Characterization of Extended Spectrum Beta-lactamase and Carbapenamase Producing Enterobacteriaceae Causing Urinary Tract Infection among Children in Kenya: A Cross-Sectional Study — Oak Academic Publishing
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Characterization of Extended Spectrum Beta-lactamase and Carbapenamase Producing Enterobacteriaceae Causing Urinary Tract Infection among Children in Kenya: A Cross-Sectional Study
Department of Microbiology, Jomo Kenyatta University of Agriculture and Technology, Juja, Kenya
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Gertrude’s Children’s Hospital, Nairobi, Kenya
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Department of Microbiology, Jomo Kenyatta University of Agriculture and Technology, Juja, Kenya
1 Department of Microbiology, Jomo Kenyatta University of Agriculture and Technology, Juja, Kenya
2 Gertrude’s Children’s Hospital, Nairobi, Kenya
3 Department of Microbiology, Jomo Kenyatta University of Agriculture and Technology, Juja, Kenya
Introduction: Enterobacteriaceae causing urinary tract infections (UTI) have developed resistance to the commonly used antibiotics due to emergence of Extended Spectrum Beta-Lactamases (ESBLs) and Carbapenamase producing Enterobactericeae which are a public health problem worldwide. This study aims to determine the prevalence and characterize ESBLs and carbapenamase producing Enterobactericeae. Method: A cross-sectional study was carried out in Gertrude’s Children’s Hospital, Nairobi. 238 urine samples were collected from patients with urinary symptoms attending the outpatient department within the period 2020-2021. The urine were examined macroscopically and microscopically. Identification and antimicrobial susceptibility testing were done using VITEK® 2 Compact system (BioMérieux). Double disc synergy test and modified hodge tests were done as confirmatory tests for ESBLs and Carbapenamase phenotypes respectively. Polymerase Chain Reaction was used for the detection of bla CTX-M , bla TEM , bla SHV , bla KPC and bla OXA-48 genes. Results: From the 238 children sampled the prevalence of UTI caused by Enterobactericeae was 22.3%. The Enterobacteriaceae species isolated were Escherichia coli (84.9%) , Klebsiella pneumoniae (5.66%) , Proteus mirabillis (5.66%) , Enterobacter aerogenes (1.89%) and Morganella morganii (1.89%). The isolated species were resistant to ampicillin. Meropenem had the highest susceptibility. Only E. coli species had the ESBLs (26.4%) and carbapenamase (1.9%) phenotypes. 100% had Bla CTX-M while 50% had bla TEM resistant gene. There was a significant association (p Conclusion: Ampicillin resistance resulted to use of alternative drugs and Meropenem was the drug of choice where increased resistance to the recommended drugs was noted. Further research on resistant genes is recommended.
Kaufman, J., Temple-Smith, M. and Sanci, L. (2019) Urinary Tract Infections in Children: An Overview of Diagnosis and Management. BMJ Paediatrics Open , 3, e000487. https://doi.org/10.1136/bmjpo-2019-000487
Simões e Silva, A.C., Oliveira, E.A. and Mak, R.H. (2020) Urinary Tract Infection in Pediatrics: An Overview. Jornal de Pediatria , 96, 65-79. https://doi.org/10.1016/j.jped.2019.10.006
