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胶原蛋白底物的戊二醛交联可抑制移植到无胸腺小鼠的皮肤替代物中的降解。

Glutaraldehyde crosslinking of collagen substrates inhibits degradation in skin substitutes grafted to athymic mice.

作者信息

Harriger M D, Supp A P, Warden G D, Boyce S T

机构信息

Department of Surgery, University of Cincinnati, Ohio 45229, USA.

出版信息

J Biomed Mater Res. 1997 May;35(2):137-45. doi: 10.1002/(sici)1097-4636(199705)35:2<137::aid-jbm1>3.0.co;2-o.

Abstract

Collagen-based implants have been described as vehicles for transplantation of cultured skin cells for treatment of burn wounds. To optimize vascularization and repair of connective tissue, collagen solubility and glutaraldehyde crosslinking were evaluated. Cultured skin substitutes consisted of human keratinocytes and fibroblasts attached to collagen-glycosaminoglycan substrates that were prepared from acid-insoluble, or partially soluble collagen. Substrates were crosslinked with 0% or 0.25% glutaraldehyde, populated with cells, and grafted to full-thickness wounds on athymic mice (n = 6/condition). After 6 weeks, the wound area was measured by planimetry, and healed wounds were scored by histochemistry for immunoreactivity to HLA-ABC and bovine collagen. Data analysis shows that crosslinking of collagen implants with glutaraldehyde is associated (p < 0.001) with detection of the implant. No association was found between solubility of bovine collagen and immunodetection. Epidermis of all wounds was positive for HLA-ABC, and no differences in wound areas were found. These results suggest that glutaraldehyde crosslinking of collagen implants decreases the rate of biodegradation. Delayed degradation of crosslinked collagen may result clinically in reduced engraftment of skin substitutes.

摘要

基于胶原蛋白的植入物已被描述为用于移植培养的皮肤细胞以治疗烧伤创面的载体。为了优化结缔组织的血管化和修复,对胶原蛋白的溶解性和戊二醛交联进行了评估。培养的皮肤替代物由附着在胶原蛋白-糖胺聚糖基质上的人角质形成细胞和成纤维细胞组成,这些基质由酸不溶性或部分溶性胶原蛋白制备而成。将基质用0%或0.25%的戊二醛交联,接种细胞,并移植到无胸腺小鼠的全层伤口上(每组n = 6)。6周后,通过平面测量法测量伤口面积,并通过组织化学对愈合伤口进行评分,以检测其对HLA-ABC和牛胶原蛋白的免疫反应性。数据分析表明,胶原蛋白植入物与戊二醛交联与植入物的检测相关(p < 0.001)。未发现牛胶原蛋白的溶解性与免疫检测之间存在关联。所有伤口的表皮对HLA-ABC均呈阳性,且伤口面积未发现差异。这些结果表明,胶原蛋白植入物的戊二醛交联降低了生物降解率。交联胶原蛋白的延迟降解在临床上可能导致皮肤替代物的植入减少。

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