| Literature DB >> 25995827 |
Jungsook Cho1, Chowee Park1, Youngmun Lee1, Sunyoung Kim1, Shambhunath Bose1, Minho Choi2, Arepalli Sateesh Kumar2, Jae-Kyung Jung2, Heesoon Lee2.
Abstract
In the present study, we synthesized a series of novel 7-methoxy-N-(substituted phenyl)benzofuran-2-carboxamide derivatives in moderate to good yields and evaluated their neuroprotective and antioxidant activities using primary cultured rat cortical neuronal cells and in vitro cell-free bioassays. Based on our primary screening data with eighteen synthesized derivatives, nine compounds (1a, 1c, 1f, 1i, 1j, 1l, 1p, 1q and 1r) exhibiting considerable protection against the NMDA-induced excitotoxic neuronal cell damage at the concentration of 100 μM were selected for further evaluation. Among the selected derivatives, compound 1f (with -CH3 substitution at R2 position) exhibited the most potent and efficacious neuroprotective action against the NMDA-induced excitotoxicity. Its neuroprotective effect was almost comparable to that of memantine, a well-known NMDA antagonist, at 30 μM concentration. In addition to 1f, compound 1j (with -OH substitution at R3 position) also showed marked anti-excitotoxic effects at both 100 and 300 μM concentrations. These findings suggest that -CH3 substitution at R2 position and, to a lesser degree, -OH substitution at R3 position may be important for exhibiting neuroprotective action against excitotoxic damage. Compound 1j was also found to scavenge 1,1-diphenyl-2-picrylhydrazyl radicals and inhibit in vitro lipid peroxidation in rat brain homogenate in moderate and appreciable degrees. Taken together, our structure-activity relationship studies suggest that the compound with -CH3 substitution at R2 and -OH substitution at R3 positions of the benzofuran moiety might serve as the lead exhibiting potent anti-excitotoxic, ROS scavenging, and antioxidant activities. Further synthesis and evaluation will be necessary to confirm this possibility.Entities:
Keywords: Antioxidant activity; Benzofuran-2-carboxamide derivatives; Excitotoxicity; Neuroprotection; Reactive oxygen species
Year: 2015 PMID: 25995827 PMCID: PMC4428721 DOI: 10.4062/biomolther.2015.030
Source DB: PubMed Journal: Biomol Ther (Seoul) ISSN: 1976-9148 Impact factor: 4.634
Fig. 1.Scheme for the preparation and chemical structures of 7-methoxy-N-(substituted phenyl)benzofuran-2-carboxamide derivatives. (Upper panel) General synthetic scheme of benzofuran derivatives. (Lower panel) Chemical structures of the synthesized benzofuran derivatives (1a-r).
Primary screening of the protective effects of 7-methoxy-N-(substituted phenyl)benzofuran-2-carboxamide derivatives against NMDA-induced excitotoxicity in primary cortical neuronal culture
| Compound | Substituents | Cell viability (% control) | ||||
|---|---|---|---|---|---|---|
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| R1 | R2 | R3 | NMDA | NMDA + derivatives | ||
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| 10 μM | 100 μM | |||||
| 1a | H | H | H | 65.86 ± 4.68 | 73.34 ± 8.23 | 89.88 ± 9.41 |
| 1b | OCH3 | H | H | 64.69 ± 6.80 | 67.99 ± 0.23 | |
| 1c | H | OCH3 | H | 73.98 ± 10.06 | 83.14 ± 12.45 | |
| 1d | H | H | OCH3 | 43.70 ± 13.91 | 59.81 ± 1.27 | |
| 1e | CH3 | H | H | 44.21 ± 18.52 | 62.23 ± 4.71 | |
| 1f | H | CH3 | H | 83.57 ± 7.88 | 89.66 ± 6.27 | |
| 1g | H | H | CH3 | 44.60 ± 23.62 | 63.78 ± 0.23 | |
| 1h | OH | H | H | 48.93 ± 28.93 | 63.44 ± 12.04 | |
| 1i | H | OH | H | 62.13 ± 12.48 | 80.79 ± 3.22 | |
| 1j | H | H | OH | 55.13 ± 7.69 | 90.43 ± 2.19 | |
| 1k | Cl | H | H | 68.95 ± 0.40 | 61.36 ± 3.87 | |
| 1l | H | Cl | H | 62.30 ± 10.51 | 87.04 ± 17.18 | |
| 1m | H | H | Cl | 71.16 ± 2.28 | 71.58 ± 2.07 | |
| 1n | H | NO2 | H | 71.56 ± 4.55 | 57.40 ± 4.83 | |
| 1o | H | H | NO2 | 75.06 ± 3.18 | 70.65 ± 9.20 | |
| 1p | CF3 | H | H | 63.45 ± 7.41 | 76.98 ± 8.88 | |
| 1q | H | CF3 | H | 66.76 ± 8.41 | 80.02 ± 5.63 | |
| 1r | H | H | CF3 | 62.38 ± 7.59 | 74.91 ± 8.96 | |
The viability of the cells treated with NMDA or NMDA + derivatives is expressed as % of control.
The values represent the Mean ± SEM of three individual assays.
The value represents the Mean ± SEM of averages of all NMDA data collected from assays of the individual derivatives.
Fig. 2.Protective effect of the selected 7-methoxy-N-(substituted phenyl)benzofuran-2-carboxamide derivatives with substitutions at R1 (A), R2 (B), and R3 (C) positions against NMDA-induced excitotoxicity in primary cortical neuronal culture. Memantine was tested as a reference. The values are expressed as the Mean ± SEM of three individual assays. Statistical analysis of the data was performed by independent samples t-test. *p<0.05; **p<0.01; ***p<0.001.
Fig. 3.Inhibition of NMDA-induced ROS production by the selected 7-methoxy-N-(substituted phenyl)benzofuran-2-carboxamide derivatives with substitutions at R1 (A), R2 (B), and R3 (C) positions in primary cortical neuronal culture. Memantine was tested as a reference. The values are expressed as the Mean ± SEM of three individual assays. Statistical analysis of the data was performed by independent samples t-test to determine the significant inhibition. *p<0.05; **p<0.01; ***p<0.001.
Inhibition of lipid peroxidation and DPPH radical formation by the selected 7-methoxy-N-(substituted phenyl)benzofuran-2-carboxamide derivatives
| Compound | Inhibition of lipid peroxidation (%) | DPPH Scavenging activity (%) | ||
|---|---|---|---|---|
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| |||
| 10 μM | 100 μM | 10 μM | 100 μM | |
| 1a | −0.2 | 5.9 | −0.3 | −0.8 |
| 1c | −5.5 | 5.5 | −0.9 | −0.4 |
| 1f | −1.7 | 12.3 | 0.0 | 0.9 |
| 1i | 5.9 | 15.1 | 0.2 | −0.6 |
| 1j | 18.9 | 62.0 | 3.5 | 23.5 |
| 1l | 12.6 | 15.6 | 1.0 | 1.6 |
| 1p | 7.1 | 8.9 | 4.6 | 0.9 |
| 1q | 0.9 | 18.6 | 3.3 | 0.1 |
| 1r | 1.7 | 4.5 | −1.2 | −0.3 |
The values are calculated as described in the Materials and methods and expressed as % inhibition of the control.