首页> 美国卫生研究院文献>Journal of Clinical Microbiology >Improved rapid identification of mycobacteria by combining solid-phase extraction with high-performance liquid chromatography analysis of BACTEC cultures.
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Improved rapid identification of mycobacteria by combining solid-phase extraction with high-performance liquid chromatography analysis of BACTEC cultures.

机译:通过将固相萃取与BACTEC培养物的高效液相色谱分析相结合改进了对分枝杆菌的快速鉴定。

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摘要

Identification of mycobacteria from BACTEC 12B cultures is achieved in 7 to 21 days by reverse-phase high-performance liquid chromatography (HPLC) using a UV spectrophotometer to detect nonpolar p-bromophenylacyl mycolic acid derivatives. However, cultures grown in BACTEC and other liquid media seldom contain sufficient mycolic acids to permit reliable identification under usual HPLC assay conditions, so the sample size must be increased. Unfortunately, samples prepared from cultures in liquid media such as BACTEC cultures also contain large amounts of extraneous polar and strongly nonpolar contaminants that interfere with the analysis and hasten deterioration of the HPLC column. The contaminants were removed from 10 samples simultaneously by solid-phase extraction (SPE), i.e., by passing the crude suspension containing the mycolic acid derivatives into disposable 500-mg tC18 SPE columns in place of the usual final filtration step used to prepare specimens for HPLC. Fifteen milliliters of 20% (vol/vol) dichloromethane in methanol was passed through the columns (< 3 ml/min) to wash through the undesired contaminants and bind the mycolic acid derivatives. The mycolates were quantitatively eluted in 3 ml of dichloromethane for analysis by HPLC. Treating a panel of 31 strains of frequently isolated mycobacteria by SPE reduced the content of contaminants by 89.3 to 99.9% without altering the chromatographic patterns compared with the same strains grown on conventional solid media and processed without SPE. Peak heights of mycolates prepared from BACTEC cultures were increased from < or = 6 to > or = 25 absorbance milliunits with SPE, sufficient for reliable interpretation by visual inspection of chromatograms obtained with a UV detector. Also, removal of the contaminants improved column longevity.
机译:通过反相高效液相色谱(HPLC),使用UV分光光度计检测非极性对溴苯甲酰基分支链霉菌酸衍生物,可以在7到21天之内从BACTEC 12B培养物中鉴定出分枝杆菌。但是,在BACTEC和其他液体培养基中生长的培养物很少含有足够的霉菌酸,无法在常规HPLC测定条件下可靠地鉴定,因此必须增加样品量。不幸的是,从液体培养基(例如BACTEC)的培养物中制备的样品中也含有大量的外来极性和强非极性污染物,这些污染物会干扰分析并加速HPLC色谱柱的降解。通过固相萃取(SPE)同时去除10个样品中的污染物,即通过将含有霉菌酸衍生物的粗悬浮液移入一次性500 mg tC18 SPE色谱柱中,以代替用于制备样品的常规最终过滤步骤HPLC。使甲醇中的15毫升20%(体积/体积)二氯甲烷通过色谱柱(<3毫升/分钟),以洗去不需要的污染物并结合霉菌酸衍生物。将霉菌酸酯定量洗脱在3 ml二氯甲烷中,以进行HPLC分析。与在常规固体培养基上生长且未经SPE处理的相同菌株相比,用SPE处理一组31株经常分离出的分枝杆菌菌株可使污染物含量降低89.3%至99.9%,而不会改变色谱图。使用SPE,从BACTEC培养物制备的霉菌酸盐的峰高从<或= 6增至>或= 25吸收毫安,足以通过目测检查由UV检测器获得的色谱图来可靠地解释。同样,去除污染物改善了色谱柱的使用寿命。

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