Dinar Serkan, Agir Hakan, Sen Cenk, Yazir Yusufhan, Dalcik Hakki, Unal Cigdem
Department of Plastic and Reconstructive Surgery, Kocaeli University Hospital, Umuttepe Kampusu, Izmit 41000, Turkey.
Burns. 2008 Jun;34(4):467-73. doi: 10.1016/j.burns.2007.04.014. Epub 2007 Sep 25.
Effects of hyperbaric oxygen (HBO) therapy on biointegration of porous polyethylene (PP) implanted beneath dorsal burn scar and normal skin were experimentally examined in Sprague-Dawley rats. In Group One (n=20), daily HBO treatments were given after the implantation of PP material under dorsal burn scar, whereas, in Group Two (n=20) no treatment was given following the same surgical procedure. In Group Three (n=20), PP was placed under dorsal normal skin and subsequently HBO therapy protocol was applied while Group Four (n=20) stayed without HBO treatment after the implantation. One, 2, 3 and 4 weeks after the implantations, sections were respectively taken from five rats from each group. Biointegration process and effects of HBO therapy were evaluated microscopically and the ratio of fibrovascular ingrowth (FVI) was determined for each rat. The results showed significantly superior FVI in Group One compared to Group Two and again FVI into PP under normal skin treated with HBO revealed better results against Group Four (p<0.05). Well-vascularized capsule formation and tissue integration was delayed both in Group Two and in Group Three in the first 3 weeks. In conclusion, HBO therapy enhances biointegration of PP in hypoxic burn scar areas via improving collagen synthesis and neovascularization; otherwise, it apparently delays tissue ingrowth into porous structure implanted in normal healthy tissues.
在斯普拉格-道利大鼠身上通过实验研究了高压氧(HBO)疗法对植入背部烧伤瘢痕和正常皮肤下方的多孔聚乙烯(PP)生物整合的影响。在第一组(n = 20)中,在背部烧伤瘢痕下植入PP材料后进行每日HBO治疗,而在第二组(n = 20)中,在相同手术操作后不进行治疗。在第三组(n = 20)中,将PP置于背部正常皮肤下,随后应用HBO治疗方案,而第四组(n = 20)在植入后不进行HBO治疗。植入后1、2、3和4周,分别从每组的五只大鼠身上取材。通过显微镜评估生物整合过程和HBO疗法的效果,并测定每只大鼠的纤维血管长入(FVI)比率。结果显示,与第二组相比,第一组的FVI明显更高,并且在正常皮肤下用HBO治疗的PP中的FVI与第四组相比显示出更好的结果(p < 0.05)。在最初的3周内,第二组和第三组中血管化良好的包膜形成和组织整合均延迟。总之,HBO疗法通过改善胶原蛋白合成和新血管形成来增强PP在缺氧烧伤瘢痕区域的生物整合;否则,它显然会延迟组织长入植入正常健康组织的多孔结构中。