首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Protection by vascular endothelial growth factor against sinusoidal endothelial damage and apoptosis induced by cold preservation.
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Protection by vascular endothelial growth factor against sinusoidal endothelial damage and apoptosis induced by cold preservation.

机译:血管内皮生长因子的保护作用,可防止冷藏引起的窦性内皮损伤和凋亡。

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BACKGROUND: It is well known that sinusoidal endothelial cell (SEC) damage during cold preservation of liver tissue is closely involved in early graft failure. The objective of this study was to investigate the involvement of apoptosis in the SEC damage induced by cold preservation and to demonstrate the protective effect of vascular endothelial growth factor (VEGF) on SEC injury, including apoptotic changes. METHODS: Isolated SECs and liver tissue of Wistar rats were cold-preserved in University of Wisconsin (UW) solution, and the protective effect of VEGF was then investigated. Isolated SECs were cultured for 24 hr, and divided into the following 3 groups: Group A, in which the cells were cultured for an additional 27 hr, Group B, in which the cells were cold-preserved in UW solution for 3 hr, and then recultured for 24 hr, and Group C, in which 20 ng/ml of VEGF was added to both the culture medium and the UW solution of cells cultured according to the Group B protocol. Each group of SECs was morphologically examined using the phase contrast microscopic method and the transmission electron microscopic method (TEM), and quantitatively analyzed using the WST-1 assay. Rat livers were cold-preserved in UW solution and divided into the VEGF(+) group and the VEGF(-) group, depending on whether VEGF was added or not. Each group of livers were analyzed by scanning electron microscopic method (SEM) after 24 hr of preservation. The hyaluronic acid uptake rate (HUR) was also determined after 6 hr of preservation. After 24 hr of preservation and 6 hr of reperfusion, tissues were examined by TEM and by the terminal deoxynucleotidyl transferase d-uridine triphosphate nick end labeling (TUNEL) assay. RESULTS: The phase contrast microscopic method and the WST-1 assay showed a protective effect of VEGF against the injury to isolated SECs during cold preservation and subsequent reculturing. Apoptosis was detected immediately by TEM after isolation of SECs, and the number of apoptotic cells increased with the incubation time. This increase was accelerated after cold preservation. The scanning electron microscopic method and the hyaluronic acid uptake rate showed a protective effect of VEGF against SEC damage in the cold-preserved livers. In the liver tissue, the TEM and the TUNEL assay detected apoptosis of SECs only after cold preservation and subsequent reperfusion. VEGF suppressed the apoptosis of SECs induced by cold preservation in both isolated cells and liver tissue. CONCLUSIONS: We demonstrated that SEC damage in the cold preservation of liver tissue was caused mainly by apoptosis, which required subsequent reperfusion. Moreover, isolated SECs showed spontaneous occurrence of apoptotic changes during culture, and these changes were accelerated by the preceding cold preservation. This is the first report to demonstrate the apoptotic changes of SECs seen here were inhibited by VEGF.
机译:背景:众所周知,肝组织低温保存过程中的正弦曲线内皮细胞(SEC)损伤与早期移植失败密切相关。这项研究的目的是调查细胞凋亡与冷藏引起的SEC损伤的关系,并证明血管内皮生长因子(VEGF)对SEC损伤的保护作用,包括凋亡的改变。方法:在威斯康星大学(UW)溶液中冷保存Wistar大鼠的分离的SEC和肝组织,然后研究VEGF的保护作用。将分离的SECs培养24小时,分为以下3组:A组,将细胞再培养27小时; B组,将细胞在UW溶液中冷保存3小时,和然后再培养24小时,再加入C组,其中将20 ng / ml VEGF添加到培养基和根据B组规程培养的细胞的UW溶液中。使用相差显微镜法和透射电子显微镜法(TEM)对每组SEC进行形态学检查,并使用WST-1分析进行定量分析。将大鼠肝脏在UW溶液中冷保存,根据是否添加VEGF分为VEGF(+)组和VEGF(-)组。保存24小时后,通过扫描电子显微镜法(SEM)分析每组肝脏。保存6小时后,还测定了透明质酸摄取率(HUR)。保存24小时和6小时再灌注后,通过TEM和末端脱氧核苷酸转移酶d-尿苷三磷酸缺口末端标记(TUNEL)检测组织。结果:相差显微镜法和WST-1测定法显示VEGF在冷藏和随后的再培养过程中对分离的SEC的损伤具有保护作用。分离SEC后立即通过TEM检测凋亡,并且凋亡细胞的数目随孵育时间的增加而增加。冷藏后,这种增加加速了。扫描电子显微镜法和透明质酸摄取率显示了在冷保存的肝脏中VEGF对SEC损伤的保护作用。在肝脏组织中,TEM和TUNEL分析仅在冷藏和随后的再灌注后才检测到SEC的凋亡。 VEGF抑制了低温保存在分离的细胞和肝脏组织中诱导的SEC凋亡。结论:我们证明肝脏组织冷保存中的SEC损伤主要是由细胞凋亡引起的,需要随后的再灌注。而且,分离的SEC显示出在培养过程中细胞凋亡的自发发生,并且这些变化通过先前的冷藏而加速。这是第一份证明VEGF抑制此处观察到的SEC凋亡变化的报告。

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