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Published on: June 16, 2023
Disposable Patterned Electroceutical Dressing (PED-10) Is Safe for Treatment of Open Clinical Chronic Wounds
Sashwati Roy1, Shaurya Prakash2, Shomita S Mathew-Steiner1
1Department of Surgery, Indiana Center for Regenerative Medicine and Engineering (ICRME), Indiana University School of Medicine, Indianapolis, Indiana.
Insights
Patterned electroceutical dressing (PED) shows safety for chronic wound treatment in a pilot study. This advanced dressing had minimal adverse effects on human skin wounds, warranting further investigation for clinical impact.
Area of Science:
- Biomedical Engineering
- Wound Care Technology
- Regenerative Medicine
Background:
- Chronic wounds pose a significant clinical challenge, often exhibiting delayed healing and increased infection risk.
- Current treatments for chronic wounds have limitations in efficacy and scope, particularly for deeper infections.
- Electroceutical dressings represent an emerging therapeutic modality for wound management.
Purpose of the Study:
- To evaluate the safety of a patterned electroceutical dressing (PED) for human chronic wound treatment.
- To assess the host tissue response and identify any adverse effects of PED application.
- To determine the feasibility of using PED in a clinical setting prior to amputation surgery.
Main Methods:
- A pilot feasibility study was conducted involving patients undergoing lower extremity amputation with open wounds.
- Patients received PED treatment prior to surgical amputation.
- Safety was evaluated through visual observation of skin and wound tissue for adverse events.
Main Results:
- The study enrolled a small cohort of 8 patients (N=8).
- Engineered voltage regulation in the PED resulted in little to no visually observable adverse effects on chronic human skin wounds.
- Specific design revisions (PED-10 with 10 kΩ resistor) improved tolerability compared to earlier versions.
Conclusions:
- The tunable, second-generation PED prototype demonstrates safety and tolerability in a small cohort of patients with chronic wounds.
- Observed minimal adverse effects suggest potential for PED in treating chronic wounds, including those with deeper infections.
- Further larger studies are warranted to confirm clinical efficacy in wound healing and infection control.
Abstract:
Objective: To evaluate if patterned electroceutical dressing (PED) is safe for human chronic wounds treatment as reported by wound care providers. Approach: This work reports a pilot feasibility study with the primary objective to determine physically observable effects of PED application on host tissue response from a safety evaluation point of view. For this pilot study, patients receiving a lower extremity amputation with at least one open wound on the part to be amputated were enrolled. Patients were identified through the Ohio State University Wexner Medical Center (OSUWMC) based on inclusion and exclusion criteria through prescreening through the Comprehensive Wound Center's (CWC) Limb Preservation Program and wound physicians and/or providers at OSUWMC. Wounds were treated with the PED before amputation surgery. Results: The intent of the study was to identify if PED was safe for clinical application based on visual observations of adverse or lack of adverse events on skin and wound tissue. The pilot testing performed on a small cohort (N = 8) of patients showed that with engineered voltage regulation of current flow to the open wound, the PED can be used with little to no visually observable adverse effects on chronic human skin wounds. Innovation: The PED was developed as a second-generation tunable electroceutical wound care dressing, which could potentially be used to treat wounds with deeper infections compared with current state of the art that treats wounds with treatment zone limited to the surface near topical application. Conclusion: Technology advances in design and fabrication of electroceutical dressings were leveraged to develop a tunable laboratory prototype that could be used as a disposable low-cost electroceutical wound care dressing on chronic wounds. Design revisions of PED-1 (1 kΩ ballast resistor) circumvented previously observed adverse effects on the skin in the vicinity of an open wound. PED-10 (including a 10 kΩ ballast resistor) was well tolerated in the small cohort of patients (N = 8) on whom it was tested, and the observations reported here warrant a larger study to determine the clinical impact on human wound healing and infection control.
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