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1.
J Spec Oper Med ; 17(2): 49-58, 2017.
Article in English | MEDLINE | ID: mdl-28599034

ABSTRACT

This study focused on a clinically relevant healthcare problem in the military: acute soft tissue wounds, or blisters. The trial was a prospective, controlled, randomized two-arm study evaluating the efficacy of a bioelectric dressing, Procellera®, applied topically two to three times per week for 2 weeks to blisters developed in Ranger trainees during training at Fort Benning, Georgia. A total of 80 US Army Ranger recruits with blister wounds below the knee were randomly assigned to one of two treatment groups (n = 40/group). The primary goal was to assess the clinical efficacy (rate of healing) of administered Procellera in conjunction with the standard-of-care (SOC) treatment, moleskin and Tegaderm ®, on the healing rate of blisters compared with the SOC treatment alone. The secondary end points for efficacy were the quantities of wound fluid biomarkers and bacterial bioburden. The tertiary end point was assessment of pain in the treatment group compared with that of the control group during the 2-week study. The results showed no statistical difference between the SOC and SOC+Procellera groups in wound healing and pain. Wound fluid was reported for 24 participants (64.9%) in the SOC group and 21 participants (56.8%) in SOC+Procellera group at the baseline measurement (ρ = .475); however, the wounds were devoid of fluid on follow-up visits. The mild nature of the wounds in this study was apparent by the low pain scores at the beginning of the study, which disappeared by the follow-up visits. The average wound sizes were 2.2cm2 and 1.5cm2 for the SOC and SOC+Procellera groups, respectively. This trial protocol should be conducted on open softtissue wounds in severe heat. To our knowledge, this is the first clinical study conducted within the US Army Rangers training doctrine.


Subject(s)
Bandages , Blister/therapy , Electric Stimulation Therapy , Leg Injuries/therapy , Military Medicine , Military Personnel , Wound Healing , Bacteria/genetics , Bioelectric Energy Sources , Blister/immunology , Blister/microbiology , Cytokines/immunology , Humans , Leg Injuries/immunology , Leg Injuries/microbiology , Pain , RNA, Ribosomal, 16S/genetics , Reverse Transcriptase Polymerase Chain Reaction , Time Factors
2.
Mil Med ; 181(5 Suppl): 184-90, 2016 05.
Article in English | MEDLINE | ID: mdl-27168571

ABSTRACT

Novel approaches including nonpharmacological methodologies for prevention and control of microbial pathogens and emerging antibiotic resistance are urgently needed. Procellera is a wound care device consisting of a matrix of alternating silver (Ag) and zinc (Zn) dots held in position on a polyester substrate with a biocompatible binder. This electroceutical medical device is capable of generating a direct current voltage (0.5-0.9 Volts). Wound dressings containing metals such as Ag and/or Zn as active ingredients are being used for control of colonized and infected wounds. Reports on the presence of electric potential field across epithelium and wound current on wounding have shown that wound healing is enhanced in the presence of an external electrical field. However, majority of the electrical devices require an external power source for delivering pulsed or continuous electric power at the wound site. A microelectric potential-generating system without an external power source is an ideal treatment modality for application in both clinical and field settings. The research presented herein describes efficacy evaluation of a wireless bioelectric dressing against both planktonic and biofilm forms of wound pathogens including multidrug resistant organisms.


Subject(s)
Bandages/standards , Electrochemotherapy/methods , Electrochemotherapy/standards , Wound Healing , Wound Infection/prevention & control , Biofilms , Humans , Polyesters/administration & dosage , Polyesters/therapeutic use , Silver/therapeutic use , Zinc/therapeutic use
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