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Calin, R.

Publications and source records attributed to Calin, R..

2 recordsLinked to original sources

Lytic bacteriophages active in urine against multi-drug resistant clinically derived Klebsiella pneumoniae causing urinary tract infection

ObjectivesMultidrug-resistant (MDR) Klebsiella pneumoniae is an increasingly important cause of recurrent urinary tract infections (UTIs), particularly in high-risk patients such as those with neurogenic bladder, where therapeutic options are limited. Bacteriophage therapy represents a promising alternative, but pre-clinical models and characterization of phages active against UTI-derived strains remain scarce. We therefore aimed to isolate and characterize bacteriophages targeting a clinical MDR K. pneumoniae strain causing recurrent UTI and evaluate their activity under urinary conditions. MethodsThree bacteriophages were isolated from environmental samples using an ESBL-producing K. pneumoniae clinical isolate obtained from a neurogenic bladder patient. Phages were characterized by genome sequencing, electron microscopy, stability assays, one-step growth curves, and host-range analysis across 79 clinical UTI isolates. Phage activity was quantified in LB medium and human urine using bacterial growth kinetics and a lytic activity score. ResultsThree lytic phages from the former siphoviridae family (EDIRA083, EDIRA088, and EDIRA092) belonging to distinct genera were identified. Genomic analysis confirmed the absence of lysogeny-associated, virulence, or antibiotic-resistance genes. Latent periods ranged from 8 to 40 minutes and burst sizes from 38 to 170 virions per infected bacterium. Host-range analysis revealed narrow activity for EDIRA083 and EDIRA088, whereas EDIRA092 infected 29% of the 79 clinical isolates tested. In liquid phage infection assays, overall lytic activity was consistently higher and more sustained in human urine than in LB, suggesting reduced fitness of resistant mutants under urinary conditions. ConclusionsThese results identify three genetically distinct lytic phages targeting MDR K. pneumoniae and highlight the importance of testing phage activity under infection-relevant conditions. Their activity in urine supports further evaluation of these phages as candidates for therapeutic development against MDR Klebsiella UTI.

microbiology↗

Oral OM-89 in combination with antibiotics prevents recurrent infection in a mouse model of urinary tract infection

Urinary tract infection (UTI) is a very common infection. Approximately 25% of all women will experience recurrent infection, defined by 2 UTI in 6 months or 3 UTI in a 12 month period. Recurrent infection is thought to be due in part to the development of local bacterial reservoirs in the bladder after an infection. These reservoirs are undetected by the host immune system and may re-emerge after resolution of the primary infection. Frequently, recurrent UTI require repeated antibiotic use, leading to the development of resistance, and negatively impacting the quality of life of the patient. Given the rise in multidrug resistant uropathogens, treatments that do not rely upon antibiotics are urgently needed for this patient population. We assessed the capacity of a lyophilized E. coli extract, OM-89(R), as a preventive measure to reduce the incidence of spontaneous recurrence in a mouse cystitis model. Administration of OM-89 per os after the initiation of an acute UTI significantly reduced the number of spontaneous recurrent UTI in female mice over a 1 month follow-up period only when the animals were also treated with antibiotics. Protection against recurrent UTI arose quickly and without changes in any adaptive immune response parameter measured, ruling out a role for OM-89 in augmenting adaptive immunity to protect against spontaneous recurrent UTI in the first month of use.

immunology↗