| Literature DB >> 26557804 |
Shafqat Ali1, Ghulam Yasin2, Zareen Zuhra2, Zhanpeng Wu2, Ian S Butler3, Amin Badshah4, Imtiaz Ud Din4.
Abstract
BioactiveEntities:
Year: 2015 PMID: 26557804 PMCID: PMC4618336 DOI: 10.1155/2015/386587
Source DB: PubMed Journal: Bioinorg Chem Appl Impact factor: 7.778
Scheme 1Synthesis of ferrocene-based bimetallic thiourea complexes.
Figure 1Cyclic voltammograms of 1 mM compound Ft recorded at 100 mV/s potential sweep rate on glassy carbon electrode at 25°C in the absence (a) and presence of 1 mL of 20 μM, 40 μM with increasing concentration of CT-DNA (b-c) in 20% aqueous DMSO buffer at pH 7.0; supporting electrolyte 0.1 M KCl.
Figure 2Cyclic voltammograms of 1 mM compound 1 recorded at 100 mV/s potential sweep rate on glassy carbon electrode at 25°C in the absence (a) and presence of 1 mL of 20 μM, 40 μM with increasing concentration of CT-DNA (b-c) in 20% aqueous DMSO buffer at pH 7.0; supporting electrolyte 0.1 M KCl.
Figure 3Cyclic voltammograms of 1 mM compound 4 recorded at 100 mV/s potential sweep rate on glassy carbon electrode at 25°C in the absence (a) and presence of 1 mL of 20 μM, 40 μM with increasing concentration of CT-DNA (b-c) in 20% aqueous DMSO buffer at pH 7.0; supporting electrolyte 0.1 M KCl.
Binding constant and binding energy values of 1–4 and 3-ferrocenylaniline [17].
| Compound | Binding constant (M−1) | −Δ |
|---|---|---|
|
| 3.43 × 103 | 19.41 |
|
| 4.63 × 103 | 20.23 |
|
| 4.83 × 103 | 20.41 |
|
| 4.57 × 103 | 20.35 |
|
| 5.85 × 103 | 20.87 |
| 3-Ferrocenylaniline | 9.39 × 103 | 21.67 |
Figure 4Effect of increasing concentration of compound 1 on the relative viscosity of DNA at 25°C. [DNA] = 30 μM and [compound-1] = 5–25 μM.
Figure 5Effect of increasing concentration of compound 5 on the relative viscosity of DNA at 25°C. [DNA] = 30 μM and [compound-5] = 5–25 μM.
Figure 6Enzymatic studies (alkaline phosphatase) of compounds Ft and 1–5.
Antibacterial activity of Ft and 1–5.
| Chemical codes |
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|---|---|---|---|---|---|---|---|---|
| (2) ( | (1) ( | (2) ( | (1) ( | |||||
| Radius (mm) | % value | Radius (mm) | % value | Radius (mm) | % value | Radius (mm) | % value | |
| Imipenem | 18 | 100 | 20 | 100 | 18 | 100 | 20 | 100 |
|
| 13 | 72 | 02 | 11 | 16 | 89 | 02 | 11 |
|
| 00 | 00 | 3 | 17 | 3 | 17 | 5 | 28 |
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| 3 | 17 | 2 | 11 | 4 | 22 | 3 | 17 |
|
| 7 | 39 | 3 | 17 | 00 | 00 | 4 | 22 |
|
| 9 | 50 | 6 | 33 | 7 | 39 | 11 | 61 |
|
| 3 | 17 | 04 | 20 | 00 | 00 | 03 | 17 |
Antifungal activity of Ft and 1–5.
| Compound codes | Concentration (mg/100 mL) | Negative control growth/DMSO (cm) | Culture length (in control) (cm) | Fungal growth length (in sample) | % inhibition of fungal growth |
|---|---|---|---|---|---|
|
| 3.00 | 10.40 | 11.00 | 7.10 | 35.50 |
| 5.00 | 10.00 | 11.00 | 5.60 | 49.00 | |
| 20.00 | 10.00 | 11.00 | 3.30 | 70.00 | |
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|
| 3.00 | 9.80 | 10.50 | 9.70 | 7.60 |
| 5.00 | 9.50 | 10.50 | 8.60 | 18.00 | |
| 20.00 | 10.00 | 10.50 | 7.00 | 33.30 | |
|
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|
| 3.00 | 10.20 | 11.50 | 10.20 | 11.30 |
| 5.00 | 10.30 | 11.50 | 9.50 | 17.40 | |
| 20.00 | 10.00 | 11.50 | 8.10 | 29.56 | |
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| 3.00 | 11.00 | 12.00 | 10.50 | 12.50 |
| 5.00 | 11.50 | 12.00 | 8.20 | 31.66 | |
| 20.00 | 11.60 | 12.00 | 6.30 | 47.50 | |
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| 3.00 | 10.70 | 10.50 | 7.30 | 30.48 |
| 5.00 | 10.40 | 10.50 | 4.50 | 57.14 | |
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| 3.00 | 9.60 | 10.00 | 8.40 | 16.00 |
| 5.00 | 9.00 | 10.00 | 6.30 | 37.00 | |
| 20.00 | 9.50 | 10.00 | 2.80 | 72.00 | |
Std. drugs = Terbinafine (100%).