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Comprehensive Approach to Reduce Surgical Site Infections in Patients Undergoing Neurosurgical Procedures
Ahmad Rakad Nusair1, Wasim S El Nekidy2,3, Lisa Reynolds4
1Medical Subspecialties Institute-Infectious Diseases, Cleveland Clinic Abu Dhabi, Abu Dhabi, United Arab Emirates.
Abstract:
Surgical site infections (SSIs) are recognized complications of surgical procedures. Methicillin-resistant Staphylococcus aureus (MRSA) colonization increases the likelihood of developing SSIs. Decolonization of MRSA has been shown to reduce post-operative SSIs, therefore, the aim of this project was to identify and decolonize MRSA carriers and to tailor perioperative antibiotic prophylaxis to protect those at high risk for SSIs better. In September 2013, a quality improvement process initiative was implemented for pre-operative screening of MRSA nasal carriage for patients undergoing elective neurosurgical procedures. Those identified as colonized received a 10-day decolonization protocol that consisted of: oral doxycycline 100 mg twice daily or oral trimethoprim-sulfamethoxazole (TMP-SMX) DS twice daily; oral rifampin 600 mg daily; daily bathing with chlorhexidine; and twice daily use of mupirocin ointment in each nostril and under the fingernails. In addition to cefazolin (weight-based dosing), vancomycin (weight-based dosing) was recommended for perioperative prophylaxis in known MRSA carriers and patients undergoing surgical procedures involving hardware implantation irrespective of colonization status. We compared the results with our previously documented neurosurgical site infection rates (2012 and 2013 were 3.0 and 2.2%, respectively) From 2014 to 2015, MRSA screening was done for 1,197 patients, of whom 52 (4.3%) were found to be colonized. Surgical site infections occurred in 14 procedures (1.4%) in 2014 and eight (0.8%) procedures in 2015, respectively. Methicillin-resistant Staphylococcus aureus remained responsible for most of these infections. None of the patients who underwent decolonization developed an infection (MRSA or otherwise). The overall rate of neurosurgical site infections can be reduced through a bundled approach of MRSA decolonization and change in perioperative antibiotic prophylaxis to include vancomycin for procedures involving hardware implantation irrespective of MRSA carriage state.
Insights
Surgical site infections (SSIs) were reduced by screening for methicillin-resistant Staphylococcus aureus (MRSA) carriers and decolonizing them. A bundled approach including vancomycin for high-risk procedures further decreased SSIs in neurosurgery patients.
Area of Science:
- Infectious Diseases
- Neurosurgery
- Quality Improvement
Background:
- Surgical site infections (SSIs) are a significant complication following surgical procedures.
- Methicillin-resistant Staphylococcus aureus (MRSA) colonization is a known risk factor for developing SSIs.
- Decolonization strategies for MRSA carriers can reduce post-operative infection rates.
Purpose of the Study:
- To identify and decolonize MRSA carriers undergoing elective neurosurgical procedures.
- To tailor perioperative antibiotic prophylaxis to better protect high-risk patients.
- To evaluate the impact of a bundled intervention on neurosurgical site infection rates.
Main Methods:
- Implemented pre-operative screening for MRSA nasal carriage in neurosurgical patients.
- Administered a 10-day decolonization protocol for colonized patients (doxycycline/TMP-SMX, rifampin, chlorhexidine, mupirocin).
- Modified perioperative antibiotic prophylaxis to include vancomycin for procedures with hardware implantation.
Main Results:
- MRSA screening identified 4.3% of 1,197 patients as colonized between 2014-2015.
- Overall neurosurgical SSIs decreased from 3.0% (2012) and 2.2% (2013) to 1.4% (2014) and 0.8% (2015).
- No patients who completed the decolonization protocol developed SSIs.
Conclusions:
- A bundled approach combining MRSA decolonization and adjusted perioperative antibiotic prophylaxis effectively reduces neurosurgical SSIs.
- Targeted decolonization and prophylactic vancomycin for hardware procedures are crucial for infection control.
- This strategy demonstrates a significant reduction in SSIs, improving patient outcomes.
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