首页> 外文期刊>Stem cells and development >Canonical transient receptor potential 3 channel triggers vascular endothelial growth factor-induced intracellular Ca2+ oscillations in endothelial progenitor cells isolated from umbilical cord blood
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Canonical transient receptor potential 3 channel triggers vascular endothelial growth factor-induced intracellular Ca2+ oscillations in endothelial progenitor cells isolated from umbilical cord blood

机译:规范瞬态受体电位3通道触发从脐带血分离的内皮祖细胞中血管内皮生长因子诱导的细胞内Ca2 +振荡

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Endothelial colony-forming cells (ECFCs) are the only endothelial progenitor cells (EPCs) that are capable of acquiring a mature endothelial phenotype. ECFCs are mainly mobilized from bone marrow to promote vascularization and represent a promising tool for cell-based therapy of severe ischemic diseases. Vascular endothelial growth factor (VEGF) stimulates the proliferation of peripheral blood-derived ECFCs (PB-ECFCs) through oscillations in intracellular Ca2+ concentration ([Ca2+]i). VEGF-induced Ca2+ spikes are driven by the interplay between inositol-1,4,5-trisphosphate (InsP3)-dependent Ca2+ release and store-operated Ca2+ entry (SOCE). The therapeutic potential of umbilical cord blood-derived ECFCs (UCB-ECFCs) has also been shown in recent studies. However, VEGF-induced proliferation of UCB-ECFCs is faster compared with their peripheral counterpart. Unlike PB-ECFCs, UCB-ECFCs express canonical transient receptor potential channel 3 (TRPC3) that mediates diacylglycerol-dependent Ca2+ entry. The present study aimed at investigating whether the higher proliferative potential of UCB-ECFCs was associated to any difference in the molecular underpinnings of their Ca 2+ response to VEGF. We found that VEGF induces oscillations in [Ca2+]i that are patterned by the interaction between InsP3-dependent Ca2+ release and SOCE. Unlike PB-ECFCs, VEGF-evoked Ca2+ oscillations do not arise in the absence of extracellular Ca2+ entry and after pharmacological (with Pyr3 and flufenamic acid) and genetic (by employing selective small interference RNA) suppression of TRPC3. VEGF-induced UCB-ECFC proliferation is abrogated on inhibition of the intracellular Ca2+ spikes. Therefore, the Ca 2+ response to VEGF in UCB-ECFCs is shaped by a different Ca 2+ machinery as compared with PB-ECFCs, and TRPC3 stands out as a promising target in EPC-based treatment of ischemic pathologies.
机译:内皮集落形成细胞(ECFC)是唯一能够获得成熟的内皮表型的内皮祖细胞(EPC)。 ECFC主要是从骨髓动员来促进血管生成,并代表了基于细胞的严重缺血性疾病治疗的有前途的工具。血管内皮生长因子(VEGF)通过细胞内Ca2 +浓度([Ca2 +] i)的振荡刺激外周血来源的ECFC(PB-ECFCs)的增殖。 VEGF诱导的Ca2 +尖峰由肌醇1,4,5-三磷酸(InsP3)依赖性Ca2 +释放与存储操作的Ca2 +进入(SOCE)之间的相互作用驱动。最近的研究还显示了脐带血来源的ECFC(UCB-ECFC)的治疗潜力。但是,与外周血相比,VEGF诱导的UCB-ECFCs增殖更快。与PB-ECFC不同,UCB-ECFC表达规范的瞬时受体电位通道3(TRPC3),介导二酰基甘油依赖性Ca2 +进入。本研究旨在调查UCB-ECFCs较高的增殖潜力是否与其Ca 2+对VEGF反应的分子基础的任何差异有关。我们发现VEGF诱导[Ca2 +] i中的振荡,这是由InsP3依赖性Ca2 +释放与SOCE之间的相互作用所形成的。与PB-ECFC不同,在没有细胞外Ca2 +进入的情况下,并且在药理学(与Pyr3和氟苯那酸)和遗传(通过采用选择性小干扰RNA)抑制后,VEGF引起的Ca2 +振荡不会出现。 VEGF诱导的UCB-ECFC增殖在抑制细胞内Ca2 +峰值时被废止。因此,与PB-ECFC相比,UCB-ECFC中Ca 2+对VEGF的反应是由不同的Ca 2+机制决定的,而TRPC3在基于EPC的缺血性疾病治疗中脱颖而出。

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