562
Views
4
CrossRef citations to date
0
Altmetric
Original Research

Antibiogram Profiles of Bacteria Isolated from Different Body Site Infections Among Patients Admitted to GAMBY Teaching General Hospital, Northwest Ethiopia

, ORCID Icon, , , ORCID Icon, ORCID Icon & show all
Pages 2225-2232 | Published online: 15 Jun 2021

References

  • Naylor NR, Atun R, Zhu N, et al. Estimating the burden of antimicrobial resistance: a systematic literature review. Antimicrob Resist Infect Control. 2018;7(1):58. doi:10.1186/s13756-018-0336-y29713465
  • Aftab F Antibiotics as controlled medicines; 2016 [ cited September 21, 2020]. Available from: https://www.duo.uio.no/handle/10852/55030. Accessed 520, 2021.
  • Tanwar J, Das S, Fatima Z, et al. Multidrug resistance: an emerging crisis. Interdiscip Perspect Infect Dis. 2014;2014:2014. doi:10.1155/2014/541340
  • Ventola CL. The antibiotic resistance crisis: part 1: causes and threats. Pharm Ther. 2015;40(4):277.
  • Mazel D, Mobashery S. Antibiotics as physiological stress inducers and bacterial response to the challenge. Curr Opin Microbiol. 2012. doi:10.1016/j.mib.2012.09.002
  • Stone GS, Mitton J, Kenney J, et al. Global Health Informatics: Principles of eHealth and mHealth to Improve Quality of Care. MIT Press; 2017.
  • Lopez AD, Mathers CD, Ezzati M, et al. Global Burden of Disease and Risk Factors. The World Bank; 2006.
  • Shih JD, Wood LSY, Dambkowski CL, et al. An in vitro bacterial surface migration assay underneath sterile barrier material commonly found in a hospital setting. J Perinatol. 2017;37(7):848–852. doi:10.1038/jp.2017.2828333156
  • Schiavetti B, Wynendaele E, De Spiegeleer B. CIOMS Guide to vaccine safety communication. WHO Drug Inf. 2018;32(1).
  • Pokharel S, Raut S, Adhikari B. Tackling antimicrobial resistance in low-income and middle-income countries. BMJ Glob Health. 2019;4(6):e002104. doi:10.1136/bmjgh-2019-002104
  • Holmstrup P, Klausen B. The growing problem of antimicrobial resistance. Oral Dis. 2018;24(3):291–295. doi:10.1111/odi.1261027860048
  • Tse-Dinh Y-C. Targeting bacterial topoisomerase I to meet the challenge of finding new antibiotics. Future Med Chem. 2015;7(4):459–471. doi:10.4155/fmc.14.15725875873
  • Bantie GM, Meseret Z, Bedimo M, et al. The prevalence and root causes of delay in seeking healthcare among mothers of under five children with pneumonia in hospitals of Bahir Dar city, North West Ethiopia. BMC Pediatr. 2019;19(1):482. doi:10.1186/s12887-019-1869-931815630
  • Fisha K, Azage M, Mulat G, et al. The prevalence and root causes of surgical site infections in public versus private hospitals in Ethiopia: a retrospective observational cohort study. Patient Saf Surg. 2019;13(1):26. doi:10.1186/s13037-019-0206-431333761
  • Reller LB, Weinstein M, Jorgensen JH, et al. Antimicrobial susceptibility testing: a review of general principles and contemporary practices. Clin Infect Dis. 2009;49(11):1749–1755. doi:10.1086/64795219857164
  • Ullah A, Shah SRH, Almugadam BS, et al. Prevalence of symptomatic urinary tract infections and antimicrobial susceptibility patterns of isolated uropathogens in kohat region of Pakistan. MOJ Biol Med. 2018;3(4):85–89. doi:10.15406/mojbm.2018.03.00082
  • Tenover FC, Moellering RC. The rationale for revising the clinical and laboratory standards institute vancomycin minimal inhibitory concentration interpretive criteria for Staphylococcus aureus. Clin Infect Dis. 2007;44(9):1208–1215. doi:10.1086/51320317407040
  • Rey DA, Bodner M, Marsden J. Mechanisms of antimicrobial susceptibility. Google Patents. 2019.
  • Lalitha MK. Manual on antimicrobial susceptibility testing. Perform Stand Antimicrob Test Twelfth Informational Suppl. 2004;56238:454–456.
