噬菌体介导的对医用植入物上多重耐药生物膜的抑制和清除作用评估
Assessment of Phage-Mediated Inhibition and Removal of Multidrug-Resistant Biofilm on Medical Implants.
作者信息
Amankwah Stephen, Adisu Mekonen, Gorems Kasahun, Abdella Kedir, Kassa Tesfaye
机构信息
School of Medical Laboratory Sciences, Jimma University, Jimma, Ethiopia.
Accra Medical Centre, Accra, Ghana.
出版信息
Infect Drug Resist. 2022 May 31;15:2797-2811. doi: 10.2147/IDR.S367460. eCollection 2022.
PURPOSE
Despite the growing interest in bacteriophage (phage) usage for the prevention, control, and removal of bacterial biofilms, few scientific data exist on phage applications on medical implant surfaces, while none exists on multiple implants. In this study, we aimed to isolate, biophysically characterize and assess phages as potential antibiofilm agents to inhibit and remove multidrug-resistant (MDR) biofilm on catheter and endotracheal tube surfaces.
METHODS
The well-identified stored clinical isolates (n = 7) of MDR were obtained from Jimma Medical Center. Specific phages were isolated and characterized based on standard protocols. The phages were tested for their antibiofilm effects in preventing colonization and removing preformed biofilms of MDR , following phage coating and treatment of catheter and endotracheal tube segments.
RESULTS
Two -specific phages (ΦJHS-PA1139 and ΦSMK-PA1139) were isolated from JMC compound sewage sources. The phages were biophysically characterized as being thermally stable up to 40°C and viable between pH 4.0 and 11.0. The two phages tested against clinical MDR strains of showed broad host ranges but not on other tested bacterial species. Both phages reduced MDR bacterial biofilms during the screening step. The phage-coated segments showed 1.2 log up to 3.2 log inhibition relative to non-coated segments following 6 h coating of segments prior to microbial load exposure. In both phages, 6 h treatment of the segments with 10 PFU/mL yielded 1.0 log up to 1.6 log reductions for ΦJHS and 1.6 log up to 2.4 log reductions for ΦSMK.
CONCLUSION
Our results suggest that phages have great potential to serve the dual purpose as surface coating agents for preventing MDR bacterial colonization in medical implants and as biofilm removal agents in implant-associated infections.
目的
尽管人们对利用噬菌体预防、控制和清除细菌生物膜的兴趣日益浓厚,但关于噬菌体在医用植入物表面应用的科学数据很少,而关于多种植入物的相关数据则不存在。在本研究中,我们旨在分离、对噬菌体进行生物物理特性表征,并评估其作为潜在抗生物膜剂抑制和清除导管及气管内插管表面多重耐药(MDR)生物膜的能力。
方法
从吉马医疗中心获取了经充分鉴定的7株MDR临床分离菌株。根据标准方案分离并表征特定噬菌体。在对导管和气管内插管段进行噬菌体包被和处理后,测试噬菌体在预防MDR菌定植和清除其预先形成的生物膜方面的抗生物膜效果。
结果
从吉马医疗中心的复合污水源中分离出两种特异性噬菌体(ΦJHS-PA1139和ΦSMK-PA1139)。这些噬菌体的生物物理特性表明,它们在高达40°C的温度下热稳定,在pH值4.0至11.0之间具有活性。针对临床MDR菌株测试的这两种噬菌体显示出广泛的宿主范围,但对其他测试细菌物种无此效果。在筛选步骤中,两种噬菌体均能减少MDR细菌生物膜。在暴露于微生物负荷之前,对插管段进行6小时包被后,与未包被的插管段相比,噬菌体包被的插管段显示出1.2至3.2个对数级的抑制。对于两种噬菌体,用10 PFU/mL处理插管段6小时,ΦJHS导致1.0至1.6个对数级的减少,ΦSMK导致1.6至2.4个对数级的减少。
结论
我们的结果表明,噬菌体具有巨大潜力,可同时作为表面包被剂用于预防医用植入物中的MDR细菌定植,并作为生物膜清除剂用于治疗植入物相关感染。
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