 ± 5.72 | 92.8 ± 8.18 |
| 25 | 64.8 ± 1.79 | 71.4 ± 7.70 | |
| 12.5 | 55.4 ± 8.38 | 58.0 ± 7.91 | |
| 6.25 | 42.2 ± 1.39 | 36.2 ± 8.43 | |
| 3.12 | 22.4 ± 6.69 | 46.8 ± 5.67 | |
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| 50 | 72.6 ± 6.05 | 87.0 ± 3.39 |
| 25 | 68.6 ± 2.15 | 54.4 ± 2.04 | |
| 12.5 | 45.2 ± 8.83 | 34.8 ± 2.26 | |
| 6.25 | 24.2 ± 4.06 | 10.2 ± 3.42 | |
| 3.12 | 14.6 ± 2.84 | 8.0 ± 1.53 | |
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| 50 | 52.6 ± 2.48 | 46.2 ± 2.84 |
| 25 | 48.4 ± 2.68 | 43.2 ± 0.66 | |
| 12.5 | 39.0 ± 6.73 | 65.0 ± 7.65 | |
| 6.25 | 26.4 ± 10.56 | 39.4 ± 14.25 | |
| 3.12 | 18.6 ± 3.60 | 22.6 ± 3.45 | |
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| 50 | 100 ± 0.00 | 100 ± 0.00 |
| 25 | 84.0 ± 1.79 | 91.4 ± 2.80 | |
| 12.5 | 65.4 ± 2.38 | 58.0 ± 6.90 | |
| 6.25 | 48.2 ± 4.04 | 42.2 ± 2.06 | |
| 3.12 | 26.4 ± 2.06 | 36.8 ± 5.04 | |
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| 50 | 82.4 ± 0.62 | 76.6 ± 1.04 |
| 25 | 66.1 ± 1.96 | 48.9 ± 1.43 | |
| 12.5 | 52.0 ± 1.49 | 36.2 ± 0.18 | |
| 6.25 | 28.2 ± 0.24 | 28.1 ± 0.22 | |
| 3.12 | 16.8 ± 1.22 | 18.0 ± 1.16 | |
LC50, LC90, and other statistical analysis of synthetic compounds against fourth instar larvae of Aedes aegypti and Culex quinquefasciatus.
| Sample code | Species | LC50 ± SE (ppm) | UCL–LCL | LC90 ± SE (ppm) | UCL–LCL |
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| 103.40 ± 7.13 | 128.48–82.30 | 424.12 ± 49.96 | 660.92–464.35 | 10.64 |
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| 184.24 ± 6.04 | 198.02–124.16 | 643.29 ± 62.28 | 840.26–629.06 | 12.88 | |
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| 69.94 ± 2.56 | 48.89–35.07 | 195.70 ± 24.30 | 214.73–147.66 | 10.56 |
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| 82.29 ± 2.74 | 64.77–46.81 | 272.36 ± 38.21 | 238.03–166.62 | 12.80 | |
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| 158.98 ± 2.54 | 124.89–115.07 | 445.78 ± 24.38 | 273.78–227.64 | 10.24 |
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| 142.22 ± 2.74 | 87.73–46.82 | 372.34 ± 18.21 | 248.03–186.12 | 8.82 | |
Control: nil mortality; LC50: lethal concentration that kills 50% of the exposed larvae; LC90: lethal concentration that kills 90% of the exposed larvae; UCL: upper confidence limit; LCL: lower confidence limit; χ 2: chi–square; df: degree of freedom significant at P < 0.05 level.
50% inhibition of scavenging activity for compounds 4a–f.
| Compounds | aIC50 × 10−3 |
|---|---|
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| 38 |
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| 53 |
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| 54 |
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| 41 |
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| 68 |
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| 71 |
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| 80 |
| 9-Amino-acridine-propranolol | 13.6 |
aIC50 values were determined by linear regression analysis using different concentrations in triplicate.