Kovács Gergely Imre, Hidi László, Forró Evelin, Haluszka Dóra, Veres Dániel Sándor, Gyurok Gergő Péter, Kőszegi Andrea, Fintha Attila, Kellermayer Miklós, Sótonyi Péter
Department of Vascular and Endovascular Surgery, Semmelweis University, 1085 Budapest, Hungary.
Department of Biophysics and Radiation Biology, Semmelweis University, 1085 Budapest, Hungary.
J Funct Biomater. 2025 May 29;16(6):198. doi: 10.3390/jfb16060198.
Operating under septic conditions poses significant challenges in vascular surgery. Infection is a serious risk when handling synthetic vessel prostheses and is one of the most dreaded complications. In the event of graft infection, an infection-resistant alternative is necessary. Cryopreserved vascular allografts offer a suitable alternative to replace an infected vessel or a section of a synthetic graft. However, there are no international guidelines for the preparation, storage, and thawing of such vessel grafts. Here, we aimed to investigate the mechanical properties of human cryopreserved arteries across multiple scales, ranging from nanonewton to newton forces and identify the optimal cryogenic storage duration. Human arterial allograft samples were frozen in a slow, controlled process and stored at -80 °C. One native and four cryopreserved samples were examined during a six-month-long period. Dimethyl-sulphoxide was used as a cryoprotectant. The mechanical properties of fresh and stored samples were explored in uniaxial ring tests and nanoindentation. We found no significant changes in the multi-scale mechanical properties during the examination period. Our results indicate that the cryopreserved vascular allografts are mechanically stable for up to six months under cryogenic conditions; hence, they represent ideal samples in vascular surgery.
在脓毒症条件下进行手术给血管外科带来了重大挑战。处理人工血管假体时感染是一个严重风险,也是最可怕的并发症之一。如果发生移植物感染,就需要一种抗感染的替代方案。冷冻保存的血管同种异体移植物为替换感染血管或人工移植物的一部分提供了合适的替代方案。然而,对于此类血管移植物的制备、储存和解冻,目前尚无国际指南。在此,我们旨在研究人冷冻保存动脉在从纳牛顿到牛顿力的多个尺度上的力学性能,并确定最佳低温储存时长。人动脉同种异体移植物样本以缓慢、可控的过程冷冻,并储存在 -80°C 下。在长达六个月的时间里对一个新鲜样本和四个冷冻保存样本进行了检测。使用二甲基亚砜作为冷冻保护剂。通过单轴环向试验和纳米压痕试验探究新鲜样本和储存样本的力学性能。我们发现在检测期间多尺度力学性能没有显著变化。我们的结果表明,冷冻保存的血管同种异体移植物在低温条件下长达六个月的时间里力学性能稳定;因此,它们是血管外科理想的样本。