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Multiplex Therapeutic Drug Monitoring by Isotope-dilution HPLC-MS/MS of Antibiotics in Critical Illnesses
Published on: August 30, 2018
Antimicrobial use at a multi-disciplinary hospital
Background:
The problem of antimicrobial resistance has become topical and alarming all over the world, including Kazakhstan. Nosocomial strains of microorganisms are widespread, being resistant to the majority of available antimicrobials. This results in longer periods of hospital stay, increases in financial expenditures, and sometimes, in lethal outcomes. The social importance of antimicrobial resistance is preconditioned by the spread of resilient strains of microorganism beyond the hospital environment, which leads to lower effectiveness of antibiotic therapy against infectious diseases and growth in their incidence [1, 2].Our in-patient health facility is a multifunctional one. It provides therapeutic, surgical and oncology and hematology care including organ transplantation. Measures to reduce antibiotic resistance are very important.
Objective:
To develop a standardized approach to the use of antimicrobial drugs aimed at reducing of antimicrobial resistance, postoperative complications and mortality rates along with financial expenditures. The expected result of this approach should be the enhancement of quality of care.
Methods:
In September 2014 we developed and introduced a local protocol of the antimicrobials use, namely antibiotics for surgical prophylaxis and treatment, based on the evidence of international clinical guidelines evidence-based medicine approach, taking into account the microbial landscape and antibiotic resistance patterns to major pathogens: Staphylococcus aureus, Pseudomonas aeruginosa, Acinetobacter baumannii, Escherichia coli, Klebsiella pneumoniae [3]. We planned to assess the effectiveness of this policy by the following criteria: the percentage of post-surgical sequela, the number of bed days, the percentage of resistant cases and antibiotic expenditures. In order to improve the quality of bacteriological studies, together with microbiologists we trained the medical staff on the methods of obtaining of biological material for microbiological testing.
Results:
We analyzed the indicators of antibiotic resistance from October 2014 to March 2015 (hereafter period I) on the basis of the data from the microbiological laboratory with data of April-August 2015 (hereafter period II). The analysis on the basis of other criteria has yet to be carried out. The bio-material was obtained from different loci, including blood. The results of the oncology and hematology were analyzed separately. We received the following results of sensitivity of the listed microorganisms to various antimicrobials in the period I and the period II respectively expressed as percentages:Staphylococcus aureus: Oxacillin - 95% and 100%, Azythromycin - 62% and 100%, Vancomycin - 100% and 100%, Levofloxacin/Moxifloxacin - 100% and 100%.Pseudomonas aeruginosa: Ceftazidime - 34% and 67%, Piperacillin/Tazobactam - 91% and 84%, Cefepime - 59% and 81%, Amikacin - 95% and 100%, Meropenem - 100% and 100%, Ciprofloxacin - 97% and 100%.Escherichia coli: Gentamicin - 93% and 96%, Piperacillin/Tazobactam - 86% and 92%, Ceftriaxone - 82% and 100%, Amikacin - 99% and 100%,Ciprofloxacin - 69% and 80%, Amoxycillin/Clavulanate - 44% and 46% respectively.Klebsiella pneumoniae: Gentamicin - 50% and 100%, Piperacillin/Tazobactam - 95% and 100%, Cefepime - 100% and 100%, Ceftriaxone - 96% and 100%, Amikacin - 99% and 100%, Ciprofloxacin - 100% and 100%, Amoxycillin/Clavulanate - 22% and 23%.Acinetobacter baumannii: Gentamicin - 83% and 83%, Piperacillin/Tazobactam - 33% and 58%, Cefepime - 0% and 33%, Ceftriaxone - 0% and 33%, Amikacin - 50% and 83%, Ciprofloxacin - 83% and 67%, Meropenem/Imipenem-Cilastin - 83% and 83%.
Conclusions:
During the analyzed periods we observed some improvement in the sensitivity of the main pathogens to antibiotics. At the same time, the resistance of Acinetobacter baumannii to carbapenems and fluoroquinolones increased.Limitations of the studyThere are many other than antibiotic use factors, which influence these results. Further analysis is planned to be carried out. Nevertheless, this analysis makes us believe that we are, probably, on the right path for improving the use of antibacterial drugs.
Insights
A new protocol improved antimicrobial sensitivity in Kazakhstan hospitals, reducing resistance. While most pathogens showed increased sensitivity, Acinetobacter baumannii resistance to carbapenems and fluoroquinolones rose, indicating a need for continued monitoring.
Area of Science:
- Infectious Diseases
- Microbiology
- Hospital Administration
Background:
- Antimicrobial resistance (AMR) is a global health crisis, particularly concerning in Kazakhstan.
- Nosocomial infections with multidrug-resistant organisms lead to prolonged hospital stays, increased costs, and mortality.
- Multifunctional healthcare facilities face significant challenges in managing AMR.
Purpose of the Study:
- To develop and implement a standardized antimicrobial use protocol to combat AMR.
- To reduce postoperative complications, mortality rates, and healthcare expenditures.
- To enhance the overall quality of patient care through evidence-based antimicrobial stewardship.
Main Methods:
- Developed and implemented a local antimicrobial use protocol in September 2014, focusing on surgical prophylaxis and treatment.
- Based the protocol on international clinical guidelines and local resistance patterns of key pathogens.
- Trained medical staff on proper biological sample collection for improved microbiological testing.
Main Results:
- Observed increased antimicrobial sensitivity for Staphylococcus aureus, Pseudomonas aeruginosa, Escherichia coli, and Klebsiella pneumoniae post-protocol implementation.
- Noted a concerning rise in Acinetobacter baumannii resistance to carbapenems and fluoroquinolones.
- Further analysis is required to assess impacts on post-surgical sequelae, bed days, and expenditures.
Conclusions:
- The implemented protocol showed a positive trend in improving antimicrobial sensitivity for several major pathogens.
- Continued vigilance and further research are necessary, especially regarding Acinetobacter baumannii resistance patterns.
- The findings suggest the protocol is a step in the right direction for optimizing antibacterial drug use.
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