首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >Esters of Pyrazinoic Acid Are Active against Pyrazinamide-Resistant Strains of Mycobacterium tuberculosis and Other Naturally Resistant Mycobacteria In Vitro and Ex Vivo within Macrophages
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Esters of Pyrazinoic Acid Are Active against Pyrazinamide-Resistant Strains of Mycobacterium tuberculosis and Other Naturally Resistant Mycobacteria In Vitro and Ex Vivo within Macrophages

机译:吡嗪酸的酯类对结核分枝杆菌的耐吡嗪酰胺的菌株和巨噬细胞内和体外的其他天然抗性分枝杆菌具有活性

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摘要

Pyrazinamide (PZA) is active against major Mycobacterium tuberculosis species (M. tuberculosis, M. africanum, and M. microti) but not against M. bovis and M. avium. The latter two are mycobacterial species involved in human and cattle tuberculosis and in HIV coinfections, respectively. PZA is a first-line agent for the treatment of human tuberculosis and requires activation by a mycobacterial pyrazinamidase to form the active metabolite pyrazinoic acid (POA). As a result of this mechanism, resistance to PZA, as is often found in tuberculosis patients, is caused by point mutations in pyrazinamidase. In previous work, we have shown that POA esters and amides synthesized in our laboratory were stable in plasma (M. F. Simões, E. Valente, M. J. Gómez, E. Anes, and L. Constantino, Eur J Pharm Sci 37:257–263, 2009, ). Although the amides did not present significant activity, the esters were active against sensitive mycobacteria at concentrations 5- to 10-fold lower than those of PZA. Here, we report that these POA derivatives possess antibacterial efficacy in vitro and ex vivo against several species and strains of Mycobacterium with natural or acquired resistance to PZA, including M. bovis and M. avium. Our results indicate that the resistance probably was overcome by cleavage of the prodrugs into POA and a long-chain alcohol. Although it is not possible to rule out that the esters have intrinsic activity per se, we bring evidence here that long-chain fatty alcohols possess a significant antimycobacterial effect against PZA-resistant species and strains and are not mere inactive promoieties. These findings may lead to candidate dual drugs having enhanced activity against both PZA-susceptible and PZA-resistant isolates and being suitable for clinical development.
机译:吡嗪酰胺(PZA)对主要的结核分枝杆菌种(结核分枝杆菌,非洲分枝杆菌和小分枝杆菌)有活性,但对牛分枝杆菌和鸟分枝杆菌没有活性。后两种是分别与人和牛结核病以及HIV合并感染有关的分枝杆菌。 PZA是用于治疗人肺结核的一线药物,需要通过分枝杆菌吡嗪酰胺酶的活化才能形成活性代谢物吡嗪酸(POA)。这种机制的结果是,吡嗪酰胺酶中的点突变引起了对PZA的抗药性,这在结核病患者中经常见到。在以前的工作中,我们证明了在我们的实验室中合成的POA酯和酰胺在血浆中是稳定的(MFSimões,E。Valente,MJGómez,E。Anes和L. Constantino,Eur J Pharm Sci 37:257-263, 2009,)。尽管酰胺没有显着的活性,但是该酯类对敏感的分枝杆菌的活性比PZA低5-10倍。在这里,我们报告说,这些POA衍生物在体外和离体时都对具有自然或获得性抗PZA的分枝杆菌的几种物种和菌株,包括牛分枝杆菌和鸟分枝杆菌具有抗菌作用。我们的结果表明,抗药性可能通过将前药裂解为POA和长链醇而克服。尽管不可能排除酯本身具有内在活性,但我们在这里提供证据表明长链脂肪醇对PZA耐药菌和菌株具有显着的抗分枝杆菌作用,而不仅仅是非活性的部分。这些发现可能导致候选双重药物对PZA易感和PZA耐药的分离株均具有增强的活性,并且适合临床开发。

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