Isolation and Characterization of Lytic Bacteriophages Targeting Clinical Staphylococcus Other Than S. aureus

Staphylococcus spp., other than S. aureus (SOSA, formerly CoNS), are opportunistic pathogens often linked to biofilm infections on indwelling devices. Their rising antibiotic resistance highlights the need for novel therapies. Bacteriophages are promising due to their specificity and ability to inhibit cell growth and biofilm formation. In this study, lytic phages isolated from swab pools were characterized against six clinical S. epidermidis and S. warneri isolates. Two distinct groups were identified via their host range, transmission electron microscopy, and genome sequencing. Group 1 phage ΘBRJ9 belongs to genus Sepunavirus (Myoviridae), while Group 2 phage ΘBRJ18 belongs to genus Andhravirus (Podoviridae). Both showed rapid adsorption, short latent periods (20 min), and high burst sizes (79 and 60 PFU/cell). They strongly inhibited planktonic SOSA growth at MOI 10, with efficacy comparable to or better than vancomycin, and their genomes lacked lysogeny, virulence, or resistance genes. These phages display a lytic lifestyle and are candidates for targeted SOSA therapies. Future work will assess biofilm efficacy, antibiotic synergies, and in vivo performance.

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Publication Details

Journal
Letters in Applied Microbiology
Published
2026-09-17
DOI
https://doi.org/10.1093/lambio/ovag082
Primary Topic
Bacteriophages and microbial interactions
Type
article
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article

Isolation and Characterization of Lytic Bacteriophages Targeting Clinical Staphylococcus Other Than S. aureus

Luis Felipe Jiménez‐García, Daniel Huelgas‐Méndez, Felipe Vaca‐Paniagua, Ana María Fernández-Presas et al.
Letters in Applied Microbiology
Bacteriophages and microbial interactions
article

Isolation and Characterization of Lytic Bacteriophages Targeting Clinical Staphylococcus Other Than S. aureus

Luis Felipe Jiménez‐García, Daniel Huelgas‐Méndez, Felipe Vaca‐Paniagua, Ana María Fernández-Presas, Rafael Franco‐Cendejas, Luis Esaú López-Jácome, Clara Estela Díaz-Velásquez, Thomas K. Wood, J. Guillermo Jiménez-Cortés, Reyna Lara‐Martínez, Altaf Khan, Jossue Ortíz‐Álvarez, Luis Enrique Jiménez-Camacho, Frederic Cadet, Fahad Mabood Hussein, Victoria Abigail Sánchez-Herrera, Gerardo Antonio Romero-Borja, Rodolfo García-Contreras
article en

Abstract

Staphylococcus spp., other than S. aureus (SOSA, formerly CoNS), are opportunistic pathogens often linked to biofilm infections on indwelling devices. Their rising antibiotic resistance highlights the need for novel therapies. Bacteriophages are promising due to their specificity and ability to inhibit cell growth and biofilm formation. In this study, lytic phages isolated from swab pools were characterized against six clinical S. epidermidis and S. warneri isolates. Two distinct groups were identified via their host range, transmission electron microscopy, and genome sequencing. Group 1 phage ΘBRJ9 belongs to genus Sepunavirus (Myoviridae), while Group 2 phage ΘBRJ18 belongs to genus Andhravirus (Podoviridae). Both showed rapid adsorption, short latent periods (20 min), and high burst sizes (79 and 60 PFU/cell). They strongly inhibited planktonic SOSA growth at MOI 10, with efficacy comparable to or better than vancomycin, and their genomes lacked lysogeny, virulence, or resistance genes. These phages display a lytic lifestyle and are candidates for targeted SOSA therapies. Future work will assess biofilm efficacy, antibiotic synergies, and in vivo performance.

Letters in Applied Microbiology
Universidad Autónoma de Tlaxcala (MX), Pennsylvania State University (US), King Saud University (SA), Hospital Angeles Clinica Londres (MX), Secretaría de Ciencia Tecnología e Innovación (MX), Centre for Artificial Intelligence and Robotics (IN), Instituto Nacional de Rehabilitación (MX), Universidad Nacional Autónoma de México (MX)
Openalex Percentile: Top 11%
Bacteriophages and microbial interactions
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