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Neuronal Nitric Oxide Synthase (nNOS,NOS1) rs693534 and rs7977109 Variants and Risk for Migraine 下载免费PDF全文
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Delia Blanco Esther Perez-Herran Mónica Cacho Lluís Ballell Julia Castro Rubén González del Río José Luis Lavandera Modesto J. Remui?án Cindy Richards Joaquin Rullas María Jesús Vázquez-Mu?iz Ermias Woldu María Cleofé Zapatero-González I?igo Angulo-Barturen Alfonso Mendoza David Barros 《Antimicrobial agents and chemotherapy》2015,59(4):1868-1875
One way to speed up the TB drug discovery process is to search for antitubercular activity among compound series that already possess some of the key properties needed in anti-infective drug discovery, such as whole-cell activity and oral absorption. Here, we present MGIs, a new series of Mycobacterium tuberculosis gyrase inhibitors, which stem from the long-term efforts GSK has dedicated to the discovery and development of novel bacterial topoisomerase inhibitors (NBTIs). The compounds identified were found to be devoid of fluoroquinolone (FQ) cross-resistance and seem to operate through a mechanism similar to that of the previously described NBTI GSK antibacterial drug candidate. The remarkable in vitro and in vivo antitubercular profiles showed by the hits has prompted us to further advance the MGI project to full lead optimization. 相似文献
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Gabriella Freitas Ferreira Julliana Ribeiro Alves Santos Marliete Carvalho da Costa Rodrigo Assun??o de Holanda ?ngelo Márcio Leite Denadai Gustavo José Cota de Freitas áquila Rodrigues Costa Santos Priscila Batista Tavares Tatiane Alves Paix?o Daniel Assis Santos 《Antimicrobial agents and chemotherapy》2015,59(8):4600-4609
Cryptococcus gattii is the main etiological agent of cryptococcosis in immunocompetent individuals. The triazole drug itraconazole is one of the antifungals used to treat patients with cryptococcosis. Heteroresistance is an adaptive mechanism to counteract the stress of increasing drug concentrations, and it can enhance the ability of a microorganism to survive under antifungal pressure. In this study, we evaluated the ability of 11 C. gattii strains to develop itraconazole heteroresistance. Heteroresistant clones were analyzed for drug susceptibility, alterations in cell diameter, capsule properties, and virulence in a murine model. Heteroresistance to itraconazole was intrinsic in all of the strains analyzed, reduced both the capsule size and the cell diameter, induced molecular heterogeneity at the chromosomal level, changed the negatively charged cells, reduced ergosterol content, and improved the antioxidant system. A positive correlation between surface/volume ratio of original cells and the level of heteroresistance to itraconazole (LHI) was observed in addition to a negative correlation between capsule size of heteroresistant clones and LHI. Moreover, heteroresistance to itraconazole increased the engulfment of C. gattii by macrophages and augmented fungal proliferation inside these cells, which probably accounted for the reduced survival of the mice infected with the heteroresistant clones and the higher fungal burden in lungs and brain. Our results indicate that heteroresistance to itraconazole is intrinsic and increases the virulence of C. gattii. This phenomenon may represent an additional mechanism that contributes to relapses of cryptococcosis in patients during itraconazole therapy. 相似文献