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首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Differential in vivo recovery of sinusoidal endothelial cells, hepatocytes, and Kupffer cells after cold preservation and liver transplantation in rats.
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Differential in vivo recovery of sinusoidal endothelial cells, hepatocytes, and Kupffer cells after cold preservation and liver transplantation in rats.

机译:冷藏和肝移植后大鼠体内窦窦内皮细胞,肝细胞和库普弗细胞的体内差异回收。

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摘要

BACKGROUND: The injury resulting from cold preservation/reperfusion primarily affects sinusoidal endothelial cells, while hepatocytes are thought to be less vulnerable; morphological changes and increased cytokine release suggest that Kupffer cells are activated. We evaluated the extent of functional damage to the different cell types in the liver after cold preservation and transplantation. Additionally, we analyzed in vivo the patterns of functional recovery of all three cell types over the first week after transplantation in Lewis rats. METHODS: We evaluated the in vivo uptake of hyaluronic acid, indocyanine green, and radio-labeled sulphur colloid to assess the function of sinusoidal endothelial cells, hepatocytes, and Kupffer cells, respectively. Measurements were performed immediately after transplantation using syngeneic grafts preserved in University of Wisconsin solution for different periods. Functional recovery was monitored in animals receiving grafts preserved for 24 hr over the first postoperative week. RESULTS: We found that hepatocyte were less affected compared with the profoundly damaged endothelial cells. The phagocytic ability of Kupffer cells was, however, also seriously compromised, which suggests a selective down-regulation. Functional recovery occurs in a differential manner during the first postoperative week starting with hepatocytes followed by sinusoidal endothelial cells. Phagocytic function further deteriorates after transplantation before showing improvement. CONCLUSIONS: In viable liver grafts, all cell types recover from preservation/reperfusion injury by the end of the first week after transplantation. The differential time courses of the recovery suggest that successful sinusoidal endothelial cell recovery may depend upon prior hepatocyte regeneration and may involve a paracrine interaction, via cytokines and growth factors.
机译:背景:冷保存/再灌注引起的损伤主要影响正弦血管内皮细胞,而肝细胞被认为较不易受损。形态变化和增加的细胞因子释放表明库普弗细胞被激活。我们评估了冷藏保存和移植后肝脏中不同细胞类型的功能损伤程度。此外,我们在刘易斯大鼠移植后的第一周体内分析了所有三种细胞类型的功能恢复模式。方法:我们评估了透明质酸,吲哚菁绿和放射性标记的硫胶体在体内的吸收,以分别评估正弦血管内皮细胞,肝细胞和库普弗细胞的功能。移植后立即使用在威斯康星大学溶液中保存的同系移植物进行不同时期的测量。在术后第一周内,对接受移植物保存24小时的动物进行功能恢复监测。结果:我们发现与严重受损的内皮细胞相比,肝细胞受到的影响较小。然而,库普弗细胞的吞噬能力也受到严重损害,这表明选择性下调。在术后第一个星期内,功能恢复以不同的方式发生,首先是肝细胞,然后是窦状内皮细胞。吞噬功能在移植后进一步恶化,直至表现出改善。结论:在可行的肝移植物中,所有细胞类型均在移植后第一周结束时从保存/再灌注损伤中恢复。恢复的不同时程表明,成功的正弦曲线内皮细胞恢复可能取决于先前的肝细胞再生,并且可能通过细胞因子和生长因子参与旁分泌相互作用。

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