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不久的将来:提高利福霉素类和吡嗪酰胺的活性。

The near future: improving the activity of rifamycins and pyrazinamide.

机构信息

Department of Cellular & Molecular Medicine, St George's University of London, London SW17 0RE, UK.

出版信息

Tuberculosis (Edinb). 2010 May;90(3):177-81. doi: 10.1016/j.tube.2010.03.005. Epub 2010 Apr 9.

Abstract

While we wait for improved new anti-tuberculosis drugs, the main aim for improving current treatment should be to optimize the use of the two current drugs, rifampicin and the pro-drug pyrazinamide, which are responsible to a similar extent for the entire sterilizing activity of current therapy. The rifamycin activity could be improved by increasing the dose size of rifampicin or by daily dosing with long acting rifapentine. Increasing the dose size of pyrazinamide is limited by toxicity but an alternative approach is to use inhalation with pyrazinoic acid, as an adjunct to standard oral therapy. This would acidify pulmonary lesions, thus increasing the bactericidal activity of the orally administered pyrazinamide. Because pyrazinoic acid is the active moiety, it should also increase overall pyrazinamide activity and, because most resistance arises in the pncA gene that converts pyrazinamide to pyrazinoic acid, it should act on most pyrazinamide resistant strains. Inhalation technology allows delivery of drug to lesions rapidly and without first pass toxicity. The properties of drug containing microparticles and nanoparticles during inhalation and storage are reviewed. Spray-dried larger Trojan particles in which the smaller encapsulated particles can reside should be able to improve localisation within alveoli and avoid some storage problems.

摘要

在等待新的抗结核药物取得进展的同时,改善现有治疗方法的主要目标应该是优化两种现有药物(利福平及前药吡嗪酰胺)的使用,因为它们在当前治疗的全部杀菌活性中起着相似的作用。利福霉素的活性可以通过增加利福平的剂量或每日给予长效利福喷丁来提高。增加吡嗪酰胺的剂量受到毒性的限制,但替代方法是使用吡嗪酸吸入,作为标准口服治疗的辅助手段。这将使肺部病变酸化,从而提高口服吡嗪酰胺的杀菌活性。因为吡嗪酸是活性部分,它也应该增加整体吡嗪酰胺的活性,而且由于大多数耐药性出现在将吡嗪酰胺转化为吡嗪酸的 pncA 基因中,所以它应该对大多数吡嗪酰胺耐药菌株起作用。吸入技术可以快速将药物递送到病变部位,而不会产生首过毒性。综述了含药微球和纳米颗粒在吸入和储存过程中的特性。喷雾干燥较大的 Trojan 颗粒,其中可以容纳较小的包裹颗粒,应该能够改善在肺泡内的定位,并避免一些储存问题。

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