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☐ ☆ ✇ International Wound Journal

Wound Management and Surgery for Calcific Uremic Arteriolopathy (Calciphylaxis): A Retrospective Observational Cohort Study

ABSTRACT

Wound care in calciphylaxis remains poorly defined without evidence-based consensus on timing and technique of surgical intervention. We demonstrate that surgical debridement and subsequent wound closure are safe and effective in calciphylaxis and describe a systematic multidisciplinary approach to intervention. We retrospectively reviewed a cohort of patients with calciphylaxis at our institution. Those who underwent surgical debridement and wound closure were analysed with emphasis on wound healing, progression to amputation and mortality. Sixty-two patients with calciphylaxis underwent surgical debridement. Twenty patients had wound closure by skin grafting, five were excised with primary wound closure, and 37 were debrided and allowed to heal by secondary intention. There were excellent rates of healing in all groups, and no patients demonstrated wound progression or new lesions following operative intervention. Surgical debridement and wound closure are safe and effective in treating wounds related to calciphylaxis.

☐ ☆ ✇ International Wound Journal

Knife or Not? Pathergy and the Need for Caution in Debriding Wounds

Por: J. J. M. Karppinen · E. Conde Montero — Enero 29th 2026 at 10:09
International Wound Journal, Volume 23, Issue 2, February 2026.
☐ ☆ ✇ International Wound Journal

Hyperbaric Oxygenation of an Ozone‐Containing Steam–Water Mixture as Treatment of Infected Combat Wounds of the Limbs With Antibiotic‐Resistant Microflora

ABSTRACT

Patients with combat wounds and injuries, presented as extensive infected and purulent defects with antibiotic-resistant microflora, were treated in a surgical inpatient setting. Closure of extensive soft tissue defects of the limbs is possible using methods of plastic and reconstructive surgery and requires preoperative infection control. The lack of effect from preoperative treatment for purulent limb defects with antibiotic-resistant microflora leads to limb amputation. This clinical study proposes a method of treatment by hyperbaric oxygenation with an ozone-containing steam–water mixture as an anti-bacterial agent. Eighteen male patients, aged between 20 and 60 years, were categorised into three groups based on the time elapsed since the injury. All patients were treated using the proposed method. The high effectiveness of the proposed method was demonstrated in all groups and resulted in saving limbs from amputation, establishing suitable conditions for closing the soft tissue defects of the limbs and achieving significant progress in the recovery.

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