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Article

In Vitro and In Vivo Assessments of Newly Isolated N4-like Bacteriophage against ST45 K62 Capsular-Type Carbapenem-Resistant Klebsiella pneumoniae: vB_kpnP_KPYAP-1

by
Shanmuga Priya Natarajan
1,†,
Soon-Hian Teh
2,†,
Ling-Chun Lin
1,* and
Nien-Tsung Lin
1,*
1
Master Program in Biomedical Sciences, School of Medicine, Tzu Chi University, No. 701, Sec. 3, Zhongyang Rd., Hualien 97004, Taiwan
2
Division of Infectious Diseases, Department of Internal Medicine, Hualien Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation, No. 707, Sec. 3, Zhongyang Rd., Hualien 97004, Taiwan
*
Authors to whom correspondence should be addressed.
These authors contributed equally to this work.
Int. J. Mol. Sci. 2024, 25(17), 9595; https://doi.org/10.3390/ijms25179595
Submission received: 22 July 2024 / Revised: 26 August 2024 / Accepted: 31 August 2024 / Published: 4 September 2024

Abstract

The rise of carbapenem-resistant Klebsiella pneumoniae (CRKP) presents a significant global challenge in clinical and healthcare settings, severely limiting treatment options. This study aimed to utilize a bacteriophage as an alternative therapy against carbapenem-resistant K. pneumoniae. A novel lytic N4-like Klebsiella phage, vB_kpnP_KPYAP-1 (KPYAP-1), was isolated from sewage. It demonstrated efficacy against the K62 serotype polysaccharide capsule of blaOXA-48-producing K. pneumoniae. KPYAP-1 forms small, clear plaques, has a latent period of 20 min, and reaches a growth plateau at 35 min, with a burst size of 473 plaque-forming units (PFUs) per infected cell. Phylogenetic analysis places KPYAP-1 in the Schitoviridae family, Enquatrovirinae subfamily, and Kaypoctavirus genus. KPYAP-1 employs an N4-like direct terminal repeat mechanism for genome packaging and encodes a large virion-encapsulated RNA polymerase. It lacks integrase or repressor genes, antibiotic resistance genes, bacterial virulence factors, and toxins, ensuring its safety for therapeutic use. Comparative genome analysis revealed that the KPYAP-1 genome is most similar to the KP8 genome, yet differs in tail fiber protein, indicating variations in host recognition. In a zebrafish infection model, KPYAP-1 significantly improved the survival rate of infected fish by 92% at a multiplicity of infection (MOI) of 10, demonstrating its potential for in vivo treatment. These results highlight KPYAP-1 as a promising candidate for developing phage-based therapies targeting carbapenemase-producing K. pneumoniae.
Keywords: carbapenemase-producing Klebsiella pneumoniae; carbapenemase genes; capsular type; N4-like phage; phage therapy carbapenemase-producing Klebsiella pneumoniae; carbapenemase genes; capsular type; N4-like phage; phage therapy

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MDPI and ACS Style

Natarajan, S.P.; Teh, S.-H.; Lin, L.-C.; Lin, N.-T. In Vitro and In Vivo Assessments of Newly Isolated N4-like Bacteriophage against ST45 K62 Capsular-Type Carbapenem-Resistant Klebsiella pneumoniae: vB_kpnP_KPYAP-1. Int. J. Mol. Sci. 2024, 25, 9595. https://doi.org/10.3390/ijms25179595

AMA Style

Natarajan SP, Teh S-H, Lin L-C, Lin N-T. In Vitro and In Vivo Assessments of Newly Isolated N4-like Bacteriophage against ST45 K62 Capsular-Type Carbapenem-Resistant Klebsiella pneumoniae: vB_kpnP_KPYAP-1. International Journal of Molecular Sciences. 2024; 25(17):9595. https://doi.org/10.3390/ijms25179595

Chicago/Turabian Style

Natarajan, Shanmuga Priya, Soon-Hian Teh, Ling-Chun Lin, and Nien-Tsung Lin. 2024. "In Vitro and In Vivo Assessments of Newly Isolated N4-like Bacteriophage against ST45 K62 Capsular-Type Carbapenem-Resistant Klebsiella pneumoniae: vB_kpnP_KPYAP-1" International Journal of Molecular Sciences 25, no. 17: 9595. https://doi.org/10.3390/ijms25179595

APA Style

Natarajan, S. P., Teh, S.-H., Lin, L.-C., & Lin, N.-T. (2024). In Vitro and In Vivo Assessments of Newly Isolated N4-like Bacteriophage against ST45 K62 Capsular-Type Carbapenem-Resistant Klebsiella pneumoniae: vB_kpnP_KPYAP-1. International Journal of Molecular Sciences, 25(17), 9595. https://doi.org/10.3390/ijms25179595

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