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Research Article

Antimicrobial resistance pattern and uropathogens distribution in children visiting a referral hospital in Mogadishu

ORCID Icon, , , , &
Article: FSO978 | Received 26 Nov 2023, Accepted 14 Feb 2024, Published online: 16 Apr 2024

References

  • Bitew A, Zena N, Abdeta A. Bacterial and fungal profile, antibiotic susceptibility patterns of bacterial pathogens and associated risk factors of urinary tract infection among symptomatic pediatrics patients attending St. Paul's Hospital Millennium Medical College: a cross-sectiona. Infect. Drug Resist. 15, 1613–1624 (2022).
  • Clark CJ, Kennedy WA, Shortliffe LD. Urinary tract infection in children: when to worry. Urol. Clin. North Am. 37(2), 229–241 (2010).
  • Almatrafi MA, Sindi L, Alshehri M et al. Parental knowledge and awareness of childhood urinary tract infections: a cross sectional survey. Patient Prefer. Adherence 16, 2423–2430 (2022).
  • Albarrak M, Alzomor O, Almaghrabi R et al. Diagnosis and management of community-acquired urinary tract infection in infants and children: clinical guidelines endorsed by the Saudi Pediatric Infectious Diseases Society (SPIDS). Int. J. Pediatr. Adolesc. Med. 8(2), 57–67 (2021).
  • Mattoo TK, Shaikh N, Nelson CP. Contemporary management of urinary tract infection in children. Pediatrics 147(2), 1–12 (2021).
  • Renko M, Salo J, Ekstrand M et al. Meta-analysis of the risk factors for urinary tract infection in children. Pediatr. Infect. Dis. J. 41(10), 787–792 (2022).
  • Ganesh R, Shrestha D, Bhattachan B, Rai G. Epidemiology of urinary tract infection and antimicrobial resistance in a pediatric hospital in Nepal. BMC Infect. Dis. 19(1), 1–5 (2019).
  • Mohamed AH, Omar NMS, Osman MM, Mohamud HA, Eraslan A, Gur M. Antimicrobial resistance and predisposing factors associated with catheter-associated UTI caused by uropathogens exhibiting multidrug-resistant patterns: a 3-year retrospective study at a tertiary hospital in Mogadishu, Somalia. Trop. Med. Infect. Dis. 7(3), 1–9 (2022).
  • Yahya M, Azba S, Al-Hayali M. Effect of antibiotic misuse on the emergence of microbial resistance among urologic patients. Iraqi J. Pharm. 18(1), 44–56 (2021).
  • Humphries RM et al. CLSI methods development and standardization working group best practices for evaluation of antimicrobial susceptibility tests. J. Clin. Microbiol. 56(4), 10–1128 (2018).
  • Malik T, Naim A. Occurrence of ESBLs in clinical isolates of Klebsiella species and comparative analysis of phenotypic detection methods. Anti-Infect. Agents 18(3), 255–260 (2020).
  • Fenta A, Dagnew M, Eshetie S, Belachew T. Bacterial profile, antibiotic susceptibility pattern and associated risk factors of urinary tract infection among clinically suspected children attending at Felege-Hiwot comprehensive and specialized hospital, Northwest Ethiopia. A prospective study. BMC Infect. Dis. 20(1), 1–10 (2020).
  • Fredrick F, Francis JM, Fataki M, Maselle SY. Aetiology, antimicrobial susceptibility and predators of urinary tract infection among febrile under-fives. Afr. J. Microbiol. Res. 7(12), 1029–1034 (2013).
  • Amin EK et al. Incidence, risk factors and causative bacteria of urinary tract infections and their antimicrobial sensitivity patterns in toddlers and children: a report from two tertiary care hospitals. Saudi J, Kidney Dis. Transplant. 31(1), 200–208 (2020).
  • Dramowski A, Whitelaw A, Cotton MF. Burden, spectrum and impact of healthcare-associated infection at a South African children's hospital. J. Hosp. Infect. 94(4), 364–372 (2016).
  • Masika WG, O'Meara WP, Holland TL, Armstrong J. Contribution of urinary tract infection to the burden of febrile illnesses in young children in rural Kenya. PLOS ONE 12(3), 1–13 (2017).
  • Mitiku E, Amsalu A, Tadesse BT. Pediatric urinary tract infection as a cause of outpatient clinic visits in Southern Ethiopia: a cross sectional study. Ethiop. J. Health Sci. 28(2), 187–196 (2018).
