| Literature DB >> 27042005 |
Magdy M Youssef1, Reem K Arafa2, Mohamed A Ismail1.
Abstract
This research work deals with the design and synthesis of a series of substituted phenylfuranylnicotinamidines 4a-i. Facile preparation of the target compounds was achieved by Suzuki coupling-based synthesis of theEntities:
Keywords: Suzuki coupling; antibacterial; antioxidant; antiproliferative; substituted phenylfuranylnicotinamidines
Mesh:
Substances:
Year: 2016 PMID: 27042005 PMCID: PMC4795586 DOI: 10.2147/DDDT.S102128
Source DB: PubMed Journal: Drug Des Devel Ther ISSN: 1177-8881 Impact factor: 4.162
Elemental analysis data
| Compound | Calculated
| Found
| ||||
|---|---|---|---|---|---|---|
| C | H | N | C | H | N | |
| 78.03 | 4.09 | 11.38 | 77.81 | 4.17 | 11.19 | |
| 73.90 | 4.38 | 10.14 | 73.84 | 4.45 | 10.01 | |
| 70.58 | 4.61 | 9.15 | 70.31 | 4.49 | 9.09 | |
| 74.72 | 5.23 | 14.52 | 74.64 | 5.31 | 14.59 | |
| 68.46 | 3.23 | 9.98 | 68.61 | 3.14 | 10.12 | |
| 72.72 | 3.43 | 10.60 | 72.57 | 3.50 | 10.47 | |
| 60.98 | 2.56 | 8.89 | 61.12 | 2.49 | 8.93 | |
| 68.09 | 2.86 | 9.93 | 68.24 | 2.71 | 9.79 | |
| 68.09 | 2.86 | 9.93 | 67.82 | 2.89 | 10.01 | |
| 57.16 | 4.50 | 12.49 | 57.29 | 4.63 | 12.22 | |
| 53.76 | 4.91 | 11.06 | 53.88 | 4.83 | 11.27 | |
| 52.18 | 5.11 | 10.14 | 52.24 | 4.94 | 10.35 | |
| 48.82 | 5.46 | 12.65 | 48.50 | 5.23 | 12.37 | |
| 51.84 | 3.81 | 11.33 | 52.17 | 3.89 | 11.06 | |
| 52.90 | 4.16 | 11.56 | 52.70 | 4.31 | 11.56 | |
| 45.90 | 3.49 | 10.04 | 46.10 | 3.46 | 10.20 | |
| 50.41 | 3.70 | 11.02 | 50.55 | 3.91 | 11.21 | |
| 50.41 | 3.70 | 11.02 | 50.42 | 3.78 | 11.03 | |
Effect of the novel furanylnicotinamidine derivatives on Gram-negative and Gram-positive microorganisms
| 100 µM- (µg/mL) | Gram-negative
| Gram-positive
| ||
|---|---|---|---|---|
| 14 | 12 | 12 | 14 | |
| 13 | 11 | 11 | 13 | |
| 12 | 11 | 12 | 14 | |
| 6 | 4 | 4 | 5 | |
| 12 | 11 | 11 | 13 | |
| 13 | 11 | 12 | 13 | |
| 10 | 12 | 10 | 10 | |
| 13 | 12 | 12 | 13 | |
| 11 | 11 | 12 | 12 | |
| 11 | 10 | 9 | 10 | |
| Ampicillin-(34.94) | 17 | 14 | 13 | 16 |
Note: The results expressed as zone inhibition in mm diameter.
Minimum inhibitory concentration μM (μg/μL) of furanylnicotinamidine derivatives against Gram-negative and Gram-positive microorganisms
| Compound number | Gram-negative μM (μg/μL)
| Gram-positive μM (μg/μL)
| ||
|---|---|---|---|---|
| 10 (3.36) | 10 (3.36) | 10 (3.36) | 15 (5.40) | |
| 10 (3.79) | 15 (5.69) | 10 (3.79) | 15 (5.69) | |
| 15 (6.21) | 15 (6.21) | 15 (6.21) | 15 (6.21) | |
| 35 (10.12) | 40 (11.56) | 35 (10.12) | 35 (10.12) | |
| 15 (6.65) | 15 (6.65) | 15 (6.65) | 15 (6.65) | |
| 15 (5.56) | 20 (7.41) | 20 (7.41) | 15 (5.56) | |
| 15 (5.45) | 20 (7.26) | 20 (7.26) | 20 (7.26) | |
| 15 (6.28) | 15 (6.28) | 15 (6.28) | 10 (4.19) | |
| 15 (5.72) | 20 (7.62) | 20 (7.62) | 15 (5.72) | |
| 15 (5.72) | 20 (7.62) | 20 (7.62) | 20 (7.62) | |
| Ampicillin | 5 (1.75) | 5 (1.75) | 10 (3.49) | 5 (1.75) |
In vitro MPGI of the novel furanylnicotinamidine derivatives against a panel of 60 cell lines at a single dose level (10 μM) (NCI, Bethesda, MD, USA)
| Compound number | 3d | 4a | 4b | 4c | 4d | 4e | 4f | 4g |
|---|---|---|---|---|---|---|---|---|
| MPGI | 25.48 | 20.02 | 33.75 | −30.47 | −56.15 | −74.08 | −52.59 | −49.88 |
Abbreviations: MPGI, mean percent growth inhibition; NCI, National Cancer Institute.
