Department of Biology and Microbiology, Riga Stradins University, LV-1007 Riga, Latvia.
Department of Internal Diseases, Riga Stradins University, LV-1007 Riga, Latvia.
Viruses. 2023 May 20;15(5):1210. doi: 10.3390/v15051210.
There is considerable interest in the use of bacteriophages (phages) to treat infections associated with left ventricular assist devices (LVADs). These infections are often challenging to manage due to high rates of multidrug resistance and biofilm formation, which could potentially be overcome with the use of phages. We report a case of a 54-year-old man with relapsing multidrug-resistant LVAD driveline infection, who was treated with a combination of two lytic antipseudomonal phages administered intravenously and locally. Treatment was combined with LVAD driveline repositioning and systemic antibiotic administration, resulting in a successful outcome with clinical cure and eradication of the targeted bacteria. However, laboratory in vitro models showed that phages alone could not eradicate biofilms but could prevent biofilm formation. Phage-resistant bacterial strains evolved in biofilm models and showed decreased susceptibility to the phages used. Further studies are needed to understand the complexity of phage resistance and the interaction of phages and antibiotics. Our results indicate that the combination of phages, antibiotics, and surgical intervention can have great potential in treating LVAD-associated infections. More than 21 months post-treatment, our patient remains cured of the infection.
人们对利用噬菌体(phages)治疗与左心室辅助装置(LVADs)相关的感染产生了浓厚的兴趣。由于多药耐药和生物膜形成的发生率很高,这些感染通常难以治疗,而噬菌体的使用可能会克服这些问题。我们报告了一例 54 岁男性复发性多药耐药性 LVAD 驱动轴感染的病例,他接受了两种溶菌素抗假单胞菌噬菌体的联合治疗,这些噬菌体通过静脉内和局部途径给药。治疗方案结合了 LVAD 驱动轴重新定位和全身抗生素治疗,取得了成功的结果,临床治愈并根除了目标细菌。然而,实验室体外模型表明,噬菌体本身不能根除生物膜,但可以防止生物膜的形成。生物膜模型中出现了噬菌体耐药的细菌株,并且对使用的噬菌体的敏感性降低。需要进一步研究来了解噬菌体耐药的复杂性以及噬菌体和抗生素的相互作用。我们的结果表明,噬菌体、抗生素和手术干预的联合使用在治疗 LVAD 相关感染方面具有很大的潜力。治疗后超过 21 个月,我们的患者仍然治愈了感染。