| Literature DB >> 35193444 |
Alexandra Ibáñez-Escribano1, Cristina Fonseca-Berzal1, Mónica Martínez-Montiel2, Manuel Álvarez-Márquez3, María Gómez-Núñez4, Manuel Lacueva-Arnedo1, Teresa Espinosa-Buitrago1, Tania Martín-Pérez5,6, José Antonio Escario1, Penélope Merino-Montiel2, Sara Montiel-Smith2, Alicia Gómez-Barrio1, Óscar López3, José G Fernández-Bolaños3.
Abstract
Herein, we report the preparation of a panel of Schiff bases analogues as antiprotozoal agents by modification of the stereoelectronic effects of the substituents on N-1 and N-4 and the nature of the chalcogen atom (S, Se). These compounds were evaluated towards Trypanosoma cruzi and Trichomonas vaginalis. Thiosemicarbazide 31 showed the best trypanocidal profile (epimastigotes), similar to benznidazole (BZ): IC50 (31)=28.72 μM (CL-B5 strain) and 33.65 μM (Y strain), IC50 (BZ)=25.31 μM (CL-B5) and 22.73 μM (Y); it lacked toxicity over mammalian cells (CC50 > 256 µM). Thiosemicarbazones 49, 51 and 63 showed remarkable trichomonacidal effects (IC50 =16.39, 14.84 and 14.89 µM) and no unspecific cytotoxicity towards Vero cells (CC50 ≥ 275 µM). Selenoisosters 74 and 75 presented a slightly enhanced activity (IC50=11.10 and 11.02 µM, respectively). Hydrogenosome membrane potential and structural changes were analysed to get more insight into the trichomonacidal mechanism.Entities:
Keywords: MoA; Trichomonas vaginalis; Trypanosoma cruzi; antiprotozoal agents; thio(seleno)semicarbazones; unspecific cytotoxicity
Mesh:
Substances:
Year: 2022 PMID: 35193444 PMCID: PMC8881069 DOI: 10.1080/14756366.2022.2041629
Source DB: PubMed Journal: J Enzyme Inhib Med Chem ISSN: 1475-6366 Impact factor: 5.051
Figure 1.General structure for the ntiprotozoal thio(seleno)semicarbazones prepared herein.
Scheme 1.Preparation of thiosemicarbazones 36‒65.
Scheme 2.Preparation of selenosemicarbazones 72, 73.
In vitro activity against Trypanosoma cruzi CL-B5 (DTU TcVI) and Y (DTU TcII) parasites and unspecific cytotoxicity on L929 and J774 cells, expressed as IC50 and CC50 values, respectively. Selectivity indexes (SI) for each strain and form are also calculated.
| Compound | IC50 (µM)a | CC50 (µM)a | SIb | IC50 (µM)a | CC50 (µM)a | SIb | IC50 (µM)a | SIb |
|---|---|---|---|---|---|---|---|---|
|
| ||||||||
| 53.51 ± 12.98 | >256 | >4.78 | 59.91 ± 10.43 | >256 | >4.27 | − | − | |
| 58.80 ± 8.77 | >256 | >4.35 | 97.26 ± 3.45 | >256 | >2.63 | − | − | |
| 44.17 ± 13.61 | 67.66 ± 3.16 | 1.53 | − | − | − | − | − | |
| 49.76 ± 14.25 | 50.99 ± 8.88 | 1.02 | − | − | − | − | − | |
| 44.15 ± 5.38 | 210.34 ± 15.34 | 4.76 | − | − | − | − | − | |
