Cahn Frederick, Kyriakides Themis R
Biomedical Strategies Inc, San Diego, CA, USA.
Biomed Mater. 2008 Sep;3(3):034110. doi: 10.1088/1748-6041/3/3/034110. Epub 2008 Aug 8.
Generation of a stable interface between soft tissues and biomaterials could improve the function of transcutaneous prostheses, primarily by minimizing chronic infections. We hypothesized that inclusion of non-biodegradable biomaterials in an artificial skin substrate would improve integration of the neodermis. In the present study, we compared the biocompatibility of an experimental substrate, consisting of collagen and glycosylaminoglycans, with commercially available artificial skin of similar composition. By utilizing a mouse excisional wound model, we found that the source of collagen (bovine tendon versus hide), extent of injury and wound contraction were critical determinants of inflammation and neodermis formation. Reducing the extent of injury to underlying muscle reduced inflammation and improved remodeling; the improved conditions allowed the detection of a pro-inflammatory effect of hide-derived collagen. To eliminate the complication of wound contraction, subsequent grafts were performed in guinea pigs and showed that inclusion of carbon fibers or non-degradable sutures resulted in increased foreign body response (FBR) and altered remodeling. On the other hand, inclusion of a polyester multi-stranded mesh induced a mild FBR and allowed normal neodermis formation. Taken together, our observations suggest that non-degradable biomaterials can be embedded in an artificial skin construct without compromising its ability to induce neodermis formation.
在软组织与生物材料之间生成稳定的界面,可主要通过尽量减少慢性感染来改善经皮假体的功能。我们假设在人造皮肤基质中加入不可生物降解的生物材料会改善新真皮的整合。在本研究中,我们将由胶原蛋白和糖胺聚糖组成的实验性基质的生物相容性与组成相似的市售人造皮肤进行了比较。通过利用小鼠切除伤口模型,我们发现胶原蛋白的来源(牛肌腱与牛皮)、损伤程度和伤口收缩是炎症和新真皮形成的关键决定因素。减少对深层肌肉的损伤程度可减轻炎症并改善重塑;改善后的条件使得能够检测到源自牛皮的胶原蛋白的促炎作用。为消除伤口收缩的并发症,随后在豚鼠身上进行了移植,结果表明加入碳纤维或不可降解缝线会导致异物反应(FBR)增加并改变重塑。另一方面,加入聚酯多股网会引发轻度FBR并允许正常新真皮形成。综上所述,我们的观察结果表明,不可生物降解的生物材料可嵌入人造皮肤构建体中,而不会损害其诱导新真皮形成的能力。