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Sonic hedgehog is a potent chemoattractant for human monocytes: diabetes mellitus inhibits Sonic hedgehog-induced monocyte chemotaxis

机译:声波刺猬是人类单核细胞的一种强化学趋化剂:糖尿病抑制声波刺猬诱导的单核细胞的趋化性

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摘要

The aim of the present study was to evaluate the expression of hedgehog (Hh) signaling molecules and the chemotactic activity of Sonic hedgehog (Shh) in monocytes from control (CTR) and diabetic patients with or without coronary artery disease (CAD). Previously several studies demonstrated that exogenous administration of Shh can induce angiogenesis and accelerate repair of ischemic myocardium and skeletal muscles. Blood samples were collected from (1) CTR (n = 25); (2) patients with stable CAD without diabetes mellitus (CAD−DM, n = 10); and (3) with stable CAD with DM (CAD+DM, n = 15). Monocytes were isolated by Percoll gradient and subjected to PCR and chemotaxis analysis. Hh signaling molecules were expressed in human monocytes, and Shh-induced monocyte chemotaxis. Shh-stimulated migration of monocytes from CTR measured 172.5 ± 90% and a maximal stimulation was observed at Shh concentration of 1 μg/ml. However, Shh failed to induce migration of monocytes from CAD+DM (94.3 ± 27%, P < 0.001 vs. CTR). The impaired response to Shh was associated with strong transcriptional upregulation of the receptor Ptc, while expression of downstream molecules was not altered. Moreover, Ptc is strongly expressed in macrophages of human aortic atherosclerotic plaque. Thus, Shh is a potent chemoattractant for monocytes and it activates classical signaling pathways related to migration. The Shh signaling was negatively affected by DM which might be involved in the pathogenesis of DM-related complications.
机译:本研究的目的是评估对照(CTR)和患有或不患有冠状动脉疾病(CAD)的糖尿病患者单核细胞中刺猬(Hh)信号分子的表达和声波刺猬(Shh)的趋化活性。以前的几项研究表明,Shh的外源性给药可诱导血管生成并促进缺血性心肌和骨骼肌的修复。从(1)点阅率(n = 25)采集血液样本; (2)患有稳定CAD而没有糖尿病的患者(CAD-DM,n = 10); (3)使用带有DM的稳定CAD(CAD + DM,n = 15)。通过Percoll梯度分离单核细胞,并进行PCR和趋化性分析。 Hh信号分子在人单核细胞中表达,并Shh诱导单核细胞趋化性。 Shh刺激的CTR单核细胞迁移率为172.5±90%,在Shh浓度为1μg/ ml时观察到最大刺激。但是,Shh无法诱导单核细胞从CAD + DM迁移(94.3±27%,相对于CTR的P <0.001)。对Shh的应答受损与受体Ptc的强转录上调相关,而下游分子的表达未改变。此外,Ptc在人主动脉粥样硬化斑块的巨噬细胞中强烈表达。因此,Shh是单核细胞的一种强大的化学引诱剂,它可以激活与迁移有关的经典信号通路。 Shh信号受到DM的负面影响,可能与DM相关并发症的发病机制有关。

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