Minimum inhibitory concentration creep in Enterobacterales – A rising concern

Soumyya Mondal, Anwesha Mandal, Sipra Saha, P. Chakrabarty, Debalina Das
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Abstract

Background: The irrational use of antibiotics has led to the emergence of multidrug-resistant pathogens. The phenomenon of minimum inhibitory concentration (MIC) creeps occurs when organisms start showing raised MIC but within susceptible range giving an indication of the prevalence of rise in resistant pathogens in an area. Aims and Objectives: The aims and objectives of the study are to observe the susceptibility pattern among uropathogens and the possibility of MIC creeps among the Escherichia coli isolates sensitive to nitrofurantoin. Materials and Methods: This retrospective study was done in a tertiary care hospital in Kolkata to observe the susceptibility pattern among uropathogens and the possibility of MIC creeps. We took the data from all inpatient department and outpatient department patients sent for urine culture and sensitivity from October 1st, 2022, to September 30th, 2023. The antimicrobial susceptibility testing and MIC were conducted by VITEK Compact 2. The MIC of nitrofurantoin, one of the most widely used antibiotics for lower urinary tract infections, was calculated to investigate the phenomenon of MIC creep. All the statistical analyses were carried out using the Excel spreadsheet and OpenEpi version 3.01 platform. Results: In our study, a total of 631 urine samples were analyzed: 368 were positive with the most common isolate being E. coli (53%) followed by Klebsiella spp. (12%). Two percent of resistance was observed for fosfomycin and 8% for nitrofurantoin. Extended spectrum beta-lactamase (ESBL) producers E. coli was 127 (35%). Overall, 23/368 samples had a MIC ≥128 for nitrofurantoin. Among the ESBL producers, 13/127 had MIC ≥128 for nitrofurantoin. Conclusion: In the present study, it was observed that E. coli showed a reduced susceptibility for nitrofurantoin indicated by a creeping increase in MIC within normal range. Trends in rising MIC can be an alarming sign for using drugs such as nitrofurantoin judiciously. Antimicrobial stewardship practice should be strongly implemented in hospitals to curb rising resistance and for better prognosis of patients having infectious diseases.
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肠杆菌的最小抑菌浓度爬升--一个日益令人担忧的问题
背景:抗生素的不合理使用导致了耐多药病原体的出现。当生物体的最小抑菌浓度(MIC)开始升高,但仍在易感范围内时,就会出现最小抑菌浓度爬升现象,这表明一个地区的耐药病原体在普遍上升:本研究的目的和目标是观察泌尿系统病原体的药敏模式,以及对硝基呋喃妥因敏感的大肠埃希菌分离株的MIC爬升的可能性:这项回顾性研究是在加尔各答的一家三级护理医院进行的,目的是观察泌尿病原体的药敏模式以及 MIC 爬升的可能性。我们收集了 2022 年 10 月 1 日至 2023 年 9 月 30 日期间所有住院部和门诊部患者的尿液培养和药敏数据。抗菌药物药敏试验和 MIC 均由 VITEK Compact 2 进行。硝基呋喃妥因是治疗下尿路感染最广泛使用的抗生素之一,为研究 MIC 爬升现象,计算了硝基呋喃妥因的 MIC。所有统计分析均使用 Excel 电子表格和 OpenEpi 3.01 版平台进行:在我们的研究中,共分析了 631 份尿液样本:其中 368 份呈阳性,最常见的分离菌株是大肠杆菌(53%),其次是克雷伯氏菌(12%)。对磷霉素的耐药性为 2%,对硝基呋喃妥因的耐药性为 8%。产生广谱β-内酰胺酶(ESBL)的大肠杆菌有127个(35%)。总体而言,23/368 个样本对硝基呋喃妥因的 MIC 值≥128。在 ESBL 生产者中,13/127 的硝基呋喃妥因 MIC ≥128:在本研究中观察到,大肠杆菌对硝基呋喃妥因的敏感性降低,表现为 MIC 在正常范围内逐渐升高。MIC 的上升趋势可能是一个警示信号,需要谨慎使用硝基呋喃妥因等药物。医院应大力推行抗菌药物管理实践,以遏制耐药性的上升,并改善感染性疾病患者的预后。
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