Ren Zhang-Yong, Wu Qiao, Pan Bing, Liu Jia-Zong, He Qiang, Lang Ren, Lyu Shao-Cheng
Department of Hepatobiliary Surgery, Beijing Chao-Yang Hospital, Capital Medical University, Beijing, China.
Beijing Organ Transplant Center, Beijing, China.
J Cell Mol Med. 2023 Aug;27(16):2362-2371. doi: 10.1111/jcmm.17822. Epub 2023 Jun 25.
Allogeneic blood vessels are regarded as one of the best natural substitutes for diseased blood vessels due to their good vascular compliance and histocompatibility. Since the supply and demand of allograft blood vessels do not always match in time and space, a good preservation scheme for isolated blood vessels is essential. The abdominal aortas of 110 male Sprague-Dawley (SD) rats were randomly divided into three groups, including cold storage group (4°C) (CSG), frozen storage group (FSG) and ambient storage group (25 ± 2°C) (ASG). Seven time points of preservation for 1, 3, 5, 7, 14, 30 and 90 days were set for detection. The changes in vascular physiological function were evaluated by MTT test and vasoconstriction ability detection, and the changes in vascular wall structure were evaluated by the tension tolerance test and pathological staining. The vascular function of CSG was better than FSG within first the 7 days, but the result was opposite since the 14th day. The vascular wall structure, collagen and elastic fibres of vessels, in CSG, showed oedema within 30 days, and continuous disintegration and rupture at 90 days. The vessel wall structure of FSG remained intact within 90 days. The tensile strength of the vessels in CSG was better than that in FSG within 5 days, and there was no statistical difference between the two groups between the 7th and 30th day, and then, the FSG was higher than CSG on the 90th day. Both cold storage and frozen storage could be applied as safe and effective preservation schemes for isolated rat artery within first 30 days. Cold storage is recommended when the storage time is <14 days, and then, frozen storage is better.
同种异体血管因其良好的血管顺应性和组织相容性而被认为是病变血管的最佳天然替代物之一。由于同种异体血管的供体和受体在时间和空间上并不总是匹配,因此,建立一种良好的血管保存方案至关重要。
将 110 只雄性 Sprague-Dawley(SD)大鼠的腹主动脉随机分为三组,包括冷藏组(4°C)(CSG)、冷冻保存组(FSG)和室温保存组(25±2°C)(ASG)。设置 1、3、5、7、14、30 和 90 天的 7 个保存时间点进行检测。通过 MTT 试验和血管收缩能力检测评估血管生理功能的变化,通过张力耐受试验和病理染色评估血管壁结构的变化。
CSG 的血管功能在前 7 天优于 FSG,但第 14 天后则相反。CSG 的血管壁结构、血管壁中的胶原和弹性纤维在 30 天内出现水肿,90 天内出现持续崩解和破裂。FSG 的血管壁结构在 90 天内保持完整。CSG 中血管的拉伸强度在前 5 天优于 FSG,第 7 天和第 30 天两组间无统计学差异,然后 FSG 在第 90 天高于 CSG。
冷储和冻存均可作为前 30 天内分离大鼠动脉的安全有效的保存方案。当保存时间<14 天时,建议采用冷储,然后采用冻存。