In vitro antiproliferative activity of the novel furanylnicotinamidines against a panel of 60 cell lines at a five-dose level (National Cancer Institute, Bethesda, MD, USA)
| Cancer type/cell line | 4b | 4c | 4d | 4e | 4f | 4g |
|---|---|---|---|---|---|---|
| Leukemia | ||||||
| CCRF-CEM | 3.20 | 2.06 | 1.80 | 0.856 | 1.51 | 1.93 |
| HL-60 (TB) | 2.14 | 2.12 | 1.76 | 0.219 | 1.52 | 2.42 |
| K-562 | 3.97 | 1.32 | 0.541 | 0.314 | 0.934 | 1.50 |
| MOLT-4 | 4.40 | 1.74 | 1.59 | 0.681 | 1.89 | 2.46 |
| RPMI-8226 | 2.78 | 1.92 | 1.30 | 0.310 | 1.20 | 2.03 |
| SR | 3.11 | 1.73 | 0.378 | 0.275 | 1.32 | 1.78 |
| Non-small cell lung cancer | ||||||
| A549/ATCC | 5.10 | 1.86 | 1.89 | 1.06 | 1.50 | 1.90 |
| HOP-62 | 10.5 | 1.70 | 1.74 | 1.35 | 1.50 | 1.98 |
| HOP-92 | 1.31 | 1.42 | 1.27 | 0.401 | 0.579 | 1.56 |
| NCI-H226 | 12.9 | 1.81 | 1.88 | 1.52 | 1.40 | 2.13 |
| NCI-H23 | 11.6 | 1.90 | 1.77 | 1.40 | 1.76 | 1.96 |
| NCI-H322M | 6.00 | 1.60 | 1.44 | 0.838 | 1.73 | 1.74 |
| NCI-H460 | 3.69 | 1.63 | 1.35 | 0.293 | 1.61 | 1.90 |
| NCI-H522 | 6.80 | 1.73 | 1.84 | 1.61 | 1.51 | 1.98 |
| Colon cancer | ||||||
| Colo 205 | 1.82 | 1.62 | 1.04 | 0.201 | 0.817 | 2.01 |
| HCC-2998 | 2.45 | 1.69 | 1.07 | 0.212 | 1.22 | 1.92 |
| HCT-116 | 3.26 | 1.66 | 1.47 | 0.405 | 1.40 | 1.97 |
| HCT-15 | 4.62 | 1.84 | 1.36 | 0.486 | 1.30 | 1.80 |
| HT29 | 3.40 | 1.39 | 0.479 | 0.319 | 0.736 | 1.76 |
| KM12 | 4.41 | 1.78 | 1.43 | 0.388 | 1.69 | 1.85 |
| SW-620 | 4.05 | 1.67 | 0.774 | 0.492 | 1.61 | 1.78 |
| CNS cancer | ||||||
| SF-268 | 11.2 | 1.86 | 1.77 | 1.30 | 1.55 | 1.82 |
| SF-295 | NT | 1.86 | 2.00 | 1.79 | 1.54 | 1.92 |
| SF-539 | 4.74 | 1.55 | 1.54 | 1.19 | 1.41 | 1.76 |
| SNB-19 | 11.7 | 1.85 | 1.87 | 1.56 | 1.72 | 1.63 |
| SNB-75 | 10.5 | 1.48 | 1.59 | 1.35 | 1.24 | 1.64 |
| U251 | 4.70 | 1.62 | 1.53 | 1.28 | 1.49 | 1.76 |
| Melanoma | ||||||
| LOX IMVI | 2.58 | 1.63 | 1.53 | 0.306 | 1.48 | 1.77 |
| MALME-3M | 3.25 | 1.82 | 2.04 | 1.35 | 1.94 | 2.42 |
| M14 | 2.12 | 1.90 | 1.85 | 1.31 | 1.54 | 1.90 |
| MDA-MB-435 | 2.18 | 1.55 | 1.24 | 0.381 | 1.36 | 1.76 |
| SK-MEL-2 | 4.91 | 2.01 | 1.96 | 1.95 | 2.02 | 2.09 |
| SK-MEL-28 | 8.23 | 1.65 | 1.76 | 1.52 | 1.59 | 1.80 |
| SK-MEL-5 | 3.43 | 1.60 | 1.58 | 1.48 | 1.46 | 1.77 |
| UACC-257 | 2.18 | 1.76 | 1.77 | 1.31 | 1.71 | 1.84 |
| UACC-62 | 10.3 | 1.77 | 1.76 | 1.57 | 1.69 | 1.78 |
| Ovarian cancer | ||||||
| IGROV-1 | 5.29 | 1.81 | 1.89 | 1.50 | 1.70 | 2.09 |
| OVCAR-3 | 8.90 | 1.89 | 1.75 | 1.34 | 1.87 | 1.88 |
| OVCAR-4 | 10.4 | 1.74 | 1.56 | 1.17 | 1.40 | 1.90 |
| OVCAR-5 | 10.9 | 1.74 | 1.62 | 1.19 | 1.58 | 1.73 |
| OVCAR-8 | 11.3 | 1.71 | 1.74 | 1.67 | 1.70 | 1.88 |
| NCI/ADR-RES | 14.1 | 6.53 | 2.03 | 1.63 | 1.69 | 1.93 |
| SK-OV-3 | 10.2 | 1.91 | 1.88 | 1.53 | 1.40 | 1.95 |
| Renal cancer | ||||||
| 786-0 | 6.02 | 1.72 | 1.79 | 1.27 | 1.46 | 1.95 |
