俄罗斯囊性纤维化患者呼吸道样本黄杆菌属抗菌药物MIC值的分布

Olga V. Kondratenko, K.V. Zubova
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Of these, 75 representatives of Chryseobacterium spp., among which C. arthrospherae – 28, C. formosense – 1, C. gambrini – 3, C. gleum – 10, C. indologenes – 20, C. joostei – 1, C. oraniemense – 10, C. shandongense – 2 strains, 4 strains of Elizabethkingia spp., among which 2 – E. miricola, and one strain of E. meningoseptica and E. anopheles, respectively, as well as 21 strains of E. falsenii. Identification of all isolated cultures was carried out using MALDI-ToF mass spectrometry (Bruker, Germany). The MIC values were determined for 17 antimicrobial drugs: amikacin, amoxicillin/clavulanate, aztreonam, cefotaxime, ceftazidime, ceftazidime/avibactam, ceftolozane/ tazobactam, ciprofloxacin, colistin, ertapenem, gentamicin, imipenem, meropenem, piperacillin/ tazobactam, tigecycline, tobramycin and trimethoprim/sulfamethoxazole using Sensititre kits DKMGN. Results. 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More than a third of the strains had a level of MIC ciprofloxacin up to 0.25 µg/ml inclusive. For 25% of strains, the level of MIC of tigecycline was up to 0.5 µg/ml, inclusive, the lowest MIC indicators for the tested group of strains were demonstrated for trimethoprim/sulfamethoxazole: for 88% of strains, the MIC value was ≤ 1⁄19 µg/ml, for another 9% of strains, this indicator was 2⁄38 µg/ml. Conclusions. Representatives of the order Flavobacteriales are a group of microorganisms characterized by multiple antibiotic resistance. 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引用次数: 0

