| Literature DB >> 35458755 |
Estevão Silveira Grams1,2, Alessandro Silva Ramos1, Mauro Neves Muniz1, Raoní S Rambo1, Marcia Alberton Perelló1, Nathalia Sperotto1, Laura Calle González1,2, Lovaine Silva Duarte1, Luiza Galina1,3, Adilio Silva Dadda1, Guilherme Arraché Gonçalves1,3, Cristiano Valim Bizarro1,2, Luiz Augusto Basso1,2,3, Pablo Machado1,2,3.
Abstract
Tuberculosis remains a global health problem that affects millions of people around the world. Despite recent efforts in drug development, new alternatives are required. Herein, a series of 27 N-(4-(benzyloxy)benzyl)-4-aminoquinolines were synthesized and evaluated for their ability to inhibit the M. tuberculosis H37Rv strain. Two of these compounds exhibited minimal inhibitory concentrations (MICs) similar to the first-line drug isoniazid. In addition, these hit compounds were selective for the bacillus with no significant change in viability of Vero and HepG2 cells. Finally, chemical stability, permeability and metabolic stability were also evaluated. The obtained data show that the molecular hits can be optimized aiming at the development of drug candidates for tuberculosis treatment.Entities:
Keywords: Mycobacterium tuberculosis; drug discovery; quinolines; synthesis; tuberculosis
Mesh:
Substances:
Year: 2022 PMID: 35458755 PMCID: PMC9027910 DOI: 10.3390/molecules27082556
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.927
Scheme 1Reagents and conditions: i = K2CO3, acetone, 56 °C, 4 h; ii = (1) Li(AlH4), THF, 0–25 °C, 16 h, (2) H2O, NaOH, 12 h.
Scheme 2Reagents and conditions: i = (1) Na2SO4, AcOH, EtOH, 80 °C, 16 h, (2) Dowtherm® A, 230–250 °C, 15 min; ii = POCl3, toluene, 110 °C, 2 h; iii = DIPEA, DMSO, 150 °C, 20 h.
Yields after purification of 4-amino-N-(4-benzyloxy)quinolines 9a–9aa, ClogP values, and in vitro activity against M. tuberculosis H37Rv.
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| Entry | R1 | R2 | R3 | R4 | R5 | Yield (%) a | ClogP b | MIC (µM) |
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| H | H | H | H | Me | 32 | 6.13 | >7 |
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| H | Cl | H | H | Me | 29 | 6.85 | >12.9 |
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| H | F | H | H | Me | 31 | 6.28 | 26.8 |
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| F | F | H | H | Me | 30 | 6.35 | 25.6 |
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| H | H | H | Me | 29 | 7.55 | 27 | |
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| OMe | H | OMe | H | Me | 26 | 6.14 | 12.1 |
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| H | H | H | Cl | Me | 28 | 6.94 | 6.4 |
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| H | Cl | H | Cl | Me | 31 | 7.66 | 5.9 |
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| H | F | H | Cl | Me | 29 | 7.09 | 6.1 |
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| F | F | H | Cl | Me | 46 | 7.16 | 5.9 |
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| H | H | Cl | Me | 33 | 8.37 | 5.8 | |
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| OMe | H | OMe | Cl | Me | 33 | 6.95 | 5.7 |
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| H | H | H | Br | Me | 48 | 7.09 | 5.8 |
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| H | Cl | H | Br | Me | 44 | 7.81 | 2.7 |
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| H | F | H | Br | Me | 35 | 7.24 | 2.8 |
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| F | F | H | Br | Me | 46 | 7.31 | 5.3 |
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| H | H | Br | Me | 27 | 8.52 | 5.3 | |
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| OMe | H | OMe | Br | Me | 36 | 7.10 | 5.1 |
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| H | H | H | Br | Et | 44 | 7.62 | 5.6 |
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| H | Cl | H | Br | Et | 30 | 8.34 | 5.2 |
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| H | H | H | OMe | Me | 32 | 6.45 | 13 |
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| H | Cl | H | OMe | Me | 27 | 7.16 | 11.9 |
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| H | F | H | OMe | Me | 28 | 6.59 | 12.4 |
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| F | F | H | OMe | Me | 46 | 6.67 | 5.9 |
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| H | H | OMe | Me | 33 | 7.88 | 23.4 | |
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| OMe | H | OMe | OMe | Me | 33 | 6.46 | 11.2 |
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| H | H | H | OMe | Et | 34 | 6.98 | 12.5 |
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| - | - | - | - | - | - | - | 2.3 |
a Yield of purified compounds; b ClogP calculated by ChemBioDraw Ultra, version 12.0.2.1076. INH, isoniazid.
Viability of Vero and HepG2 cells, chemical stability, permeability, and metabolic stability of 4-amino-N-(4-benzyloxy)quinolines 9n and 9o.
| Entry | Selectivity a | Chemical Stability d | Permeability | Metabolic Stability | ||||
|---|---|---|---|---|---|---|---|---|
| CC50 a Vero (µM) | CC50 a HepG2 (µM) | pH 1.2 e (%) | pH 7.4 f (%) | pH 9.1 g (%) | PAMPA (10−6 cm/s) | Clint h (mL/min/kg) | ||
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| >3 b | >3 b | 14.9 | 5.0 | 13.8 | 0.3 | 39 | 19 |
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| >3 b | >3 b | 22.9 | 7.6 | 11.1 | 3.0 | 56 | 7.9 |
a The selectivity of the compounds was studied on Vero and HepG2 cells. The results were expressed as the concentration able to reduce cell viability by 50% (CC50) determined by MTT and neutral red assays. b Determined by the MTT method. c Determined by the neutral red method. d Percentage of remaining compound after incubation at 37 °C for 24 h. e A 0.1 M HCl solution. f PBS. g A 0.1 M NH4HCO3 solution. h Rat liver microsomes intrinsic clearance. i Half-life.