Synthesis of covalent bonding MWCNT-oligoethylene linezolid conjugates and their antibacterial activity against bacterial strains.

合成共价键合 MWCNT-寡乙烯利奈唑胺缀合物及其对细菌菌株的抗菌活性

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作者:Alatorre-Barajas José A, Alcántar-Zavala Eleazar, Gil-Rivas M Graciela, Estrada-Zavala Edgar, Ochoa-Terán Adrián, Gochi-Ponce Y, Montes-Ávila Julio, Cabrera Alberto, Trujillo-Navarrete Balter, Rivera-Lugo Yazmin Yorely, Alonso-Núñez Gabriel, Reynoso-Soto Edgar A, Medina-Franco J L
Nowadays, infectious diseases caused by drug-resistant bacteria have become especially important. Linezolid is an antibacterial drug active against clinically important Gram positive strains; however, resistance showed by these bacteria has been reported. Nanotechnology has improved a broad area of science, such as medicine, developing new drug delivery and transport systems. In this work, several covalently bounded conjugated nanomaterials were synthesized from multiwalled carbon nanotubes (MWCNTs), a different length oligoethylene chain (S (n) ), and two linezolid precursors (4 and 7), and they were evaluated in antibacterial assays. Interestingly, due to the intrinsic antibacterial activity of the amino-oligoethylene linezolid analogues, these conjugated nanomaterials showed significant antibacterial activity against various tested bacterial strains in a radial diffusion assay and microdilution method, including Gram negative strains as Escherichia coli (11 mm, 6.25 μg mL(-1)) and Salmonella typhi (14 mm, ≤0.78 μg mL(-1)), which are not inhibited by linezolid. The results show a significant effect of the oligoethylene chain length over the antibacterial activity. Molecular docking of amino-oligoethylene linezolid analogs shows a more favorable interaction of the S (2)-7 analog in the PTC of E. coli.

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