摘要

目标。用双序列稀释法分析了从俄罗斯联邦囊性纤维化患者呼吸道样本中分离的黄杆菌门代表的几种抗菌药物的最低抑菌浓度(MIC)值的分布。材料与方法。作为常规微生物学检查的一部分,从俄罗斯联邦60个地区囊性纤维化患者的呼吸道样本中分离出100株黄杆菌属细菌,对一些抗菌药物的MIC值分布进行了评估。其中,黄杆菌75株,其中节球菌28株,formosense菌1株,gambrini菌3株,C. gleum菌10株,C. indologenes菌20株,C. joostei菌1株,C. oraniemense菌10株,C.山东菌2株,Elizabethkingia菌4株,其中miricola菌2株,脑膜炎毒杆菌1株,按蚊1株,falsenii菌21株。使用MALDI-ToF质谱法(Bruker, Germany)对所有分离培养物进行鉴定。采用敏性试剂盒DKMGN测定阿米卡星、阿莫西林/克拉维酸、氨曲南、头孢噻肟、头孢他啶、头孢他啶/阿维巴坦、头孢洛桑/他唑巴坦、环丙沙星、粘菌素、埃他培南、庆大霉素、亚胺培南、美罗培南、哌拉西林/他唑巴坦、替加环素、妥布霉素和甲氧苄啶/磺胺甲恶唑等17种抗菌药物的MIC值。结果。大肠杆菌素、头孢噻肟和妥布霉素的MIC值均大于8µg/ml,埃他培南的MIC值均大于2µg/ml。大多数菌株亚胺培南和美罗培南的MIC值均大于4µg/ml。头孢他啶对20%的黄杆菌的MIC可达2µg/ml。与伊莉莎白菌菌株相关的阿米卡星MIC指标在32µg/ml以上。对于38%的黄杆菌和falsenii菌株,该值不超过8µg/ml。与阿米卡星一样,所有elizabeth ethkingia菌株都显示出高水平的庆大霉素MIC - 8µg/ml(25%的菌株)和更高(75%的菌株)。20%的检测菌株MIC值在≤2µg/ml范围内。在一半的测试分离物中,头孢他啶/阿维巴坦以及头孢甲苯/他唑巴坦的MIC值高达2⁄4µg/ml。超过三分之一的菌株的MIC环丙沙星含量高达0.25微克/毫升。25%的菌株替加环素MIC值高达0.5µg/ml,其中甲氧苄啶/磺胺甲恶唑的MIC值最低,88%的菌株MIC值≤1⁄19µg/ml, 9%的菌株MIC值为2⁄38µg/ml。结论。黄杆菌属的代表是一类具有多种抗生素耐药性的微生物。从俄罗斯联邦囊性纤维化患者中分离的大多数菌株对甲氧苄啶/磺胺甲恶唑的MIC值较低。
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Distribution of MIC values of antibacterial drugs for Flavobacteriales isolated from respiratory samples in Russian patients with cystic fibrosis
Objective. Analysis of the distribution of the values of the minimum inhibitory concentrations (MIC) of a number of antibacterial drugs in relation to representatives of the order Flavobacteriales isolated from respiratory samples from patients with cystic fibrosis of the Russian Federation by the method of double serial dilutions. Materials and Methods. The distribution of the values of MIC of a number of antibacterial drugs was evaluated in relation to 100 strains of bacteria, representatives of the order Flavobacteriales, isolated from respiratory samples from patients with cystic fibrosis from 60 regions of the Russian Federation as part of a routine microbiological examination. Of these, 75 representatives of Chryseobacterium spp., among which C. arthrospherae – 28, C. formosense – 1, C. gambrini – 3, C. gleum – 10, C. indologenes – 20, C. joostei – 1, C. oraniemense – 10, C. shandongense – 2 strains, 4 strains of Elizabethkingia spp., among which 2 – E. miricola, and one strain of E. meningoseptica and E. anopheles, respectively, as well as 21 strains of E. falsenii. Identification of all isolated cultures was carried out using MALDI-ToF mass spectrometry (Bruker, Germany). The MIC values were determined for 17 antimicrobial drugs: amikacin, amoxicillin/clavulanate, aztreonam, cefotaxime, ceftazidime, ceftazidime/avibactam, ceftolozane/ tazobactam, ciprofloxacin, colistin, ertapenem, gentamicin, imipenem, meropenem, piperacillin/ tazobactam, tigecycline, tobramycin and trimethoprim/sulfamethoxazole using Sensititre kits DKMGN. Results. The MIC values of colistin, cefotaxime and tobramycin more than 8 µg/ml, as well as more than 2 µg/ml with respect to ertapenem was demonstrated for 100% of isolates. For most strains, the MIC values of imipenem and meropenem were more than 4 µg/ml. MIC of ceftazidime against 20% of Chryseobacterium spp. strains was up to 2 µg/ml. Indicators of MIC of amikacin in relation to Elizabethkingia spp. strains were 32 µg/ml or more. For 38% of the strains of Chryseobacterium spp. and E.falsenii, this value did not exceed 8 µg/ml. As in the case of amikacin, all Elizabethkingia spp. strains demonstrated high levels of gentamicin MIC – 8 µg/ml (25% of strains) and more (75% of strains). For 20% of all tested strains, the MIC value was in the range of ≤ 2 µg/ml. In relation to half of the tested isolates, the MIC values for ceftazidime/avibactam, as well as ceftolozane/tazobactam were at the level of up to 2⁄4 µg/ml inclusive. More than a third of the strains had a level of MIC ciprofloxacin up to 0.25 µg/ml inclusive. For 25% of strains, the level of MIC of tigecycline was up to 0.5 µg/ml, inclusive, the lowest MIC indicators for the tested group of strains were demonstrated for trimethoprim/sulfamethoxazole: for 88% of strains, the MIC value was ≤ 1⁄19 µg/ml, for another 9% of strains, this indicator was 2⁄38 µg/ml. Conclusions. Representatives of the order Flavobacteriales are a group of microorganisms characterized by multiple antibiotic resistance. Most strains isolated from patients with cystic fibrosis in the Russian Federation retain low MIC values for trimethoprim/sulfamethoxazole.
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