Synthesis, In Vitro and In Silico Studies of Indolequinone Derivatives against Clinically Relevant Bacterial Pathogens

被引:7
作者
Custodio Leite, Talita Odriane [1 ]
Novais, Juliana Silva [2 ,3 ]
Cosenza de Carvalho, Beatriz Lima [4 ]
Ferreira, Vitor Francisco [5 ]
Miceli, Leonardo Alves [6 ,7 ]
Fraga, Leticia [8 ]
Abrahim-Vieira, Barbara [8 ]
Rodrigues, Carlos Rangel [9 ]
Sa Figueiredo, Agnes Marie [8 ]
Castro, Helena Carla [2 ,3 ]
Cunha, Anna Claudia [1 ]
机构
[1] Univ Fed Fluminense, Inst Quim, Dept Quim Organ, Programa Posgrad Quim, BR-24020141 Niteroi, RJ, Brazil
[2] Univ Fed Fluminense, Programa Posgrad Patol HUAP, BR-24020150 Niteroi, RJ, Brazil
[3] Univ Fed Fluminense, Programa Ciencias & Biotecnol PPBI, BR-24020150 Niteroi, RJ, Brazil
[4] Univ Fed Rio de Janeiro, Inst Quim, Dept Quim Organ, BR-21941909 Rio De Janeiro, Brazil
[5] Univ Fed Fluminense, Fac Farm, Dept Tecnol Farmaceut, BR-24241000 Niteroi, RJ, Brazil
[6] Univ Fed Rio de Janeiro, Inst Microbiol Prof Paulo Goes, Programa Posgrad Ciencias Farmaceut, BR-21941902 Rio De Janeiro, Brazil
[7] Fac Farm, BR-21941902 Rio De Janeiro, Brazil
[8] Univ Fed Rio de Janeiro, Fac Farm, Lab Modelagem Mol & QSAR MODMOLQSAR, BR-21941902 Rio De Janeiro, Brazil
[9] Univ Fed Rio de Janeiro, Programa Posgrad Ciencias Farmaceut, Fac Farm, BR-21941902 Rio De Janeiro, Brazil
关键词
Indolequinone; Antimicrobial; beta-enamino ketones; Staphylococcus aureus; MRSA; Molecular docking; STAPHYLOCOCCUS-AUREUS MRSA; DNA GYRASE; ANTIBIOTICS; 2-AMINO-1,4-BENZOQUINONES; ANTIBACTERIAL; RESISTANCE; INHIBITION; OXIDATION; EFFICIENT; MECHANISM;
D O I
10.2174/1568026620666191223110518
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Background: According to the World Health Organization, antimicrobial resistance is one of the most important public health threats of the 21st century. Therefore, there is an urgent need for the development of antimicrobial agents with new mechanism of action, especially those capable of evading known resistance mechanisms. Objective: We described the synthesis, in vitro antimicrobial evaluation, and in silico analysis of a series of 1H-indole-4,7-dione derivatives. Methods: The new series of 1H-indole-4,7-diones was prepared with good yield by using a copper(II)mediated reaction between bromoquinone and beta-enamino ketones bearing alkyl or phenyl groups attached to the nitrogen atom. The antimicrobial potential of indole derivatives was assessed. Molecular docking studies were also performed using AutoDock 4.2 for Windows. Characterization of all compounds was confirmed by one- and two-dimensional NMR techniques H-1 and C-13 NMR spectra [H-1, C-13 - APT, H-1 x H-1 - COSY, HSQC and HMBC], IR and mass spectrometry analysis. Results: Several indolequinone compounds showed effective antimicrobial profile against Grampositive (MIC = 16 mu.g.mL(-1)) and Gram-negative bacteria (MIC = 8 mu.g.mL(-1)) similar to antimicrobials current on the market. The 3-acetyl-1-(2,5-dimethylpheny0-1H-indole-4,7-dione derivative exhibited an important effect against different biofilm stages formed by a serious hospital life-threatening resistant strain of Methicillin-Resistant Staphylococcus aureus (MRSA). A hemocompatibility profile analysis based on in vitro hemolysis assays revealed the low toxicity effects of this new series. Indeed, in silico studies showed a good pharmacokinetics and toxicological profiles for all indolequinone derivatives, reinforcing their feasibility to display a promising oral bioavailability. An elucidation of the promising indolequinone derivatives binding mode was achieved, showing interactions with important sites to biological activity of S. aureus DNA gyrase. These results highlighted 3-acetyl-1-(2-hydroxyethyl)-1H-indole-4,7-dione derivative as broad-spectrum antimicrobial prototype to be further explored for treating bacterial infections. Conclusion: The highly substituted indolequinones were obtained in moderate to good yields. The pharmacological study indicated that these compounds should be exploited in the search for a leading substance in a project aimed at obtaining new antimicrobials effective against Gram-negative bacteria.
引用
收藏
页码:192 / 208
页数:17
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