Hansbrough J F, Cooper M L, Cohen R, Spielvogel R, Greenleaf G, Bartel R L, Naughton G
Department of Surgery, University of California, San Diego 92103.
Surgery. 1992 Apr;111(4):438-46.
Meshed, expanded split-thickness skin grafts (MSTSG) frequently achieve poor results when used to cover full-thickness wounds. Poor cosmetic and functional results occur in part because the epithelium that grows across the skin graft interstices lacks a dermis. We used a living dermal replacement composed of either polyglycolic acid (PGA) or polyglactin-910 (PGL) mesh containing confluent, cultured human fibroblasts. These grafts were applied to full-thickness wounds on athymic mice; widely expanded, 3:1 ratio human MSTSG was then placed over the dermal graft. Histologic examination of wounds during a 99-day period after graft placement showed that PGA/PGL-fibroblast grafts vascularized to the wound, and the MSTSG simultaneously vascularized to the PGA/PGL-fibroblast graft. Epithelialization from the MSTSG bridges proceeded rapidly across the surface of the PGA/PGL-fibroblast grafts, resulting in an epithelialized layer that covered a densely cellular substratum that resembled dermis. Basement membrane formation at the dermal-epidermal junction of the epithelialized interstices was confirmed by immunohistochemical microscopy. Minimal inflammatory reaction to the PGA/PGL-fibroblast grafts was seen. Grafts composed of PGA or PGL biodegradable meshes combined with cultured fibroblasts vascularize in full-thickness wounds, resulting in formation of organized tissue beneath the epithelialized surface that resembles dermis.
网状、扩张的中厚皮片(MSTSG)用于覆盖全层伤口时,效果往往不佳。美容和功能效果欠佳,部分原因是跨越皮片间隙生长的上皮缺乏真皮。我们使用了一种由聚乙醇酸(PGA)或聚乳酸-910(PGL)网与汇合的培养人成纤维细胞组成的活性真皮替代物。将这些移植物应用于无胸腺小鼠的全层伤口;然后将广泛扩张的、比例为3:1的人MSTSG置于真皮移植物上。移植后99天内对伤口进行组织学检查发现,PGA/PGL-成纤维细胞移植物向伤口血管化,同时MSTSG向PGA/PGL-成纤维细胞移植物血管化。来自MSTSG桥的上皮化迅速穿过PGA/PGL-成纤维细胞移植物表面,形成一层上皮化层,覆盖着类似真皮的致密细胞基质。通过免疫组织化学显微镜证实了上皮化间隙的真皮-表皮交界处有基底膜形成。对PGA/PGL-成纤维细胞移植物的炎症反应极小。由PGA或PGL可生物降解网与培养的成纤维细胞组成的移植物在全层伤口中血管化,导致上皮化表面下方形成类似真皮的有组织的组织。