  • Rossi F. The challenges of antimicrobial resistance in Brazil. Clin Infect Dis. 2011;52(9):1138–1143. doi:10.1093/cid/cir12021467020
  • Mulu W, Abera B, Yimer M, et al. Bacterial agents and antibiotic resistance profiles of infections from different sites that occurred among patients at Debre Markos Referral Hospital, Ethiopia: a cross-sectional study. BMC Res Notes. 2017;10(1). doi:10.1186/s13104-017-2584-y.
  • Lowy FD. Antimicrobial resistance: the example of Staphylococcus aureus. J Clin Invest. 2003;111(9):1265–1273. doi:10.1172/JCI1853512727914
  • Magiorakos A-P, Srinivasan A, Carey RB, et al. Multidrug-resistant, extensively drug-resistant and pandrug-resistant bacteria: an international expert proposal for interim standard definitions for acquired resistance. Clin Microbiol Infect. 2012;18(3):268–281. doi:10.1111/j.1469-0691.2011.03570.x21793988
  • Bischoff S, Walter T, Gerigk M, et al. Empiric antibiotic therapy in urinary tract infection in patients with risk factors for antibiotic resistance in a German emergency department. BMC Infect Dis. 2018;18(1):56. doi:10.1186/s12879-018-2960-929373965
  • Krishna A, Chopra T. Active surveillance cultures for MRSA, VRE, multidrug-resistant gram-negatives. In: Infection Prevention. Springer; 2018:145–151.
  • Muluye D, Wondimenh Y, Ferede G, et al. Bacterial isolates and their antibiotic susceptibility patterns among patients with pus and/or wound discharge at Gondar University hiospoital. BMC Res Notes. 2014;7(1):619. doi:10.1186/1756-0500-7-61925201246
  • Demilie T, Beyene G, Melaku S, et al. Urinary bacterial profile and antibiotic susceptibility pattern among pregnant women in Northwest Ethiopia. Ethiop J Health Sci. 2012;22(2):121–128.22876076
  • Iliyasu G, Mohammad AB, Yakasai AM, et al. Gram-negative bacilli are a major cause of secondary pneumonia in patients with pulmonary tuberculosis: evidence from a cross-sectional study in a tertiary hospital in Nigeria. Trans R Soc Trop Med Hyg. 2018;112(5):252–254. doi:10.1093/trstmh/try04429788138
  • Samson OO, Anthony OE. Prevalence of multi-drug resistant staphylococcus aureus in clinical specimens obtained from patients attending the university of Benin Teaching Hospital, Benin City, Nigeria. Prevalence. 2013;3(5).
  • Ten Hove R-J, Tesfaye M, Ten Hove WF, et al. Profiling of antibiotic resistance of bacterial species recovered from routine clinical isolates in Ethiopia. Ann Clin Microbiol Antimicrob. 2017;16(1):46. doi:10.1186/s12941-017-0221-128651533
  • Ansari S, Nepal HP, Gautam R, et al. Threat of drug resistant Staphylococcus aureus to health in Nepal. BMC Infect Dis. 2014;14(1):1–5. doi:10.1186/1471-2334-14-15724380631
  • Jerry T, Queen AT, Tersagh I, et al. Antibiotic susceptibility pattern of gram-negative bacteria isolated from infected wound of patients in two health-care centers in Gboko Town. J Clin Case Rep. 2018;8(1083):2. doi:10.4172/2165-7920.10001083
  • Amsalu A, Geto Z, Asegu D, Eshetie S. Antimicrobial resistance pattern of bacterial isolates from different clinical specimens in Southern Ethiopia: a three-year retrospective study. Afr J Microbiol Res. 2017;9(1):1–8.
  • Kumburu HHS, Mmbaga T, Alifrangis BT, et al. Patterns of infections, etiologic agents and antimicrobial resistance at a tertiary care hospital in northern Tanzania. Trop Med Int Health. 2017;22(4):454–464. doi:10.1111/tmi.1283628072493
  • Abejew AAD, Mekonnen AA, Gashaw A. Prevalence and antibiotic resistance pattern of urinary tract bacterial infecvtions in Dessie area, North east Ethiopia. BMC Res Notes. 2014;7(1).
  • Naimi HM, Rasekh H, Noori AZ, et al. Determination of antimicrobial susceptibility patterns in Staphylococcus aureus strains recovered from patients at two main health facilities in Kabul, Afghanistan. BMC Infect Dis. 2017;17(737):844. doi:10.1186/s12879-017-2844-4