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Updated: May 5, 2026

Development of a Benchtop Model for Evaluating the Compatibility of Wound Dressing Materials with Negative Pressure Wound Therapy Systems
Published on: May 2, 2025
Recommendations on negative pressure wound therapy with instillation and antimicrobial solutions - when, where and
David A Back1, Catharina Scheuermann-Poley, Christian Willy
1Department of Traumatology and Orthopedics, Septic and Plastic Surgery, Bundeswehrkrankenhaus Berlin, Berlin, Germany.
Abstract:
Infections of contaminated or colonised acute or chronic wounds remain a grave risk for patients even today. Despite modern surgical debridement concepts and antibiotics, a great need exists for new therapies in wound management. Since the late 1990s, advantageous effects of negative pressure wound therapy (NPWT) have been combined with local antiseptic wound cleansing in the development of NPWT with instillation (NPWTi). This article summarises the current scientific knowledge on this topic. MEDLINE literature searches were performed on the subject of negative pressure wound and instillation therapy covering publications from the years 1990 to 2013 (36 peer-reviewed citations) and regarding randomised controlled trials (RCTs) covering wound care with bone involvement (27 publications) or soft-tissue wounds without bone participation (11 publications) from 2005 to 2012. The use of NPWTi in the therapy of infected wounds appears to be not yet widespread, and literature is poor and inhomogeneous. However, some reports indicate an outstanding benefit of NPWTi for patients, using antiseptics such as polyhexanide (concentration 0·005-0·04%) and acetic acid (concentration 0·25-1%) in acute and chronic infected wounds and povidone-iodine (10% solution) as prophylaxis in contaminated wounds with potential viral infection. Soaking times are recommended to be 20 minutes each, using cycle frequencies of four to eight cycles per day. Additionally, the prophylactic use of NPWTi with these substances can be recommended in contaminated wounds that cannot be closed primarily with surgical means. Although first recommendations may be given currently, there is a great need for RCTs and multicentre studies to define evidence-based guidelines for an easier approach to reach the decision on how to use NPWTi.
Insights
Negative pressure wound therapy with instillation (NPWTi) shows promise for treating infected wounds, using antiseptics like polyhexanide and acetic acid. Further research is needed to establish evidence-based guidelines for its widespread use in wound management.
Area of Science:
- Wound healing and regenerative medicine
- Infectious disease management
- Medical device technology
Background:
- Contaminated and colonized wounds pose significant risks despite advanced treatments.
- A need persists for innovative therapies in wound management.
- Negative pressure wound therapy with instillation (NPWTi) combines negative pressure wound therapy (NPWT) with antiseptic wound cleansing.
Purpose of the Study:
- To summarize current scientific knowledge on NPWTi.
- To review literature on NPWTi for infected wounds, including randomized controlled trials (RCTs) for bone and soft-tissue injuries.
Main Methods:
- MEDLINE literature searches were conducted for NPWT and instillation therapy (1990-2013).
- Searches focused on RCTs for wound care with bone involvement (2005-2012) and soft-tissue wounds (2005-2012).
Main Results:
- Literature on NPWTi for infected wounds is limited and inconsistent.
- NPWTi shows potential benefits using antiseptics like polyhexanide (0.005-0.04%) and acetic acid (0.25-1%) for infected wounds.
- Povidone-iodine (10%) can be used prophylactically in contaminated wounds.
- Recommended instillation: 20-minute soaks, 4-8 cycles/day.
- Prophylactic NPWTi is suggested for contaminated wounds not suitable for primary surgical closure.
Conclusions:
- NPWTi demonstrates potential in managing infected and contaminated wounds.
- Evidence-based guidelines are needed, requiring more RCTs and multicenter studies.
- Further research is crucial to define optimal NPWTi protocols.
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