From the Department of Orthopedic Surgery, University of Michigan Health System, Ann Arbor, Michigan.
Department of Surgery, University of Michigan Health System, Ann Arbor, Michigan.
ASAIO J. 2019 Feb;65(2):167-172. doi: 10.1097/MAT.0000000000000786.
Ex-situ perfusion (ESP) is a promising method in preserving vascularized composite tissue allografts (VCAs) with potential to widen donor procurement to larger geographic areas. To optimize the method of preservation, we developed a small animal model to conduct biomolecular investigations. Twenty rat hind limbs (18.2 ± 1.3 g) were procured and connected to our custom-made ESP system. Perfusion pressure and flow parameters were measured with hourly blood gas analysis under near-normothermic (30-35˚C) conditions. Perfusate was prepared with swine hemoglobin (6-9 g/dL) and STEEN Solution. After 6 hours of perfusion, gastrocnemius muscles were evaluated for their histology and metabolomic profiling. Following 3 sets of experiments, perfusion was maintained at an average flow of 0.9 ± 0.24 mL/min and resulted in lactate levels of 3.78 ± 1.02 mmol/L. Metabolomic analysis revealed maintained cellular energy stores (total adenylates perfusion 0.698 ± 0.052 versus baseline 0.685 ± 0.091 umols/ug, p = 0.831), and histologic analysis revealed no evidence of barotrauma or myodegeneration. Rat hind limbs were viable after 6 hours of ESP on our miniaturized ESP system. This study is the first to document the ex-situ hind limb perfusion platform on a rodent model. These experimental findings have potential to guide future research to extend the viable duration of VCA preservation.
在体保存(ESP)是保存血管化复合组织同种异体移植物(VCAs)的一种很有前途的方法,有可能将供体采集范围扩大到更大的地理区域。为了优化保存方法,我们开发了一种小动物模型来进行生物分子研究。20 只大鼠后肢(18.2±1.3g)被采集并连接到我们定制的 ESP 系统上。在接近正常体温(30-35°C)条件下,每小时进行血气分析以测量灌注压力和流量参数。灌注液由猪血红蛋白(6-9g/dL)和 STEEN 溶液制成。灌注 6 小时后,评估腓肠肌的组织学和代谢组学特征。经过 3 组实验,灌注以平均流量 0.9±0.24mL/min 维持,并导致乳酸水平达到 3.78±1.02mmol/L。代谢组学分析显示细胞能量储备得到维持(总腺苷酸灌注 0.698±0.052 与基线 0.685±0.091umols/ug 相比,p=0.831),组织学分析显示没有气压伤或肌退行性变的证据。在我们的小型 ESP 系统上进行 6 小时 ESP 后,大鼠后肢仍存活。这项研究首次记录了在啮齿动物模型上的离体后肢灌注平台。这些实验结果有可能为延长 VCAs 保存的有效时间提供未来研究的指导。