橄榄小单孢菌与新型增效组合生产福尔霉素的响应面d优化设计。

IF 2.3 3区 生物学 Q3 MICROBIOLOGY
Heba Mohammed Refat M Selim, Fatma Alzahraa M Gomaa, Mohammad Y Alshahrani, Khaled M Aboshanab
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引用次数: 0

摘要

Fortimicins (FTMs)是由M. oliivasterospora DSM 43868产生的含福尔胺氨基糖苷类抗生素(AGAs),对多种肠杆菌科细菌具有良好的杀菌活性,对多重耐药(MDR)病原体具有协同活性。富替米辛- a (FTM-A)是ftm中活性最高的成员,对氨基糖苷修饰酶(AMEs)失活的易感性最低。因此,本研究旨在评价FTM-A单独或与其他抗生素联合对18种非克隆临床相关MDR革兰氏阳性和革兰氏阴性病原体的抑菌活性。采用响应面d优化设计,对影响其生产的各种环境因素进行统计优化。结果表明:FTM-A与美罗培南联用的增效杀菌活性最高(61.1%),其次为头孢噻肟和头孢吡肟联用(38.8%);然而,FTM-A/庆大霉素和FTM-A/强力霉素分别在66.6%和50%的测试分离株中表现出主要的加性效应。对于FTM-A的生产优化,使用氨基糖苷生产培养基,然后是酵母提取物-麦芽提取物和M65生产培养基,对细胞生长的比活性达到最大(µg/mg)。采用由27种不同介质组成变化组成的d -最优二次模型预测了FTM-A生产的最佳组成,并进行了实验验证。利用HPLC分析对该模型进行了实验室验证,与未优化条件相比,其产量增加了10.5倍。模型显示,初始pH、孵育温度和孵育时间显著影响FTMs的产生(p值0.05)。综上所述,d -优化设计得到了一个有效的模型,并在摇瓶水平上优化了FTMs的生产。FTM-A与美罗培南、头孢噻肟、头孢吡肟和庆大霉素联合使用显示出主要的协同/附加效应,建议用于临床评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Response Surface D-Optimal Design for Optimizing Fortimicins Production by Micromonospora olivasterospora and New Synergistic Fortimicin-A-Antibiotic Combinations.

Fortimicins (FTMs) are fortamine-containing aminoglycoside antibiotics (AGAs) produced by M. olivasterospora DSM 43868 with excellent bactericidal activities against a wide range of Enterobacteriaceae and synergistic activity against multidrug-resistant (MDR) pathogens. Fortimicin-A (FTM-A), the most active member of FTMs, has the lowest susceptibility to inactivation by the aminoglycoside modifying enzymes (AMEs). Therefore, this study aimed to evaluate the antibacterial activity of FTM-A alone or in combination with other antibiotics against 18 non-clonal clinically relevant MDR Gram-positive and Gram-negative pathogens. This study also aimed to statistically optimize various environmental factors affecting its production using the response surface D-optimal design. Results showed that FTM-A/meropenem combination showed the highest synergistic bactericidal activity (61.1%) followed by its combination with cefotaxime and cefepime (38.8% each). However, FTM-A/gentamicin and FTM-A/doxycycline combinations showed mostly additive effects in 66.6% and 50% of the tested isolates, respectively. For FTM-A production optimization, maximum specific activity (µg/mg) to cell growth was achieved using aminoglycoside production medium followed by yeast extract-malt extract and M65 production medium. A D-optimal quadratic model consisting of 27 different media composition variations was used to predict an optimal composition for FTM-A production and verified experimentally. Lab verification of the model was carried out using HPLC analysis, resulting in a 10.5-fold increase in their production compared to the un-optimized conditions. The model revealed that the initial pH, incubation temperature, and incubation time significantly affected FTMs production (P-value < 0.05), however, the tested range of calcium carbonate 2-7 gL-1 and agitation rate (100-300 rpm) showed no significant effect (P-value > 0.05). In conclusion, the D-optimal design resulted in an effective model and optimized FTMs production on the shake flask level. FTM-A combinations with meropenem, cefotaxime, cefepime, and gentamicin showed mostly synergistic/additive effects and are advised for clinical evaluation.

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来源期刊
Current Microbiology
Current Microbiology 生物-微生物学
CiteScore
4.80
自引率
3.80%
发文量
380
审稿时长
2.5 months
期刊介绍: Current Microbiology is a well-established journal that publishes articles in all aspects of microbial cells and the interactions between the microorganisms, their hosts and the environment. Current Microbiology publishes original research articles, short communications, reviews and letters to the editor, spanning the following areas: physiology, biochemistry, genetics, genomics, biotechnology, ecology, evolution, morphology, taxonomy, diagnostic methods, medical and clinical microbiology and immunology as applied to microorganisms.
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