| A498 | 12.8 | 1.22 | 1.09 | 0.770 | 1.26 | 1.47 |
| ACHN | 6.56 | 1.71 | 1.75 | 1.23 | 1.66 | 1.81 |
| CAKI-1 | 6.79 | NT | NT | NT | 1.30 | 1.76 |
| RXF 393 | 7.01 | 1.60 | 1.58 | 1.16 | 1.19 | 1.73 |
| SN12C | 8.01 | 1.62 | 1.58 | 1.23 | 1.69 | 1.62 |
| TK-10 | 10.7 | 1.79 | 1.95 | 1.94 | 1.74 | 1.87 |
| UO-31 | 2.68 | 1.59 | 1.48 | 0.960 | 1.60 | 1.54 |
| Prostate cancer | ||||||
| PC-3 | 4.18 | 1.65 | 1.50 | 1.03 | 1.48 | 1.74 |
| DU-145 | 11.3 | 1.76 | 1.72 | 0.834 | 1.70 | 1.87 |
| Breast cancer | ||||||
| MCF-7 | 3.17 | 1.74 | 1.61 | 0.484 | 1.37 | 1.73 |
| MDA-MB-231/ATCC | 3.34 | 1.83 | 1.80 | 0.469 | NT | 1.65 |
| HS-578T | 10.9 | 1.66 | 1.90 | 1.31 | 1.57 | 1.87 |
| BT-549 | 10.7 | 1.78 | 1.80 | 1.56 | 1.40 | 1.89 |
| T-47D | 5.13 | 1.72 | 1.73 | 0.379 | NT | 2.18 |
| MDA-MB-468 | 2.04 | 1.51 | 1.39 | 0.507 | 1.37 | 1.69 |
Note: Data represent the compounds’ GI50 in μM against the tested cell lines.
Abbreviations: GI50, drug concentration that causes 50% inhibition of cell growth; NT, not tested; CNS, central nervous system.
Median GI50, TGI, and LC50 (μM) for the most active furanylnicotinamidines against a panel of 60 cell lines at a five-dose level (NCI, Bethesda, MD, USA)
| MG-MID | 4b | 4c | 4d | 4e | 4f | 4g |
|---|---|---|---|---|---|---|
| GI50 | 5.24 | 1.66 | 1.51 | 0.83 | 1.44 | 1.86 |
| TGI | 15.48 | 3.47 | 3.16 | 2.51 | 2.95 | 3.63 |
| LC50 | 43.65 | 7.58 | 7.24 | 100 | 6.02 | 7.94 |
Abbreviations: MG-MID, mean graph midpoint representing mean sensitivity of all examined cell lines to the test compound; GI50, compound concentration causing 50% growth inhibition of tested cells; TGI, compound concentration causing 100% growth inhibition of tested cells; LC50, compound concentration causing 50% lethality of tested cells; NCI, National Cancer Institute.
Figure 1Synthesis scheme for the new furanylnicotinamidine derivatives.
Notes: (i) Pd(PPh3)4, Na2CO3, toluene, 80°C; (ii) a) LiN(TMS)2, THF, r.t., overnight, b) HCl (gas), dry ethanol, r.t., overnight.
Abbreviation: r.t., room temperature.
Figure 2A figure showing the degradation effect of 0.5 μM (A), 1 μM (B), 2 μM (C), 3 μM (D), and 4 μM (E) of the novel furanylnicotinamidine derivatives (lanes 3–12) on the genomic DNA isolated from Escherichia coli. Lane1 E. coli DNA and lane 2 E. coli DNA + DMSO.
Abbreviation: DMSO, dimethylsulfoxide.
Superoxide dismutase mimetic catalytic activity of furanylnicotinamidine derivatives as an antioxidant enzyme
| % inhibition | |
|---|---|
| Control | – |
| Horse radish | 69.2 |
| 59.7 | |
| 57.4 | |
| 54.6 | |
| 33.6 | |
| 52.9 | |
| 52.0 | |
| 51.4 | |
| 56.1 | |
| 52.4 | |
| 51.5 |
Figure 3Antioxidant activities of the furanylnicotinamidine derivatives using 2,2-diphenyl-1-picrylhydrazyl (DPPH).
Figure 4Antioxidant activities of the furanylnicotinamidine derivatives using nitric oxide.