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首页> 外文期刊>American Journal of Physiology >Administration of r-VEGF-A prevents hepatic artery ligation-induced bile duct damage in bile duct ligated rats.
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Administration of r-VEGF-A prevents hepatic artery ligation-induced bile duct damage in bile duct ligated rats.

机译:给予r-VEGF-A可预防结扎胆管的大鼠肝动脉结扎引起的胆管损伤。

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摘要

The hepatic artery, through the peribiliary plexus, nourishes the intrahepatic biliary tree. During obstructive cholestasis, the nutritional demands of intrahepatic bile ducts are increased as a consequence of enhanced proliferation; in fact, the peribiliary plexus (PBP) displays adaptive expansion. The effects of hepatic artery ligation (HAL) on cholangiocyte functions during cholestasis are unknown, although ischemic lesions of the biliary tree complicate the course of transplanted livers and are encountered in cholangiopathies. We evaluated the effects of HAL on cholangiocyte functions in experimental cholestasis induced by bile duct ligation (BDL). By using BDL and BDL + HAL rats or BDL + HAL rats treated with recombinant-vascular endothelial growth factor-A (r-VEGF-A) for 1 wk, we evaluated liver morphology, the degree of portal inflammation and periductular fibrosis, microcirculation, cholangiocyte apoptosis, proliferation, and secretion. Microcirculation was evaluated using a scanning electron microscopy vascular corrosion cast technique. HAL induced in BDL rats 1) the disappearance of the PBP, 2) increased apoptosis and impaired cholangiocyte proliferation and secretin-stimulated ductal secretion, and 3) decreased cholangiocyte VEGF secretion. The effects of HAL on the PBP and cholangiocyte functions were prevented by r-VEGF-A, which, by maintaining the integrity of the PBP and cholangiocyte proliferation, prevents damage of bile ducts following ischemic injury.
机译:肝动脉通过胆管神经丛滋养肝内胆管树。在梗阻性胆汁淤积过程中,由于增殖的增加,肝内胆管的营养需求增加。实际上,胆管丛(PBP)显示出适应性扩张。胆汁淤积过程中肝动脉结扎(HAL)对胆管细胞功能的影响尚不清楚,尽管胆管树的缺血性病变使肝脏移植过程复杂化,并在胆管病中遇到。我们评估了HAL对胆管结扎(BDL)诱发的实验性胆汁淤积中胆管细胞功能的影响。通过使用BDL和BDL + HAL大鼠或经重组血管内皮生长因子-A(r-VEGF-A)治疗1周的BDL + HAL大鼠,我们评估了肝脏形态,门静脉炎症和导管周围纤维化程度,微循环,胆管细胞凋亡,增殖和分泌。使用扫描电子显微镜血管腐蚀铸模技术评估微循环。在BDL大鼠中诱导的HAL 1)PBP的消失,2)凋亡增加,胆管细胞增殖和分泌素刺激的导管分泌受损,3)胆管细胞VEGF分泌减少。 r-VEGF-A可防止HAL对PBP和胆管细胞功能的影响,r-VEGF-A通过维持PBP的完整性和胆管细胞增殖,防止缺血性损伤后胆管受损。

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