Collagen in the scarless fetal skin wound: detection with picrosirius-polarization.
نویسندگان
چکیده
Our group has developed an ovine model of deep dermal, partial-thickness burn where the fetus heals scarlessly and the lamb heals with scar. The comparison of collagen structure between these two different mechanisms of healing may elucidate the process of scarless wound healing. Picrosirius staining followed by polarized light microscopy was used to visualize collagen fibers, with digital capture and analysis. Collagen deposition increased with fetal age and the fibers became thicker, changing from green (type III collagen) to yellow/red (type I collagen). The ratio of type III collagen to type I was high in the fetus (166), whereas the lamb had a much lower ratio (0.2). After burn, the ratios of type III to type I collagen did not differ from those in control skin for either fetus or lamb. The fetal tissue maintained normal tissue architecture after burn while the lamb tissue showed irregular collagen organization. In conclusion, the type or amount of collagen does not alter significantly after injury. Tissue architecture differed between fetal and lamb tissue, suggesting that scar development is related to collagen cross-linking or arrangement. This study indicates that healing in the scarless fetal wound is representative of the normal fetal growth pattern, rather than a "response" to burn injury.
منابع مشابه
Regenerative healing in fetal skin: a review of the literature.
In mature skin, wound repair typically begins with hemostasis and inflammation. This is followed by a proliferative phase with reepithelialization, angiogenesis, and collagen production, and ends with the generation of a permanent scar. However, animal studies and clinical observations have shown that a different type of healing occurs in fetal skin in the first two trimesters of development. I...
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OBJECTIVE This study investigated the influence of the fetal environment on the healing characteristics of adult skin. SUMMARY BACKGROUND DATA The remarkable ability of the fetus to heal without scarring is poorly understood. The unique qualities of fetal wound healing may be caused by the fetal environment, the fetal tissues, or a combination of both. There are numerous differences between t...
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Collagen plays a vital role in maintaining structural integrity and in determining tissue function. Therefore, methods to detect, quantify, and analyze collagen are valuable. Nevertheless, stains historically employed to detect collagen have disadvantages, principally a poor specificity for thin fibers. Conversely, picrosirius red, which has the capability to detect thin fibers, although freque...
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ورودعنوان ژورنال:
- Wound repair and regeneration : official publication of the Wound Healing Society [and] the European Tissue Repair Society
دوره 13 2 شماره
صفحات -
تاریخ انتشار 2005