  • Belete Y, Asrat D, Woldeamanuel Y, Yihenew G, Gize A. Bacterial profile and antibiotic susceptibility pattern of urinary tract infection among children attending Felege-Hiwot Referral Hospital, Bahir Dar, Northwest Ethiopia. Infect Drug Resist. 12, 3575–3583 (2019).
  • Mouanga-Ndzime Y et al. Epidemiology of community origin of major multidrug-resistant ESKAPE uropathogens in a paediatric population in South-East Gabon. Antimicrob. Resist. Inf. Control 12(1), 47 (2023).
  • Shrestha LB, Baral R, Poudel P, Khanal B. Clinical, etiological and antimicrobial susceptibility profile of pediatric urinary tract infections in a tertiary care hospital of Nepal. BMC Pediatr. 19(1), 1–8 (2019).
  • Vazouras K, Velali K, Tassiou I et al. Antibiotic treatment and antimicrobial resistance in children with urinary tract infections. J. Glob. Antimicrob. Resist. 20, 4–10 (2020).
  • Goodarzi R, Yousefimashouf R, Sedighi I, Moradi A, Nouri F, Taheri M. Detection of adhesion encoding genes, antibacterial susceptibility and biofilm formation of uropathogenic Escherichia coli isolated from urinary tract infections in children. J. Adv. Med. Biomed. Res. 30(138), 47–53 (2022).
  • Tang KW, Millar BC, Moore JE. Antimicrobial resistance (AMR). Br. J. Biomed. Sci. 80, 11387 (2023).
  • Adam KE, Bruce A. Consumer preferences and attitudes towards antibiotic use in food animals. Antibiotics 12(10), 1545 (2023).
  • World Health Organization. Antimicrobial resistance surveillance in Europe 2022–2020 data. https://www.bing.com/ck/a?!&&p=65193b159045899dJmltdHM9MTcwODU2MDAwMCZpZ3VpZD0zM2YzNzA1Ni1hMDU2LTY5NWItMmQ5Ni02MWIwYTE0YzY4NjcmaW5zaWQ9NTE3OQ&ptn=3&ver=2&hsh=3&fclid=33f37056-a056-695b-2d96-61b0a14c6867&psq=World+Health+Organization.+%22Antimicrobial+resistance+surveillance+in+Europe+2022%e2%80%932020+data.%22+(2022).&u=a1aHR0cHM6Ly93d3cud2hvLmludC9ldXJvcGUvcHVibGljYXRpb25zL2kvaXRlbS85Nzg5Mjg5MDU2Njg3&ntb=1
  • Murray CJ, Ikuta KS, Sharara F et al. Global burden of bacterial antimicrobial resistance in 2019: a systematic analysis. Lancet 399(10325), 629–655 (2022).
  • O'Neill J. Review on antimicrobial resistance. tackling drug-resistant infections globally (2016). Available from: https://amr-review.org/sites/default/files/160525_Final%20paper_with%20cover.pdf ( Accessed March 21, 2023).
  • Mohamed AH, Mohamud MF, Mohamud HA. Epidemiology and antimicrobial susceptibility pattern of uropathogens in patients with the community-and hospital-acquired urinary tract infections at a tertiary hospital in Somalia. Jundishapur J. Microbiol. 13(9), 1–7 (2020).
  • Godman B, Egwuenu A, Haque M et al. Strategies to improve antimicrobial utilization with a special focus on developing countries. Life. 11(6), 528 (2021).
  • Klein EY, Van Boeckel TP, Martinez EM et al. Global increase and geographic convergence in antibiotic consumption between 2000 and 2015. Proc. Natl Acad. Sci. USA 115, E3463–E3470 (2018).
  • Sriram A, Kalanxhi E, Kapoor G et al. State of the World's Antibiotics 2021: A Global Analysis of Antimicrobial Resistance and Its Drivers. Center for Disease Dynamics, Economics & Policy, Washington, DC. Available online: https://cddep.org/wp-content/uploads/2021/02/The-State-of-the-Worlds-Antibiotics-in-2021.pdf ( Accessed on 10 May 2021).
  • Llor C, Bjerrum L. Antimicrobial resistance: risk associated with antibiotic overuse and initiatives to reduce the problem. Adv. Drug Saf. 5, 229–241 (2014).
  • Morel CM, Alm RA, Årdal C et al. A one health framework to estimate the cost of anti-microbial resistance. Antimicrob. Resist. Infect. Control 9, 187 (2020).
  • Oliveira EA, Mak RH. Urinary tract infection in pediatrics: an overview. J. de Pediat. 96, 65–79 (2020).
  • Wagenlehner FM, Bjerklund Johansen TE, Cai T et al. Epidemiology, definition and treatment of complicated urinary tract infections. Nat. Rev. Urol. 17(10), 586–600 (2020).