Nicoletti Giovanni, Brenta Federica, Bleve Mariella, Pellegatta Tommaso, Malovini Alberto, Faga Angela, Perugini Paola
Department of Clinical Surgical Diagnostic and Paediatric Sciences, University of Pavia, Italy; Advanced Technologies for Regenerative Medicine and Inductive Surgery Research Centre, University of Pavia, Italy; Plastic and Reconstructive Surgery Unit, Salvatore Maugeri Research and Care Institute, Pavia, Italy.
J Tissue Eng Regen Med. 2015 Apr;9(4):460-8. doi: 10.1002/term.1939. Epub 2014 Jun 24.
The aim of the study was an objective in vivo assessment of skin properties after reconstruction with two artificial dermal substitutes, Integra® and Hyalomatrix®. Twenty-seven patients underwent reconstruction of 36 skin-loss sites with full-thickness skin graft, split-thickness skin graft, Hyalomatrix® bioengineered skin substitute and sequential split-thickness skin graft and Integra® bioengineered skin substitute and sequential split-thickness skin graft. Objective assessments were carried out using three instrumental devices: Multi Probe Adapter System MPA; 22 MHz ultrasound skin scan; and Primos Pico for a three-dimensional (3D) skin scan. The skin parameters under study in our sample were: corneometry, transepidermal water loss, elastometry, colorimetry, skin thickness and 3D skin surface pattern. A skin reconstruction with Hyalomatrix seemed to most closely approach the hydration, transepidermal water loss and skin surface 3D pattern of normal skin. A skin reconstruction with Integra seemed to demonstrate the best skin colour feature and elastic properties. Although no statistically significant differences were observed, the descriptive analysis of the outcomes might suggest a better cell regulation, regenerated extracellular matrix and neoangiogenesis with the use of Hyalomatrix, and the formation of a more elastic regenerated dermis, with overall better physical, mechanical and optical properties, with the use of Integra.
本研究的目的是对使用两种人工真皮替代物Integra®和Hyalomatrix®进行重建后的皮肤特性进行客观的体内评估。27例患者接受了36处皮肤缺损部位的重建,采用了全厚皮片移植、中厚皮片移植、Hyalomatrix®生物工程皮肤替代物及序贯中厚皮片移植,以及Integra®生物工程皮肤替代物及序贯中厚皮片移植。使用三种仪器设备进行客观评估:多探头适配器系统MPA;22MHz超声皮肤扫描;以及用于三维(3D)皮肤扫描的Primos Pico。我们样本中所研究的皮肤参数包括:角质层水合能力、经表皮水分流失、弹性测定、比色法、皮肤厚度和3D皮肤表面形态。使用Hyalomatrix进行皮肤重建似乎最接近正常皮肤的水合作用、经表皮水分流失和皮肤表面3D形态。使用Integra进行皮肤重建似乎表现出最佳的皮肤颜色特征和弹性特性。尽管未观察到统计学上的显著差异,但对结果的描述性分析可能表明,使用Hyalomatrix时细胞调节、再生细胞外基质和新血管生成更好,而使用Integra时形成更具弹性的再生真皮,整体具有更好的物理、机械和光学特性。