Filz von Reiterdank Irina, Taggart McLean S, McCarthy Michelle E, Dinicu Antonia T, Uygun Basak E, Coert J Henk, Mink van der Molen Aebele B, Uygun Korkut
Center for Engineering for Medicine and Surgery, Department of Surgery, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts; Shriners Children's Boston, Boston, Massachusetts; Department of Plastic, Reconstructive, and Hand Surgery, University Medical Center Utrecht, Utrecht, The Netherlands.
Center for Engineering for Medicine and Surgery, Department of Surgery, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts; Shriners Children's Boston, Boston, Massachusetts.
Transplant Proc. 2024 Nov;56(9):2039-2045. doi: 10.1016/j.transproceed.2024.10.006. Epub 2024 Oct 28.
The field of vascularized composite allograft (VCA) transplantation has seen steady, rapid growth, with new innovations driving the evolution from experimental procedures to more standardized therapies. With this expansion comes challenges with graft allocation, preservation, and postoperative graft rejection. Here, we outline the first example of subzero nonfreezing (SZNF), supercooled storage of a whole rat hindlimb with orthotopic transplantation. Rat hindlimbs were procured, loaded, and supercooled for 48 hours at -4°C (n = 4), after which, they were recovered. The loading and recovery phase were performed using subnormothermic machine perfusion (SNMP) during which viability markers (glucose and oxygen consumption, lactate, and resistance) were tracked. Control limbs underwent static cold storage (SCS). After ex vivo validation, the model was piloted in a transplant model, comparing 48 hours of SZNF (n = 1), 48 hours of SCS (n = 1), and 72 hours of SCS (n = 1), which demonstrated no survival beyond postoperative day 4 in the SCS models, and survival until the end of study (postoperative day [POD] 28) in the SZNF model. This study demonstrates the promise of this model in future studies on long-term VCA preservation.
血管化复合异体移植(VCA)领域一直在稳步、快速地发展,新的创新推动着该领域从实验性手术向更标准化的治疗方法演变。随着这一领域的扩展,在移植物分配、保存和术后移植物排斥方面出现了挑战。在此,我们概述了首例采用零下非冷冻(SZNF)、过冷保存并原位移植的全大鼠后肢模型。获取大鼠后肢,进行加载处理,并在-4°C下过冷保存48小时(n = 4),之后进行恢复处理。加载和恢复阶段采用亚常温机器灌注(SNMP),在此过程中追踪活力指标(葡萄糖和氧气消耗、乳酸和阻力)。对照肢体进行静态冷藏(SCS)。在体外验证后,该模型在移植模型中进行试点研究,比较48小时的SZNF(n = 1)、48小时的SCS(n = 1)和72小时的SCS(n = 1),结果表明SCS模型在术后第4天之后无一存活,而SZNF模型存活至研究结束(术后第28天)。这项研究证明了该模型在未来长期VCA保存研究中的前景。