首页> 外文期刊>Cardiovascular Research >Impaired recruitment of HHT-1 mononuclear cells to the ischaemic heart is due to an altered CXCR4/CD26 balance.
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Impaired recruitment of HHT-1 mononuclear cells to the ischaemic heart is due to an altered CXCR4/CD26 balance.

机译:HHT-1单核细胞向缺血性心脏的募集受损是由于CXCR4 / CD26平衡的改变。

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摘要

AIMS: Mononuclear cells (MNCs) from patients with hereditary haemorrhagic telangiectasia type 1 (HHT1), a genetic disorder caused by mutations in endoglin, show a reduced ability to home to infarcted mouse myocardium. Stromal cell-derived factor-1alpha (SDF-1alpha) and the chemokine receptor CXCR4 are crucial for homing and negatively influenced by CD26. The aim of this study was to gain insight into the impaired homing of HHT1-MNCs. METHODS AND RESULTS: CXCR4 and CD26 expression on MNCs was determined by flow cytometry. Transwell migration to SDF-1alpha was used to analyse in vitro migration. Experimentally induced myocardial infarction in mice, followed by tail vein injection of MNCs, was applied to study homing in vivo. HHT1-MNCs expressed elevated levels of CXCR4, but this was counterbalanced by high levels of CD26, resulting in decreased migration towards an SDF-1alpha gradient in vitro. Migration was enhanced by inhibiting CD26 with Diprotin-A. While MNCs from healthy controls responded to transforming growth factor-beta stimulation by increasing CXCR4 and lowering CD26 expression levels, HHT1-MNCs did not react as efficiently: in particular, CD26 expression remained high. Inhibiting CD26 on MNCs increased the homing of human cells into the infarcted mouse heart. Interestingly, the defect in homing of HHT1-MNCs was restored by pre-incubating the HHT1-MNCs with Diprotin-A before injection into the tail vein. CONCLUSION: We show that a decreased homing of HHT1-MNCs is caused by an impaired ability of the cells to respond to SDF-1alpha. Our results suggest that modulating CD26 levels using inhibitors like Diprotin-A can restore homing in cases where increased expression of CD26 contributes to the underlying pathological mechanism.
机译:目的:来自遗传性出血性毛细血管扩张1型(HHT1)患者的单核细胞(MNC)是一种由内皮糖蛋白突变引起的遗传性疾病,显示出对梗塞小鼠心肌的适应能力降低。基质细胞衍生因子-1α(SDF-1alpha)和趋化因子受体CXCR4对于归巢至关重要,并受到CD26的负面影响。这项研究的目的是了解HHT1-MNC受损的归巢。方法和结果:流式细胞术检测CNCR4和CD26在MNC上的表达。 Transwell迁移到SDF-1alpha用于分析体外迁移。实验性诱导小鼠心肌梗死,然后尾静脉注射MNC,被用于研究体内归巢。 HHT1-MNCs表达高水平的CXCR4,但这被高水平的CD26所抵消,从而导致体外向SDF-1alpha梯度的迁移减少。通过用Diprotin-A抑制CD26来增强迁移。尽管来自健康对照组的MNC通过增加CXCR4和降低CD26表达水平来响应转化生长因子-β刺激,但是HHT1-MNC的反应效率不高:特别是CD26表达仍然很高。在MNC上抑制CD26可增加人类细胞向梗塞小鼠心脏的归巢。有趣的是,通过在注射入尾静脉之前将HHT1-MNC与Diprotin-A预先孵育,可以修复HHT1-MNC归巢的缺陷。结论:我们表明,HHT1-MNCs归巢减少是由于细胞对SDF-1alpha的反应能力受损所致。我们的研究结果表明,在CD26表达增加有助于潜在病理机制的情况下,使用Diprotin-A等抑制剂调节CD26的水平可以恢复归巢。

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