| 79.86 ± 15.40 | 205.76 ± 7.25 | 2.58 | − | − | − | − | − | |
| 72.49 ± 1.23 | 23.58 ± 2.84 | 0.33 | − | − | − | − | − | |
| 28.72 ± 4.61 | >256 | >8.91 | 33.65 ± 5.72 | >256 | >7.61 | 39.66 ± 9.91 | >6.45 | |
|
| ||||||||
| R1=R2= R3=H | ||||||||
| 70.88 ± 10.96 | 46.29 ± 0.15 | 0.65 | − | − | − | − | − | |
| 39.79 ± 6,43 | >256 | >6.43 | 85.10 ± 17.15 | >256 | >3.01 | − | − | |
| 15.34 ± 2.22 | 45.19 ± 0.58 | 2.95 | − | − | − | − | − | |
| R1=Me, R2=R3=H | ||||||||
| 39.58 ± 7.08 | 60.99 ± 3.72 | 1.54 | − | − | − | − | − | |
| >256 | >256 | NDc | − | − | − | − | − | |
| 118.61 ± 7.68 | 20.02 ± 1.87 | 0.17 | − | − | − | − | − | |
| R1=OMe, R2=R3=H | ||||||||
| 49.19 ± 9.97 | 43.31 ± 16.61 | 0.88 | − | − | − | − | − | |
| 26.75 ± 2.68 | >256 | >9.57 | 55.57 ± 16.30 | >256 | >4.61 | 39.04 ± 14.33 | >6.56 | |
| R1=F, R2=R3=H | ||||||||
| >256 | >256 | ND | − | − | − | − | − | |
| 97.38 ± 5.33 | 30.47 ± 3.93 | 0.31 | − | − | − | − | − | |
| R1=Cl, R2=R3=H | ||||||||
| 30.53 ± 4.10 | 49.72 ± 3.76 | 1.63 | − | − | − | − | − | |
| R1=Br, R2=R3=H | ||||||||
| 42.79 ± 12.01 | 66.96 ± 5.43 | 1.56 | − | − | − | − | − | |
| >256 | >256 | ND | − | − | − | − | − | |
| 104.5 ± 15.71 | 16.71 ± 0.70 | 0.16 | − | − | − | − | − | |
| R1=I, R2=R3=H | ||||||||
| 22.80 ± 1.61 | 41.44 ± 8.36 | 1.82 | − | − | − | − | − | |
| >256 | >256 | NDc | − | − | − | − | − | |
| 69.37 ± 4.73 | 20.82 ± 7.92 | 0.30 | − | − | − | − | − | |
| R1=R2=HR3=NO2 | ||||||||
| 21.77 ± 2.98 | 34.89 ± 8.65 | 1.60 | − | − | − | − | − | |
| 210.40 ± 14.54 | >256 | >1.22 | − | − | − | − | − | |
| 41.99 ± 9.06 | 21.40 ± 4.12 | 0.51 | − | − | − | − | − | |
| R1=R3=HR2=NO2 | ||||||||
| 36.85 ± 3.84 | 28.81 ± 3.25 | 0.78 | − | − | − | − | − | |
| 22.96 ± 6.33 | >256 | >11.15 | >256 | >256 | ND | 22.27 ± 4.20 | >11.49 | |
| 33.79 ± 7.59 | 11.98 ± 1.42 | 0.35 | − | − | − | − | − | |
| R1=NO2 R2=R3=H | ||||||||
| 76.37 ± 9.91 | 29.44 ± 2.52 | 0.39 | − | − | − | − | − | |
| >256 | >256 | ND | − | − | − | − | − | |
| 110.56 ± 14.83 | 5.37 ± 0.30 | 0.05 | − | − | − | − | − | |
| >256 | 53.50 ± 4.82 | <0.21 | − | − | − | − | − | |
| Ar = Naphthyl | ||||||||
| 53.65 ± 11.28 | 31.14 ± 9.21 | 0.58 | − | − | − | − | − | |
| >256 | >256 | ND | − | − | − | − | − | |
| 70.23 ± 6.99 | 28.79 ± 7.77 | 0.41 | − | − | − | − | − | |
|
| 25.31 ± 1.63 | >256 | >10.11 | 22.73 ± 1.82 | >256 | >11.26 | 0.47 ± 0.09 | >544.68 |
aResults are expressed as the mean ± SD of three independent experiments (n = 3).
bSI CL-B5 epi = CC50 L929/IC50 CL lacZ epimastigotes, SI Y epi = CC50 J774/IC50 Y epimastigotes and SI CL-B5 ama = CC50 L929/IC50 CL lacZ amastigotes.
cND: not determined.
