Department of Sensory Motor Performance Program, Rehabilitation Institute of Chicago, 345 E. Superior Str. Suite 1406, Chicago, IL 60611, USA.
J Tissue Viability. 2010 May;19(2):67-76. doi: 10.1016/j.jtv.2009.11.009. Epub 2009 Dec 16.
Many rat/mouse pressure ulcer (PU) models have been developed to test different hypotheses to gain deeper understanding of various causative risk factors, the progress of PUs, and assessing effectiveness of potential treatment modalities. The recently emphasized deep tissue injury (DTI) mechanism for PU formation has received increased attention and several studies reported findings on newly developed DTI animal models. However, concerns exist for the clinical relevance and validity of these models, especially when the majority of the reported rat PU/DTI models were not built upon SCI animals and many of the DTI research did not simulate well the clinical observation. In this study, we propose a rat PU and DTI model which is more clinically relevant by including chronic SCI condition into the rat PU model and to simulate the role of bony prominence in DTI formation by using an implant on the bone-tissue interface. Histological data and imaging findings confirmed that the condition of chronic SCI had significant effect on pressure induced tissue injury in a rat PU model and the including a simulated bony prominence in rat DTI model resulted in significantly greater injury in deep muscle tissue. Further integration of the SCI condition and the simulated bony prominence would result a rat PU/DTI model which can simulate even more accurately the clinical phenomenon and yield more clinically relevant findings.
许多大鼠/小鼠压力性溃疡 (PU) 模型已经被开发出来,以测试不同的假设,从而更深入地了解各种致病风险因素、PU 的进展,并评估潜在治疗方法的效果。最近,人们对深部组织损伤 (DTI) 机制引起的 PU 形成给予了更多关注,并且有几项研究报告了新开发的 DTI 动物模型的发现。然而,这些模型的临床相关性和有效性存在争议,特别是当大多数报告的大鼠 PU/ DTI 模型不是基于 SCI 动物建立的,并且许多 DTI 研究并没有很好地模拟临床观察。在这项研究中,我们通过将慢性 SCI 条件纳入大鼠 PU 模型,并通过在骨组织界面上使用植入物来模拟骨性突起在 DTI 形成中的作用,提出了一种更具临床相关性的大鼠 PU 和 DTI 模型。组织学数据和影像学结果证实,慢性 SCI 条件对大鼠 PU 模型中压力引起的组织损伤有显著影响,大鼠 DTI 模型中包含模拟骨性突起会导致深部肌肉组织的损伤显著增加。进一步整合 SCI 条件和模拟骨性突起将产生一种大鼠 PU/ DTI 模型,它可以更准确地模拟临床现象并产生更具临床相关性的发现。