Abstract
In an attempt to identify potential staging markers of effective healing, changes in connective tissue properties were measured in a human skin excisional wound healing model in which tissue was re-excised at intervals up to 6 months after injury. The proportion of collagen III relative to collagen I increased significantly (p< 0.001) up to 6 weeks after initial injury and remained elevated up to 6 months, at which time the proportion of collagen III was 70% above baseline values. Extractability of biopsy tissue collagen by pepsin increased significantly throughout the study (baseline, 32.8±6. 8%; 6 months, 89.1±8.9%), with inverse changes in the mature skin cross-link, histidinohydroxylysinonorleucine (baseline, 1.18±0.11 mol/ mol collagen; 6 months, 0.27±0.09 mol/mol collagen). Pyridinoline content increased over the period of the study, although remaining at relatively low concentrations (baseline, 0.037±0.011; 6 months, 0.063±0.014 mol/mol collagen), and the pyridinoline/deoxypyridinoline ratio was significantly higher (baseline, 3.5±0.6; 6 months, 10.3±2.2). Elastin content, measured as desmosine cross-links, decreased significantly in the first 3 weeks and continued to decline over the period of study. Overall, the data suggest that remodeling of the wound tissue continues at least up to 6 months after injury. The close inverse correlation between histidinohydroxylysinonorleucine concentrations and extractability by pepsin (r2 = 0.89, p <0.0001) suggests a causal relationship, consistent with the likely effects of a substantial network of mature, inter-helical bonds in collagen.
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Robins, S. P., Milne, G., Duncan, A., Davies, C., Butt, R., Greiling, D., & James, I. T. (2003). Increased skin collagen extractability and proportions of collagen type III are not normalized after 6 months healing of human excisional wounds. Journal of Investigative Dermatology, 121(2), 267–272. https://doi.org/10.1046/j.1523-1747.2003.12373.x
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