Design, Synthesis and Biological Profiling of Novel Phenothiazine Derivatives as Potent Antitubercular Agents
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Published:2018-12-19
Issue:1
Volume:17
Page:50-65
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ISSN:2211-3525
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Container-title:Anti-Infective Agents
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language:en
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Short-container-title:AIA
Author:
Singh Sushil K.1, Nath Gopal2, Kumar Ashok1, Sellamuthu Satheesh K.1
Affiliation:
1. Pharmaceutical Chemistry Research Laboratory, Department of Pharmaceutical Engineering & Technology, Indian Institute of Technology (Banaras Hindu University), Varanasi-221005, India 2. Department of Microbiology, Institute of Medical Sciences, Banaras Hindu University, Varanasi-221005, India
Abstract
Background:
Neuroleptic phenothiazines have been reported for antitubercular activity, but
the unwanted side effect (antipsychotic activity) restricted their use as antitubercular drugs.
Objective:
The study aimed to carry out development of phenothiazine based antitubercular agents by
modifying/removing the chemical group(s)/ linker(s) of chlorpromazine essential for exerting an
antipsychotic effect.
Methods:
The designed molecules were filtered with a cut-off of docking score < 2.0 Kcal/mol against
dopamine receptors, so that their binding with the receptor would be reduced to produce no/ less antipsychotic
effect. The molecules were then synthesized and screened against M. tuberculosis H37Rv.
They were further screened against a gram-positive (S. aureus) and a gram-negative (E. coli) bacterial
strains to evaluate the spectrum of activity. The ability of the compounds to cross the blood-brain barrier
(BBB) was also analyzed. The compounds were further examined for cytotoxicity (CC50) against
mammalian VERO cells.
Results:
Compounds 14p, 15p and 16p were found to be the most effective against all the strains viz. M.
tuberculosis H37Rv, S. aureus and E. coli with MIC of 1.56µg/ml, 0.98µg/ml and 3.91µg/ml, respectively.
Further, BBB permeability was found to be diminished in comparison to chlorpromazine, which
would ultimately reduce the unwanted antipsychotic activity. They were also found to be free from toxicity
against VERO cells.
Conclusion:
The designed strategy, to enhance the antitubercular activity with concomitant reduction of
dopamine receptor binding and BBB permeability was proved to be fruitful.
Publisher
Bentham Science Publishers Ltd.
Subject
Infectious Diseases,Pharmacology
Reference32 articles.
1. Nguta JM, Appiah-Opong R, Nyarko AK, Yeboah-Manu D, Addo PGA. Int J Mycobacteriol, Current perspectives in drug discovery against tuberculosis from natural products.,, 2015, 4,, 165-183, 2. Lee JY. Tuberculosis Res Dis, Diagnosis and Treatment of Extrapulmonary Tuberculosis.,, 2015, 78,, 47-55, 3. . , , Organization, W.H. Global tuberculosis report 2016, 2016 4. Martins M, Schelz Z, Martins A, Molnar J, Hajös G, Riedl Z, Viveiros M, Yalcin I, Aki-Sener E, Amaral L. Int J Antimicrob Agents, In vitro and ex vivo activity of thioridazine derivatives against Mycobacterium tuberculosis.,, 2007, 29,, 338-340, 5. Parrish NM, Dick JD, Bishai WR. Trends Microbiol, Mechanisms of latency in Mycobacterium tuberculosis.,, 1998, 6,, 107-112,
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