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Updated: Jun 22, 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
Using low pressure, NPWT for wound preparation & the management of split-thickness skin grafts in 3 patients with
1Memorial Health University Medical Center, Savannah, Georgia 31403, USA. cnease1987@aol.com
The use of negative pressure wound therapy (NPWT) is well established in the management of hard-to-heal wounds. One institution, familiar with NPWT's capabilities as well as its shortcomings (eg, pain at dressing changes and pain with the maximum recommended setting of 125 mm Hg), sought a viable alternative. A low pressure, negative pressure wound therapy (LP-NPWT) system, using subatmospheric pressure levels of 75 mm Hg and a low-adherence dressing, was evaluated to prepare the wound bed for split-thickness skin graft (STSG) on three patients. One patient was a healthy 23-year-old man with extensive trauma-related soft tissue wounds. The two women--54 and 47 years old--had multiple comorbidities. One had a lower extremity fasciotomy wound and the other had a dehisced surgical wound with a history of irradiation. Wound area was reduced >60% in all three wounds in 3 to 6 weeks as new granulation tissue developed. The average pain reported was moderate (4 to 5 on a Visual Analogue Scale), ranging from 2 to 10 during dressing changes to 1 to 7 between dressing changes; pain levels reported tended to decrease as therapy progressed. Little or no trauma on dressing removal and no signs of infection were noted. In all cases, STSGs, followed by 4 days of LP-NPWT were applied and all wounds healed. The results from these three cases suggest that the LP-NPWT system is a useful healing adjunct for complex wound bed preparation and graft management. Clinical studies to quantify the effects of LP-NPWT technology and compare its safety and efficacy to other negative pressure systems are needed.
The use of negative pressure wound therapy (NPWT) is well established in the management of hard-to-heal wounds. One institution, familiar with NPWT's capabilities as well as its shortcomings (eg, pain at dressing changes and pain with the maximum recommended setting of 125 mm Hg), sought a viable alternative. A low pressure, negative pressure wound therapy (LP-NPWT) system, using subatmospheric pressure levels of 75 mm Hg and a low-adherence dressing, was evaluated to prepare the wound bed for split-thickness skin graft (STSG) on three patients. One patient was a healthy 23-year-old man with extensive trauma-related soft tissue wounds. The two women--54 and 47 years old--had multiple comorbidities. One had a lower extremity fasciotomy wound and the other had a dehisced surgical wound with a history of irradiation. Wound area was reduced >60% in all three wounds in 3 to 6 weeks as new granulation tissue developed. The average pain reported was moderate (4 to 5 on a Visual Analogue Scale), ranging from 2 to 10 during dressing changes to 1 to 7 between dressing changes; pain levels reported tended to decrease as therapy progressed. Little or no trauma on dressing removal and no signs of infection were noted. In all cases, STSGs, followed by 4 days of LP-NPWT were applied and all wounds healed. The results from these three cases suggest that the LP-NPWT system is a useful healing adjunct for complex wound bed preparation and graft management. Clinical studies to quantify the effects of LP-NPWT technology and compare its safety and efficacy to other negative pressure systems are needed.
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