Jayaweera, J.A.A.S. and Reyes, M. (2018) Retracted Article: Antimicrobial Misuse in Pediatric Urinary Tract Infections: Recurrences and Renal Scarring. Annals of Cli n ical Microbiology and Antimicrobials , 17, Article No. 27. https://doi.org/10.1186/s12941-018-0279-4
Yuste Ara, J.R., del Pozo, J.L. and Carmona-Torre, F. (2018) Infecciones del tracto urinario. Medicine — Programa de Formación Médica Continuada Acreditado , 12, 3020-3030. https://doi.org/10.1016/j.med.2018.03.004
Prah, J.K., Amoah, S., Ocansey, D.W., Arthur, R., Walker, E. and Obiri-Yeboah, D. (2019) Evaluation of Urinalysis Parameters and Antimicrobial Susceptibility of Uropathogens among Out-Patients at University of Cape Coast Hospital. Ghana Medical Journal , 53, 44-51. https://doi.org/10.4314/gmj.v53i1.7
Gondim, R., Azevedo, R., Braga, A.A.N.M., Veiga, M.L. and Barroso Jr., U. (2018) Risk Factors for Urinary Tract Infection in Children with Urinary Urgency. Inte r national braz j urol , 44, 378-383. https://doi.org/10.1590/s1677-5538.ibju.2017.0434
Öztürk, R. and Murt, A. (2020) Epidemiology of Urological Infections: A Global Burden. World Journal of Urology , 38, 2669-2679. https://doi.org/10.1007/s00345-019-03071-4
Bush, K. (2018) Past and Present Perspectives on β-Lactamases Karen Bush. Ant i microb Agents Chemother , 62, 1-20. https://doi.org/10.1128%2FAAC.01076-18
Eltai, N.O., Al Thani, A.A., Al-Ansari, K., Deshmukh, A.S., Wehedy, E., Al-Hadidi, S.H., et al . (2018) Molecular Characterization of Extended Spectrum β -Lactamases Enterobacteriaceae Causing Lower Urinary Tract Infection among Pediatric Population. Antimicrobial Resistance & Infection Control , 7, Article No. 90. https://doi.org/10.1186/s13756-018-0381-6
Gondal, A.J., Saleem, S., Jahan, S., Choudhry, N. and Yasmin, N. (2020) Novel Carbapenem-Resistant Klebsiella pneumoniae ST147 Coharboring bla NDM-1 , bla OXA-48 and Extended-Spectrum β -Lactamases from Pakistan. Infection and Drug Resi s tance , 13, 2105-2115. https://doi.org/10.2147/idr.s251532
Gonzalez, M., Salmon, A., Garcia, S., Arana, E., Mintegi, S. and Benito, J. (2019) Prevalence of Urinary Tract Infection in Infants with High Fever in the Emergency Department. Anales de Pediatría ( English Edition ), 91, 386-393. https://doi.org/10.1016/j.anpede.2019.06.001
Escherichia coli
Ganesh, R., Shrestha, D., Bhattachan, B. and Rai, G. (2019) Epidemiology of Urinary Tract Infection and Antimicrobial Resistance in a Pediatric Hospital in Nepal. BMC Infectious Diseases , 19, Article No. 420. https://doi.org/10.1186/s12879-019-3997-0
Agegnehu, A., Worku, M., Nigussie, D., Lulu, B. and Tadesse, B.T. (2020) Pediatric Febrile Urinary Tract Infection Caused by ESBL Producing Enterobacteriaceae Species. BioMed Research International , 2020, Article ID: 6679029. https://doi.org/10.1155/2020/6679029
Legese, M.H., Weldearegay, G.M. and Asrat, D. (2017) Extended-Spectrum β -Lactamase-and Carbapenemase-Producing Enterobacteriaceae among Ethiopian Children. Infection and Drug Resistance , 10, 27-34. https://doi.org/10.2147/idr.s127177
Mahony, M., McMullan, B., Brown, J. and Kennedy, S.E. (2019) Multidrug-resistant Organisms in Urinary Tract Infections in Children. Pediatric Nephrology , 35, 1563-1573. https://doi.org/10.1007/s00467-019-04316-5
Masika, W.G., O’Meara, W.P., Holland, T.L. and Armstrong, J. (2017) Contribution of Urinary Tract Infection to the Burden of Febrile Illnesses in Young Children in Rural Kenya. PLOS ONE , 12, e0174199. https://doi.org/10.1371/journal.pone.0174199