In vitro activity against Trichomonas vaginalis (IC50), unspecific cytotoxicity of the most promising molecules against Vero cells (CC50) and selectivity indexes (SI).
| Compound |
| CC50 (µM) |
|
|---|---|---|---|
|
| |||
| 255.70 [205.26–348.10] | – | – | |
| 200.49 [134.86–366.51] | – | – | |
| 49.19 [30.46–77.32] | >300 | >6.10 | |
| 75.69 [57.77–102.71] | – | – | |
| >300 | – | – | |
| 19.14 [14.92–23.52] | >300 | >15.67 | |
| 105.92 [63.13–236.25] | – | – | |
| 30.20 [11.76–55.08] | >300 | >9.93 | |
|
| |||
| R1=R2= R3=H | |||
| 74.01 [60.18–92.68] | – | – | |
| 167.29 [116.44–283.25] | – | – | |
| 88.59 [65.64–125.65] | – | – | |
| R1=Me, R2=R3=H | |||
| 66.10 [43.85–103.72] | – | – | |
| 225.96 [118.97–1084.50] | – | – | |
| 80.61 [69.32–94.63] | – | – | |
| R1=OMe, R2=R3=H | |||
| 64.79 [55.04–76.69] | – | – | |
| 257.50 [141.94–834.94] | – | – | |
| R1=F, R2=R3=H | |||
| >300 | – | – | |
| 226.35 [192.65–275.96] | – | – | |
| R1=Cl, R2=R3=H | |||
| 32.27 [21.71–47.99] | >300 | >9.30 | |
| R1=Br, R2=R3=H | |||
| 52.36 [35.6–77.09] | – | – | |
| 55.14 [47.61–63.92] | – | – | |
| 16.39 [0.08–28.72] | >300 | >18.30 | |
| R1=I, R2=R3=H | |||
| 42.25 [36.30–48.52] | >300 | >7.10 | |
| 14.85 [5.94–24.24] | >300 | >20.20 | |
| 24.89 [11.95–41.25] | >300 | >12.05 | |
| R1=R2=HR3=NO2 | |||
| 92.80 [81.78–103.30] | – | – | |
| 34.20 [29.47–39.39] | >300 | >8.77 | |
| 132.56 [120.93–146.15] | – | – | |
| R1=R3=HR2=NO2 | |||
| 24.28 [12.49–38.45] | 168.93 [127.03–239–12] | 7.00 | |
| 51.91 [31.66–85.57] | – | – | |
| 73.41 [50.52–110.14] | – | – | |
| R1=NO2 R2=R3=H | |||
| 35.95 [29.98–42.63] | 254.15 [170.16–725.83] | 7.07 | |
| 155.17 [93.43–395.10] | – | – | |
| 127.98 [77.11–294.93] | – | – | |
| 151.81 [112.95–209.64] | – | – | |
| Ar = Naphthyl | |||
| 14.89 [11.51–18.30] | 274.75 [193.19–562.70] | 18.45 | |
| 30.46 [17.60–46.35] | >300 | >9.85 | |
| 20.14 [16.37–24.03] | 174.81 [110.58–371.96] | >8.68 | |
|
| 2.68 [2.37–3.03] | >300 | >111 |
IC50 and CC50 were calculated with growth inhibition values showing a standard deviation of less than 10%.
–: Not evaluated against Vero cells owing to the low trichomonacidal activity.
aResults in brackets refer to 95% confidence interval.
bSelectivity indexes SI = CC50 Vero cells/IC50 T. vaginalis.
Figure 2.Plots of fluorescence units at 535 nm after addition of JC-1. MTZ (metronidazole), CCCP (m-chlorocarbonylcyanide phenylhydrazone) and CC (culture control). Data indicate mean ± SD of three independent experiments (n = 3). Data that are significantly different from control experiment are marked with an asterisk (*) (ρ < 0.05).
Figure 3.Fluorescence emitted by JC-1 in hydrogenosome. A. Control. B. Positive control (treatment with the uncoupler agent CCCP). C. Treatment with MTZ. D. Treatment with 51. E. Treatment with 63.
Figure 4.Scanning electron microscopy images of T. vaginalis cultures. A. Control. B. Treatment with compound 51. C. Treatment with compound 63.