Microbiological profile and antimicrobial susceptibility pattern in orthopaedic implant associated infections
Abstract
Background and Objectives: Postoperative wound infection is a serious complication in presence of prosthetic implantation (infectivity rate 10.4%). Implant infection is particularly high in developing countries. Hence there is a need to know the clinical presentation, common organisms and their susceptibility pattern in a particular region.
Materials and Methods: The patients who had undergone orthopaedic prosthesis or implant surgeries and presented with signs and symptoms of infection were included in this study. Pus, tissue, fluid samples obtained were streaked in Blood agar and MacConkey agar plates and incubated at 37°C, two Sabouraud Dextrose agar slants incubated at 28°C and 37°C and Gram staining and Acid-fast staining performed. Antimicrobial susceptibility testing was performed for all bacterial isolates. Data collection was done using a proforma and analysis of data was done and expressed as frequency and percentage.
Results: A total of 149 samples obtained from patients with Orthopaedic implant associated infections were processed. Of these 131 (87.9%) were culture positive. Staphylococcus aureus was the most common pathogen, followed by Pseudomonas spp. Escherichia coli and Staphylococcus other than S. aureus. Ten (7.6%) cases had multiple organisms and 2 fungi were also isolated (1.5%). Among the S. aureus, MSSA was the commonest and 42 (30.2%) isolates were multidrug resistant organisms.
Conclusion: Infection is the major cause of delayed healing in patients with Orthopaedic implants. Early identification and aggressive treatment with the appropriate antibiotics are necessary to decrease infection rate, reduce hospital stay, prevent biofilm formation, decrease the need for Implant removal or replacement, and prevent disability in the patients.
2. Hassan AH, Nooz N, Ashraf H, Rehman OU. Bacterial pathogens in orthopedic implant infection and their resistance to antimicrobial therapy: A retrospective analysis. J Orthop Rep 2025; 4: 100559.
3. Van Agtmaal JL, Verheul M, Vonken L, Helsen K, Vargas Guerrero MG, Van Hoogstraten SWG, et al. Antimicrobial resistance in orthopedics: microbial insights, clinical impact, and the necessity of a multidisciplinary approach-a review. Acta Orthop 2025; 96: 555-568.
4. Moriarty TF, Metsemakers WJ, Morgenstern M, Hofstee MI, Vallejo Diaz A, Cassat JE, et al. Fracture-related infection. Nat Rev Dis Primers 2022; 8: 67.
5. Davidson DJ, Spratt D, Liddle AD. Implant materials and prosthetic joint infection: the battle with the biofilm. EFORT Open Rev 2019; 4: 633-639.
6. Suliman J, Warda H, Samaan M. Review of recent advances in the diagnosis and management of periprosthetic joint infection after total knee arthroplasty part 2: single-stage or two-stage surgical technique? J Orthop Surg Res 2024; 19: 643.
7. Latha T, Anil B, Manjunatha H, Chiranjay M, Elsa D, Baby N, Anice G. MRSA: the leading pathogen of orthopedic infection in a tertiary care hospital, South India. Afr Health Sci 2019; 19: 1393-1401.
8. Alelign D, Tena T, Tadesse D, Tessema M, Seid M, Oumer Y, et al. Bacteriological Profiles, Antimicrobial Susceptibility Patterns, and Associated Factors in Patients Undergoing Orthopedic Surgery with Suspicion of Surgical Site Infection at Arba Minch General Hospital in Southern Ethiopia. Infect Drug Resist 2022; 15: 2427-2443.
9. Corrigan RA, Sliepen J, Dudareva M, Ijpma FF, Govaert G, Atkins BL, et al. Causative Pathogens Do Not Differ between Early, Delayed or Late Fracture-Related Infections. Antibiotics 2022; 11: 943.
10. Oliveira PR, Carvalho VC, da Silva Felix C, de Paula AP, Santos-Silva J, Lima AL. The incidence and microbiological profile of surgical site infections following internal fixation of closed and open fractures. Rev Bras Ortop 2016; 51: 396-399.
11. Perumal A, Kumar CA, Doris TS. A study on the microbial profile of orthopedic implant infections and its risk factors in a tertiary care hospital. Indian J Microbiol Res 2016; 3: 412-418.
12. Youssef Y, Hättich A, Klepka KL. Periprosthetic joint infections - a scoping review. Innov Surg Sci 2024; 9: 191-197.
13. Trampuz A, Zimmerli W. Diagnosis and treatment of infections associated with fracture-fixation devices. Injury 2006; 37 Suppl 2: S59-S66.
14. Manning L, Metcalf S, Clark B, Robinson JO, Huggan P, Luey C, et al. Clinical Characteristics, Etiology, and Initial Management Strategy of Newly Diagnosed Periprosthetic Joint Infection: A Multicenter, Prospective Observational Cohort Study of 783 Patients. Open Forum Infect Dis 2020; 7(5): ofaa068.
15. Azzam K, Parvizi J, Jungkind D, Hanssen A, Fehring T, Springer B, et al. Microbiological, clinical, and surgical features of fungal prosthetic joint infections: a multi-institutional experience. J Bone Joint Surg Am 2009; 91 Suppl 6: 142-149.
16. Albavera-Gutierrez RR, Espinosa-Ramos MA, Rebolledo-Bello E, Paredes-Herrera FJ, Carballo-Lucero D, Valencia-Ledezma OE, et al. Prevalence of Staphylococcus aureus Infections in the Implantation of Orthopedic Devices in a Third-Level Hospital: An Observational Cohort Study. Pathogens 2024; 13: 620.
17. Gatti M, Barnini S, Guarracino F, Parisio EM, Spinicci M, Viaggi B, et al. Orthopaedic Implant-Associated Staphylococcal Infections: A Critical Reappraisal of Unmet Clinical Needs Associated with the Implementation of the Best Antibiotic Choice. Antibiotics (Basel) 2022; 11: 406.
18. Haraldsdóttir I, Gunnlaugsdóttir SL, Kristjánsson DF, Erlendsdóttir H, Helgason KO, Gudbrandsson EÞ, et al. Changing Incidence, Aetiology and Outcomes of Prosthetic Joint Infections: A Population-Based Study in Iceland. J Clin Med 2025; 14: 5289.
19. Coraça-Huber DC, Kreidl L, Steixner S, Hinz M, Dammerer D, Fille M. Identification and Morphological Characterization of Biofilms Formed by Strains Causing Infection in Orthopedic Implants. Pathogens 2020; 9: 649.
| Files | ||
| Issue | Vol 18 No 5 (2026) | |
| Section | Original Article(s) | |
| DOI | https://doi.org/10.18502/ijm.v18i5.22860 | |
| Keywords | ||
| Biofilm Staphylococcus aureus Implant-associated infections Antimicrobial susceptibility Multidrug resistance | ||
| Rights and permissions | |
|
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License. |



