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Updated: Aug 17, 2026

Severe Burn Injury in a Swine Model for Clinical Dressing Assessment
Published on: November 6, 2018
Increased hyaluronan flux from skin following burn injury
J J Ferrara1, R K Reed, D L Dyess
1Department of Surgery, University of South Alabama, Mobile 36688.
Abstract:
Hyaluronan (formerly hyaluronic acid) is an important constituent of the interstitial matrix in skin. Following major burn injury in animal models, plasma hyaluronan can increase to levels 10-fold greater than normal. The present experiments were designed to determine whether this is a result of the increased lymph flow (QL) accompanying the injury or of an increased release of hyaluronan from the burned skin and subcutaneous tissue. The lateral saphenous vein and a prenodal lymphatic were cannulated in the hindpaw of five anesthetized canines. Hindpaw venous pressure was elevated until the total protein concentration in lymph declined to steady-state levels, and QL and hyaluronan flux (QL X [hyaluronan]) was measured. A minor burn was inflicted by immersion of the paw into 100 degrees C water for five sec, and measurements were repeated at regular intervals for a minimum of 4 hr. Burn injury resulted in significant and persistent increases in QL (154 +/- 61 microliters/min versus 562 +/- 105 microliters/min 4 hr postburn) and lymph total protein concentration (1.34 +/- 0.04 g/dl versus 4.08 +/- 0.18 g/dl 4 hr postburn), while lymph hyaluronan concentration fell (3.01 +/- 0.20 micrograms/ml versus 2.1 +/- 0.16 micrograms/ml 4 hr postburn). The resultant increase in hyaluronan flux (0.42 +/- 0.13 microgram/min versus 1.17 +/- 0.22 microgram/min 4 hr postburn) appears to be a function of lymph flow rather than burn-induced release of skin hyaluronan. Hence, the increased plasma concentration of hyaluronan following major burns is likely a consequence of increased lymph flow from the site of injury.
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