Novel 4-substituted phenyl-2,2′-bichalcophenes and aza-analogs as antibacterial agents: A structural activity relationship

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Abstract

Antibiotic resistance is a major health problem; therefore, new antibacterial agents will need to be continuously developed. A series of novel bichalcophenes has been tested and found to have antimicrobial activity against selected bacteria. Due to the promising antimicrobial effects of these 4-substituted phenyl bichalcophene derivatives, the study reported here was launched to examine the interaction between novel bichalcophenes and tetracycline. The minimum inhibitory concentration values for all bichalcophenes were between 8 and 64 μM. Many of the bichalcophenes had synergistic activity that increased the inhibitory effect of tetracycline against bacterial growth, as indicated by the fractional inhibitory concentration index. The post-antibiotic effects of the novel bichalcophenes were determined. Many bichalcophenes were able to elongate the period required for bacteria to recover and grow after a brief exposure to tetracycline. Escherichia coli did not develop resistance to many bichalcophenes over a period of 7 days. A structural activity relationship could be characterized, as monocationic derivatives were more active than the corresponding mononitriles. The presence of a pyridyl group and/or furan ring reduced the activity, while the presence of a phenyl or thiophene ring enhanced the antibacterial activity. Our results suggest that bichalcophenes could be useful to elevate the shelf life of many antibiotics. © 2013 Hussin et al, publisher and licensee Dove Medical Press Ltd.

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Hussin, W. A., Ismail, M. A., & El-Sayed, W. M. (2013). Novel 4-substituted phenyl-2,2′-bichalcophenes and aza-analogs as antibacterial agents: A structural activity relationship. Drug Design, Development and Therapy, 7, 185–193. https://doi.org/10.2147/DDDT.S42073

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