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氧气作为新型隐球菌生长的限制营养素。

Oxygen as limiting nutrient for growth of Cryptococcus neoformans.

作者信息

Odds F C, De Backer T, Dams G, Vranckx L, Woestenborghs F

机构信息

Department of Bacteriology and Mycology, Janssen Research Foundation, Beerse, Belgium.

出版信息

J Clin Microbiol. 1995 Apr;33(4):995-7. doi: 10.1128/jcm.33.4.995-997.1995.

Abstract

In microbroth cultures with RPMI 1640 medium, the growth yield of seven Cryptococcus neoformans isolates was unaffected by augmentation of the normal (0.2%) glucose concentration in the medium to 2%, and the addition of other potential carbon, nitrogen, and vitamin sources to the medium also failed to produce large changes in growth yield. However, macrobroth cultures of C. neoformans in RPMI 1640 that were agitated by rotation in air gave turbidities 6 to 37 times greater than those in identical cultures incubated statically, and similar levels of increase were seen whether the medium contained 0.2 or 2% glucose. Incubation of microplates under an oxygen atmosphere or with agitation by rotation led to an increase of up to twofold in growth turbidity of the yeast. The maximum increase was achieved by incubation with rotation and was dependent on the brand of microplate used. The findings implicate oxygen as a growth-limiting nutrient for C. neoformans. Incubation of microbroth cultures under conditions that enhance oxygen availability for antifungal susceptibility testing purposes may increase the speed of such tests and enhance the determination of MIC endpoints.

摘要

在含有RPMI 1640培养基的微量肉汤培养物中,七种新生隐球菌分离株的生长产量不受培养基中正常(0.2%)葡萄糖浓度增加至2%的影响,向培养基中添加其他潜在的碳源、氮源和维生素源也未能使生长产量产生大幅变化。然而,在空气中旋转搅拌的含有RPMI 1640的新生隐球菌大肉汤培养物产生的浊度比相同培养物静态培养时高6至37倍,无论培养基中含有0.2%还是2%的葡萄糖,都能看到类似程度的增加。在氧气气氛下或通过旋转搅拌培养微孔板,可使酵母的生长浊度增加高达两倍。通过旋转培养可实现最大程度的增加,且这取决于所使用的微孔板品牌。这些发现表明氧气是新生隐球菌生长的限制营养物质。为进行抗真菌药敏试验而在提高氧气可用性的条件下培养微量肉汤培养物,可能会提高此类试验的速度并增强最低抑菌浓度(MIC)终点的测定。

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