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破坏抗微生物耐药性:揭示维生素C在对抗耐药菌生物膜形成方面的潜力。

Disrupting antimicrobial resistance: unveiling the potential of vitamin C in combating biofilm formation in drug-resistant bacteria.

作者信息

Rahim Samiur, Rahman Reazur, Jhuma Tania Akter, Ayub Mustak Ibn, Khan Shakila Nargis, Hossain Ashfaque, Karim Muhammad Manjurul

机构信息

Department of Microbiology, University of Dhaka, Dhaka, 1000, Bangladesh.

Department of Genetic Engineering and Biotechnology, University of Dhaka, Dhaka, 1000, Bangladesh.

出版信息

BMC Microbiol. 2025 Apr 12;25(1):212. doi: 10.1186/s12866-025-03800-3.

Abstract

BACKGROUND

Antimicrobial resistance (AMR) poses a significant threat to global health, exacerbated by the protective mechanisms of biofilms formed by drug-resistant bacteria. Extracellular polymeric substances (EPS) produced by bacteria in biofilms serve as a formidable shield, impeding the efficacy of antimicrobial agents. Here, we investigated the potential of vitamin C (sodium ascorbate) to disrupt biofilm formation in drug-resistant bacteria isolated from diabetic foot ulcer (DFU) patients and studied the antimicrobial and antibiofilm activity of vitamin C on these bacteria.

RESULTS

Out of 117 study isolates, primarily identified as Escherichia coli (n = 52), Staphylococcus spp. (n = 19), and Klebsiella spp. (n = 46), 80 isolates exhibited a Multiple Antimicrobial Resistance (MAR) index greater than 0.2, classifying them as multi-drug resistant (MDR) superbugs. Among these, 58 isolates demonstrated moderate to strong biofilm-forming abilities and were selected for further experiments with vitamin C. The effective concentration of vitamin C inhibiting the growth of most E. coli and Klebsiella spp. isolates (90%) was estimated at 1.25 mg/ml and 2.5 mg/ml respectively, while for allStaphylococcus spp. isolates, it was 0.325 mg/ml. Vitamin C exhibited a notable anti-biofilm effect against the studied isolates, with biofilm prevention concentrations (BPC) of 0.625, 1.25, and 0.16 mg/ml for E. coli, Klebsiella spp., and Staphylococcus spp. isolates respectively. Furthermore, when combined with oxacillin or amoxicillin - drugs that were found ineffective, vitamin C significantly reduced the ability of MDR isolates to form biofilms, rendering them susceptible to the drugs' effects and restoring their efficacy. The expression of the recA gene, an early and quantifiable marker for the onset of the SOS response and biofilm production was downregulated after treatment of E. coli with vitamin C. Relative gene expression analysis revealed that ciprofloxacin-induced recA expression was significantly inhibited when MDR isolates of E. coli were treated with vitamin C at a concentration of 0.625 mg/ml, the BPC of vitamin C.

CONCLUSION

Our findings reveal that vitamin C, alone or in combination with ineffective antibiotics, attenuates biofilm formation and restores the susceptibility of multidrug-resistant (MDR) isolates to antimicrobial agents. This study underscores the promise of vitamin C as a non-lethal disruptor of biofilm-associated antimicrobial resistance.

CLINICAL TRIAL NUMBER

Not applicable.

摘要

背景

抗菌药物耐药性(AMR)对全球健康构成重大威胁,耐药菌形成的生物膜的保护机制使其进一步恶化。生物膜中细菌产生的细胞外聚合物(EPS)充当了强大的屏障,阻碍了抗菌药物的疗效。在此,我们研究了维生素C(抗坏血酸钠)破坏从糖尿病足溃疡(DFU)患者分离出的耐药菌生物膜形成的潜力,并研究了维生素C对这些细菌的抗菌和抗生物膜活性。

结果

在117株研究分离株中,主要鉴定为大肠杆菌(n = 52)、葡萄球菌属(n = 19)和克雷伯菌属(n = 46),80株分离株的多重抗菌耐药(MAR)指数大于0.2,将它们归类为多重耐药(MDR)超级细菌。其中,58株分离株表现出中度至强的生物膜形成能力,并被选择用于维生素C的进一步实验。抑制大多数大肠杆菌和克雷伯菌属分离株(90%)生长的维生素C有效浓度分别估计为1.25mg/ml和2.5mg/ml,而对于所有葡萄球菌属分离株,为0.325mg/ml。维生素C对所研究的分离株表现出显著的抗生物膜作用,大肠杆菌、克雷伯菌属和葡萄球菌属分离株的生物膜预防浓度(BPC)分别为0.625、1.25和0.16mg/ml。此外,当与发现无效的奥沙西林或阿莫西林联合使用时,维生素C显著降低了MDR分离株形成生物膜的能力,使其易受药物作用影响并恢复其疗效。recA基因的表达是SOS反应和生物膜产生开始的早期且可量化的标志物,用维生素C处理大肠杆菌后其表达下调。相对基因表达分析显示,当大肠杆菌的MDR分离株用维生素C的BPC浓度0.625mg/ml处理时,环丙沙星诱导的recA表达受到显著抑制。

结论

我们的研究结果表明,维生素C单独或与无效抗生素联合使用,可减弱生物膜形成并恢复多重耐药(MDR)分离株对抗菌药物的敏感性。本研究强调了维生素C作为生物膜相关抗菌耐药性的非致死性破坏剂的前景。

临床试验编号

不适用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0378/11992815/6afe26d9b61a/12866_2025_3800_Fig1_HTML.jpg

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