Sarowska, J., Futoma-Koloch, B., Jama-Kmiecik, A., Frej-Madrzak, M., Ksiazczyk, M., Bugla-Ploskonska, G., et al . (2019) Virulence Factors, Prevalence and Potential Transmission of Extraintestinal Pathogenic Escherichia Coli Isolated from Different Sources: Recent Reports. Gut Pathogens , 11, Article No. 10. https://doi.org/10.1186/s13099-019-0290-0
Danilo de Oliveira, W., Lopes Barboza, M.G., Faustino, G., Yamanaka Inagaki, W.T., Sanches, M.S., Takayama Kobayashi, R.K., et al . (2021) Virulence, Resistance and Clonality of Proteus Mirabilis Isolated from Patients with Community-Acquired Urinary Tract Infection (CA-UTI) in Brazil. Microbial Pathogenesis , 152, Article ID: 104642. https://doi.org/10.1016/j.micpath.2020.104642
Behera, D.U., Dixit, S., Gaur, M., Mishra, R., Sahoo, R.K., Sahoo, M., et al . (2023) Sequencing and Characterization of M. Morganii Strain UM869: A Comprehensive Comparative Genomic Analysis of Virulence, Antibiotic Resistance, and Functional Pathways. Genes , 14, Article 1279. https://doi.org/10.3390/genes14061279
Villegas, M.V. (2017) Enterobacter Species—Infectious Disease and Antimicrobial Agents. http://www.antimicrobe.org/b97.asp
Belete, Y., Asrat, D., Woldeamanuel, Y., Yihenew, G. and Gize, A. (2019) bacterial Profile and Antibiotic Susceptibility Pattern of Urinary Tract Infection among Children Attending Felege Hiwot Referral Hospital, Bahir Dar, Northwest Ethiopia. Infection and Drug Resistance , 12, 3575-3583. https://doi.org/10.2147/idr.s217574
Esposito, S., Biasucci, G., Pasini, A., Predieri, B., Vergine, G., Crisafi, A., et al . (2022) Antibiotic Resistance in Paediatric Febrile Urinary Tract Infections. Journal of Global Antimicrobial Resistance , 29, 499-506. https://doi.org/10.1016/j.jgar.2021.11.003
Mitiku, E., Amsalu, A. and Tadesse, B.T. (2018) Pediatric Urinary Tract Infection as a Cause of Outpatient Clinic Visits in Southern Ethiopia: A Cross Sectional Study. Ethiopian Journal of Health Sciences , 28, 187-196. https://doi.org/10.4314/ejhs.v28i2.10
Djim-Adjim-Ngana, K., Oumar, L.A., Mbiakop, B.W., Munshili Njifon, H.L., Crucitti, T., Nchiwan, E.N., et al . (2020) Prevalence of Extended-Spectrum β -Lactamase-Producing Enterobacterial Urinary Infections and Associated Risk Factors in Small Children of Garoua, Northern Cameroon. Pan African Medical Journal , 36, Article 157. https://doi.org/10.11604/pamj.2020.36.157.21347
Raman, G., McMullan, B., Taylor, P., Mallitt, K. and Kennedy, S.E. (2017) Multiresistant E. coli Urine Infections in Children: A Case-Control Study. Archives of Di s ease in Childhood , 103, 336-340. https://doi.org/10.1136/archdischild-2017-312831
Ouchar Mahamat, O., Lounnas, M., Hide, M., Dumont, Y., Tidjani, A., Kamougam, K., et al . (2019) High Prevalence and Characterization of Extended-Spectrum Ss-Lactamase Producing Enterobacteriaceae in Chadian Hospitals. BMC Infectious Diseases , 19, Article No. 205. https://doi.org/10.1186/s12879-019-3838-1
Hasan, S.M. and Ibrahim, K.S. (2022) Molecular Characterization of Extended Spectrum β -Lactamase (ESBL) and Virulence Gene-Factors in Uropathogenic Escherichia coli (UPEC) in Children in Duhok City, Kurdistan Region, Iraq. Ant i biotics , 11, Article 1246. https://doi.org/10.3390/antibiotics11091246