首页> 外文期刊>Medical mycology: official publication of the International Society for Human and Animal Mycology >Prevalence of Candida bracarensis and Candida nivariensis in a Spanish collection of yeasts: comparison of results from a reference centre and from a population-based surveillance study of candidemia.
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Prevalence of Candida bracarensis and Candida nivariensis in a Spanish collection of yeasts: comparison of results from a reference centre and from a population-based surveillance study of candidemia.

机译:西班牙酵母菌集合中念珠菌和念珠菌的患病率:参考中心与念珠菌血症人群监测研究结果的比较。

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摘要

Two new species related to Candida glabrata, i.e., Candida nivariensis and Candida bracarensis, have been proposed. The occurrence of these species among isolates collected in a Spanish mycology reference laboratory in 2008-2009 was reviewed. In addition, strains recovered as part of an active population-based surveillance of candidemia conducted in Barcelona between 2002 and 2003 were also analyzed. Among 143 clinical isolates received in 2008-2009, three (2%) were identified as C. bracarensis and none as C. nivariensis through sequencing of their ribosomal DNA. Of the 31 strains initially identified as C. glabrata in the 2002-2003 population-based study (0.38 cases/100,000 population), none were found to belong to these related new species. Results from in vitro susceptibility studies of C. bracarensis isolates were comparable to those found with C. glabrata. Since new and cryptic species have been described, periodic surveillance including the use of molecular identification methods seems to be necessary in order to determine their frequency, geographical distribution and susceptibility profile.
机译:已经提出了两种与光滑念珠菌有关的新物种,即尼迪假丝酵母和布拉迪假丝酵母。本文回顾了2008-2009年在西班牙真菌学参考实验室收集到的分离株中这些物种的发生情况。此外,还分析了2002年至2003年期间在巴塞罗那进行的针对人群念珠菌病的主动监测中回收的菌株。通过对他们的核糖体DNA测序,在2008年至2009年收到的143株临床分离株中,有3株(2%)被鉴定为Bracarensis,而没有C. nivariensis。在2002-2003年基于人群的研究中,最初鉴定为glabrata C. glabrata的31个菌株(0.38例/ 100,000人口)中,没有一个属于这些相关的新物种。 Bracarensis分离株体外敏感性研究的结果与glabrata分离株的结果相当。由于已经描述了新的和神秘的物种,因此有必要进行定期监视,包括使用分子鉴定方法,以确定其频率,地理分布和敏感性分布。

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