Nitric oxide (NO), an essential agent of the innate immune system, exhibits multi-mechanistic antimicrobial activity. Previously, NO-releasing nanoparticles (NO-np) demonstrated increased antimicrobial activity when combined with glutathione (GSH) due to formation of S-nitrosoglutathione (GSNO), a transnitrosylating agent. To capitalize on this finding, we incorporated the thiol-containing ACE-inhibitor, captopril, with NO-np to form SNO-CAP-np, nanoparticles that both release NO and form S-nitrosocaptopril. In the presence of GSH, SNO-CAP-np demonstrated increased transnitrosylation activity compared to NO-np, as exhibited by increased GSNO formation. Escherichia coli and methicillin-resistant Staphylococcus aureus were highly susceptible to SNO-CAP-np in a dose-dependent fashion, with E. coli being most susceptible, and SNO-CAP-np were nontoxic in zebrafish embryos at translatable concentrations. Given SNO-CAP-np's increased transnitrosylation activity and increased E. coli susceptibility compared to NO-np, transnitrosylation rather than free NO is likely responsible for overcoming E. coli's resistance mechanisms and ultimately killing the pathogen. FROM THE CLINICAL EDITOR: This team of authors incorporated the thiol-containing ACE-inhibitor, captopril, into a nitric oxide releasing nanoparticle system, generating nanoparticles that both release NO and form S-nitrosocaptopril, with pronounced toxic effects on MRSA and E. coli in the presented model system.
S-nitrosocaptopril nanoparticles as nitric oxide-liberating and transnitrosylating anti-infective technology.
S-亚硝基卡托普利纳米颗粒作为释放一氧化氮和转亚硝基化的抗感染技术
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作者:Mordorski Breanne, Pelgrift Robert, Adler Brandon, Krausz Aimee, da Costa Neto Alexandre Batista, Liang Hongying, Gunther Leslie, Clendaniel Alicea, Harper Stacey, Friedman Joel M, Nosanchuk Joshua D, Nacharaju Parimala, Friedman Adam J
| 期刊: | Nanomedicine | 影响因子: | 3.900 |
| 时间: | 2015 | 起止号: | 2015 Feb;11(2):283-91 |
| doi: | 10.1016/j.nano.2014.09.017 | ||
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