Vascularized Composite Allotransplantation Laboratory, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.
Shriners Children's Boston, Boston, MA, USA.
Sci Rep. 2024 Jun 1;14(1):12618. doi: 10.1038/s41598-024-63041-8.
Vascularized composite allotransplantations are complex procedures with substantial functional impact on patients. Extended preservation of VCAs is of major importance in advancing this field. It would result in improved donor-recipient matching as well as the potential for ex vivo manipulation with gene and cell therapies. Moreover, it would make logistically feasible immune tolerance induction protocols through mixed chimerism. Supercooling techniques have shown promising results in multi-day liver preservation. It consists of reaching sub-zero temperatures while preventing ice formation within the graft by using various cryoprotective agents. By drastically decreasing the cell metabolism and need for oxygen and nutrients, supercooling allows extended preservation and recovery with lower ischemia-reperfusion injuries. This study is the first to demonstrate the supercooling of a large animal model of VCA. Porcine hindlimbs underwent 48 h of preservation at - 5 °C followed by recovery and normothermic machine perfusion assessment, with no issues in ice formation and favorable levels of injury markers. Our findings provide valuable preliminary results, suggesting a promising future for extended VCA preservation.
血管化复合组织同种异体移植是一种复杂的手术,对患者的功能有重大影响。延长 VCAs 的保存时间对于推进这一领域具有重要意义。这将有助于改善供体与受体的匹配,以及通过基因和细胞治疗进行离体操作的潜力。此外,它还可以通过混合嵌合体实现免疫耐受诱导方案。在多日肝脏保存中,超冷却技术已显示出良好的效果。该技术通过使用各种保护剂来达到亚低温,同时防止移植物内形成冰。通过大幅降低细胞代谢以及对氧气和营养物质的需求,超冷却可以延长保存时间并减少缺血再灌注损伤。本研究首次证明了大型 VCA 动物模型的超冷却。猪后肢在-5°C 下保存 48 小时,然后进行恢复和常温机器灌注评估,未出现冰形成问题,且损伤标志物水平良好。我们的研究结果提供了有价值的初步结果,表明延长 VCAs 保存时间具有广阔的前景。