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首页> 外文期刊>American Journal of Physiology >Ephrin B2/EphB4 pathway in hepatic stellate cells stimulates Erk-dependent VEGF production and sinusoidal endothelial cell recruitment.
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Ephrin B2/EphB4 pathway in hepatic stellate cells stimulates Erk-dependent VEGF production and sinusoidal endothelial cell recruitment.

机译:肝星状细胞中的Ephrin B2 / EphB4途径刺激ERK依赖的VEGF生产和正弦内皮细胞募集。

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Chemotaxis signals between hepatic stellate cells (HSC) and sinusoidal endothelial cells (SEC) maintain hepatic vascular homeostasis and integrity and also regulate changes in sinusoidal structure in response to liver injury. Our prior studies have demonstrated that the bidirectional chemotactic signaling molecules EphrinB2 and EphB4 are expressed in HSC. The aim of our present study was to explore whether and how the EphrinB2/EphB4 system in HSC could promote SEC recruitment, which is essential for sinusoidal structure and remodeling. Stimulation of human HSC (hHSC) with chimeric agonists (2 microg/ml) of either EphrinB2 or EphB4 (EphrinB2 Fc or EphB4 Fc, respectively) significantly increased VEGF mRNA levels in hHSC as assessed by quantitative PCR, with respective small interfering RNAs for EphrinB2 and EphB4 inhibiting this increase (P < 0.05, n = 3). EphrinB2 agonist-induced increase in VEGF mRNA levels in hHSC was associated with increased phosphorylation of Erk and was significantly blocked by U0126 (20 microM), an inhibitor of MEK, which is a kinase upstream from Erk (P < 0.05, n = 3). The EphB4 agonist also significantly increased human VEGF promoter activity (P < 0.05, n = 3) as assessed by promoter reporter luciferase assay in transfected LX2-HSC. This was associated with upregulation of the vasculoprotective transcription factor, Kruppel-like factor 2 (KLF2). In Boyden chamber assays, conditioned media from hHSC stimulated with agonists of EphrinB2 or EphB4 increased SEC chemotaxis in a VEGF-dependent manner, compared with control groups that included basal media with agonists of EphrinB2, EphB4, or HSC-conditioned media from HSC in absence of agonist stimulation (P < 0.05, n = 3). EphB4 expression was detected in situ within liver sinusoidal vessels of rats after carbon tetrachloride-induced liver injury. In summary, activation of the EphrinB2/EphB4 signaling pathway in HSC promotes chemotaxis of SEC through a pathway that involves Erk, KLF2, and VEGF. These studies identify EphrinB2 or EphB4 as a key intermediary that links HSC signal transduction pathways with angiogenesis and sinusoidal remodeling.
机译:肝星状细胞(HSC)和正弦内皮细胞(SEC)之间的趋化性信号维持肝血管稳态和完整性,并且还对肝损伤的反应调节正弦结构的变化。我们的先前研究表明,双向化学信号分子EphrinB2和EphB4在HSC中表达。我们现在的研究的目的是探索HSC中的EphrinB2 / EPHB4系统是否以及如何促进SEC招募,这对于正弦结构和重塑至关重要。通过定量PCR评估的HHSC中的嵌合激动剂(2 microg / mL)与嵌合激动剂(2微孔/ mL)的人HSC(HHSC)的刺激刺激HHSC中的VEGF mRNA水平显着增加,相应的小干扰RNA用于EphrinB2和EphB4抑制这种增加(p <0.05,n = 3)。 HHSC中VEGF mRNA水平的EphrinB2激动剂诱导的HHSC mRNA水平的增加与ERK的磷酸化增加有关,并且由U0126(20微米)显着阻断,兆克抑制剂,其是ERK上游的激酶(P <0.05,N = 3) 。通过转染的LX2-HSC中的启动子报告称荧光素酶测定评估,EphB4激动剂也显着增加人VEGF启动子活性(P <0.05,N = 3)。这与血管保护转录因子,Kruppel样因子2(KLF2)的上调有关。在Boyden室测定中,HHSC的调节培养基刺激ephrinb2或Ephb4的激动剂,与VEGF依赖性方式增加了SEC Chemotaxis,与包含来自HSC的ephrinb2,Ephb4或Hsc条件培养基的基础培养基的基础培养基激动剂刺激(p <0.05,n = 3)。在四氯化碳诱导的肝损伤后,原位检测EphB4表达在大鼠肝正弦血管内。总之,HSC中的EphrinB2 / EphB4信号传导途径的激活通过涉及ERK,KLF2和VEGF的途径促进SEC的趋化性。这些研究将EphrinB2或EphB4鉴定为关键中间体,其将HSC信号转导途径与血管生成和正弦重塑联系起来。

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