Intraoperative surgical site infection control and prevention: a position paper and future addendum to WSES intra-abdominal infections guidelines

Контроль и профилактика инфекций области хирургического вмешательства в интраоперационный период: позиционный документ и будущее дополнение к рекомендациям WSES по внутрибрюшным инфекциям
Ernest E. Moore, Richard P. G. ten Broek, Federico Coccolini, Fikri M. Abu‐Zidan, Boris Sakakushev, Raúl Coimbra, Ari Leppäniemi, Walter Biffl, Salomone Di Saverio, Belinda De Simone, Luca Ansaloni, Massimo Sartelli, Yoram Kluger, Dieter Weber, Andrew W. Kirkpatrick, Michael Sugrue, Gustavo Pereira Fraga, Massimo Chiarugi, Osvaldo Chiara, Fabio Cesare Campanile, Gian Luca Baiocchi, Fausto Catena, Imtiaz Wani, Chad G. Ball, Andrew Peitzmann, Pietro Brambillasca, Gabriela Nita, Davide Corbella, Elena Boschini, Micheal Denis Kelly
2020-02-10

antibacterial suturesintra-abdominal infectionsnegative-pressure wound therapysurgical site infection preventionwound protectors
BACKGROUND: Surgical site infections (SSI) represent a considerable burden for healthcare systems. They are largely preventable and multiple interventions have been proposed over past years in an attempt to prevent SSI. We aim to provide a position paper on Operative Room (OR) prevention of SSI in patients presenting with intra-abdominal infection to be considered a future addendum to the well-known World Society of Emergency Surgery (WSES) Guidelines on the management of intra-abdominal infections. METHODS: The literature was searched for focused publications on SSI until March 2019. Critical analysis and grading of the literature has been performed by a working group of experts; the literature review and the statements were evaluated by a Steering Committee of the WSES. RESULTS: Wound protectors and antibacterial sutures seem to have effective roles to prevent SSI in intra-abdominal infections. The application of negative-pressure wound therapy in preventing SSI can be useful in reducing postoperative wound complications. It is important to pursue normothermia with the available resources in the intraoperative period to decrease SSI rate. The optimal knowledge of the pharmacokinetic/pharmacodynamic characteristics of antibiotics helps to decide when additional intraoperative antibiotic doses should be administered in patients with intra-abdominal infections undergoing emergency surgery to prevent SSI. CONCLUSIONS: The current position paper offers an extensive overview of the available evidence regarding surgical site infection control and prevention in patients having intra-abdominal infections.
1
Maintaining intraoperative normothermia is important for decreasing surgical site infection rates.
2
Negative-pressure wound therapy may reduce postoperative wound complications and help prevent surgical site infections.
3
The position paper synthesizes evidence on intraoperative surgical site infection prevention for patients undergoing emergency surgery for intra-abdominal infections.
4
Understanding antibiotic pharmacokinetic and pharmacodynamic properties supports appropriate timing of additional intraoperative doses during emergency surgery.
5
Wound protectors and antibacterial sutures appear effective in reducing surgical site infections in intra-abdominal infections.

Patients with intra-abdominal infections undergoing emergency surgery

Intraoperative control and prevention of surgical site infections through wound protectors, antibacterial sutures, negative-pressure wound therapy, normothermia, and optimized antibiotic dosing

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2020-02-10
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Authors
Ernest E. Moore
Richard P. G. ten Broek
Federico Coccolini
Fikri M. Abu‐Zidan
Boris Sakakushev
Raúl Coimbra
Ari Leppäniemi
Walter Biffl
Salomone Di Saverio
Belinda De Simone
Luca Ansaloni
Massimo Sartelli
Yoram Kluger
Dieter Weber
Andrew W. Kirkpatrick
Michael Sugrue
Gustavo Pereira Fraga
Massimo Chiarugi
Osvaldo Chiara
Fabio Cesare Campanile
Gian Luca Baiocchi
Fausto Catena
Imtiaz Wani
Chad G. Ball
Andrew Peitzmann
Pietro Brambillasca
Gabriela Nita
Davide Corbella
Elena Boschini
Micheal Denis Kelly
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