Department of SurgeryUniversity of Maryland School of Medicine Baltimore MD 21201 USA.
Center for Vascular and Inflammatory DiseasesUniversity of Maryland School of Medicine Baltimore MD 21201 USA.
IEEE J Transl Eng Health Med. 2023 Jan 25;11:145-150. doi: 10.1109/JTEHM.2023.3239790. eCollection 2023.
Increasingly complex and long-range donor organ allocation routes coupled with implementation of unmanned aerial vehicles (UAVs) have prompted investigations of the conditions affecting organs once packaged for shipment. Our group has previously demonstrated that different modes of organ transport exert unique environmental stressors, in particular vibration. Using a mouse heart transplant model, we demonstrated that vibrational forces exert tangible, cellular effects in the form of cardiomyocyte apoptosis and cytoskeletal derangement. Functionally, these changes translated into accelerated allograft loss. Notably, administration of an apoptosis inhibitor, Z-VAD-FMK, helped to ameliorate the detrimental cellular and functional effects of mechanical vibration in a dose-dependent manner. These findings constitute one of the first reports of the negative impact of transit environment on transplant outcomes, a contributing mechanism underpinning this effect, and a potential agent to prophylax against this process. Given current limitations in measuring donor organ transit environments in situ, further study is required to better characterize the impact of transport environment and to potentially improve the care of donor organs during shipment. Clinical and Translational Impact Statement: We show that apoptosis inhibitor, Z-VAD-FMK, ameliorated transport-related vibrational stress in murine heart transplants, which presents a potential therapeutic or preservation solution additive for future use in transporting donor organs.
不断增加的复杂和远程供体器官分配途径,加上无人驾驶飞行器 (UAV) 的实施,促使人们研究了影响包装后运输器官的条件。我们的研究小组之前已经证明,不同的器官运输方式会产生独特的环境应激源,特别是振动。我们使用小鼠心脏移植模型证明,振动力以心肌细胞凋亡和细胞骨架紊乱的形式产生明显的细胞效应。从功能上看,这些变化导致同种异体移植物更快丧失功能。值得注意的是,凋亡抑制剂 Z-VAD-FMK 的给药有助于以剂量依赖的方式改善机械振动的有害细胞和功能效应。这些发现构成了转运环境对移植结果的负面影响的首批报告之一,这是该效应的潜在机制,也是预防该过程的潜在手段。鉴于目前在原位测量供体器官转运环境的局限性,需要进一步研究以更好地描述运输环境的影响,并有可能在运输过程中改善供体器官的护理。临床和转化影响声明:我们表明,凋亡抑制剂 Z-VAD-FMK 改善了小鼠心脏移植中的运输相关振动应激,这为未来运输供体器官提供了一种潜在的治疗或保存解决方案添加剂。