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Genotypic Detection Of Antibiotic-Resistant Genes In Emerging Bacterial Pathogens From Neonatal Sepsis Patients In Lagos

Adegboyega, H. O.; Banjo, T. A.; Deji-Agboola, A. M.; Iwalokun, B.; Mutiu, W. B.; Osinupebi, O. A.; Shorunmu, T. O.; Oladoja, F. A.; Fatungase, O. M.; Adeyanju, M. M.; Akindele, R. A.; Fakunle, P. B.; Olabode, B. A.; Ajayi, O. O.; Onadeko, O.; Oyelekan, A. A. A.; Oritogun, K. S.; Ariyibi, S. O.; Omirin, E. S.

2025-06-02 microbiology Community evaluation
10.1101/2025.06.02.657359 bioRxiv
Show abstract

High-risk neonatal sepsis resulting in up to four million infants mortality and organ damages during the first 28 days of life predominates in low-income countries. We investigated genotypic antibiotic-resistant genes in emerging bacterial pathogens from newborn sepsis cases in Lagos. A cross-sectional study of 294 at-risk hospitalised newborns in prominent paediatrics hospitals throughout three senatorial districts of Lagos utilised the socio-demographic data of their mothers and informed consents. We aseptically collected approximately 3 mL of venous blood from neonates, subsequently isolated and identified the associated bacteria using agar culture on Mueller Hinton agar. To evaluate the antibiotic resistance genes, we used Kirby-Bauer disc diffusion technique; MICROBACTTM Identification System and molecular techniques including PCR, RAPD-PCR, sequencing and docking. From 294 patient samples, 110 (37.4%) were cultured positive, with men (47%), females (53%), ages [≤] 72 hours (71.8%), and ages > 72 hours (28.1%). Klebsiella pneumoniae, K. oxytoca, Enterobacter gergoviae, Serratia rubidiae, Escherichia coli, and Cronobacter sakazakii were the involved Gram- negative bacteria, whereas Coagulase-negative Staphylococci, Staphylococcus aureus, and Enterococcus faecalis were the involved Gram-positive bacteria. Fourteen (12.7%) positive bacteria were resistant to only three antibiotic classes, whereas 73 (66.4%) were resistant to over three antibiotics. Antibiotic- resistant genes bla-CTX, bla-SHV, and bla-TEM were found in Serratia rubidiae and Enterobacter gergoviae, unusual aetiology of newborn sepsis. Molecular docking proved Meropenems antibacterial effectiveness. The identified antimicrobial-resistant genes are crucial for improved patient management, as high- resistance strains of ampicillin, gentamicin, and cefotaxime remain ineffective against bacterial sepsis, leaving Meropenem as the sole feasible therapeutic option.

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