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临床甲硝唑耐药阴道毛滴虫对硝唑尼特、棉子糖和 2-氟-2'-脱氧腺苷的体外敏感性。

Susceptibility in vitro of clinically metronidazole-resistant Trichomonas vaginalis to nitazoxanide, toyocamycin, and 2-fluoro-2'-deoxyadenosine.

机构信息

Infectious Diseases and Division, Queensland Institute of Medical Research, Brisbane, 4006, Queensland, Australia.

出版信息

Parasitol Res. 2010 Sep;107(4):847-53. doi: 10.1007/s00436-010-1938-3. Epub 2010 Jun 9.

Abstract

This study investigates the susceptibility of a clinically metronidazole (Mz)-resistant isolate of Trichomonas vaginalis to alternative anti-trichomonal compounds. The microaerobic minimal inhibitory concentration (MIC) of the 5-nitroimidazole (NI) drug, Mz, against a typical Mz-susceptible isolate of T. vaginalis is around 3.2 microM Mz while the clinically, highly Mz-resistant isolate has an MIC of 50-100 microM. This isolate was cross-resistant to other members of the 5-NI family of compounds including tinidazole and other experimental compounds and maintained resistance under anaerobic conditions. In addition, this isolate was cross-resistant to the 5-nitrothiazole compound nitazoxanide and the 5-nitrofuran derivative, furazolidone. Adenosine analogues toyocamycin and 2-fluoro-2'-deoxyadenosine with no nitro group were also less effective against the clinically Mz-resistant isolate than a Mz-susceptible one. Three other isolates which were determined to be Mz-resistant soon after isolation lost resistance in the long term. One other isolate has maintained some level of permanent Mz resistance (MIC of 25 microM). A multi-drug resistance mechanism may be involved in these clinically Mz-resistant isolates.

摘要

本研究调查了临床甲硝唑(Mz)耐药的阴道毛滴虫对替代抗滴虫化合物的敏感性。5-硝基咪唑(NI)药物 Mz 对典型 Mz 敏感的阴道毛滴虫分离株的微需氧最小抑菌浓度(MIC)约为 3.2 microM Mz,而临床高度 Mz 耐药的分离株的 MIC 为 50-100 microM。该分离株对其他 5-NI 家族化合物(包括替硝唑和其他实验化合物)具有交叉耐药性,并在厌氧条件下保持耐药性。此外,该分离株对 5-硝基噻唑化合物硝唑尼特和 5-硝基呋喃衍生物呋喃唑酮具有交叉耐药性。没有硝基的腺嘌呤类似物 Toyocamycin 和 2-氟-2'-脱氧腺嘌呤对临床 Mz 耐药分离株的作用也不如 Mz 敏感分离株。另外三个在分离后不久被确定为 Mz 耐药的分离株在长期内失去了耐药性。另一个分离株保持一定程度的永久性 Mz 耐药性(MIC 为 25 microM)。可能涉及多种耐药机制这些临床 Mz 耐药分离株。

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