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粒细胞集落刺激因子(G-CSF)可诱导人髓细胞表达E-选择素配体。

G-CSF induces E-selectin ligand expression on human myeloid cells.

作者信息

Dagia Nilesh M, Gadhoum Samah Z, Knoblauch Christine A, Spencer Joel A, Zamiri Parisa, Lin Charles P, Sackstein Robert

机构信息

Department of Dermatology, Brigham & Women's Hospital, 77 Avenue Louis Pasteur, Room 671, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Nat Med. 2006 Oct;12(10):1185-90. doi: 10.1038/nm1470. Epub 2006 Sep 17.

Abstract

Clinical use of G-CSF can result in vascular and inflammatory complications. To investigate the molecular basis of these effects, we analyzed the adherence of G-CSF-mobilized human peripheral blood leukocytes (ML) to inflamed (TNF-alpha-stimulated) vascular endothelium. Studies using parallel plate assays under physiologic flow conditions and intravital microscopy in a mouse inflammation model each showed that ML take part in heightened adhesive interactions with endothelium compared to unmobilized (native) blood leukocytes, mediated by markedly increased E-selectin receptor-ligand interactions. Biochemical studies showed that ML express the potent E-selectin ligand HCELL (ref. 8) and another, previously unrecognized approximately 65-kDa E-selectin ligand, and possess enhanced levels of transcripts encoding glycosyltransferases (ST3GalIV, FucT-IV and FucT-VII) conferring glycan modifications associated with E-selectin ligand activity. Enzymatic treatments and physiologic binding assays showed that HCELL and the approximately 65-kDa E-selectin ligand contribute prominently to the observed G-CSF-induced myeloid cell adhesion to inflamed endothelium. Treatment of normal human bone marrow cells with a pharmacokinetically relevant concentration of G-CSF in vitro resulted in increased expression of these two molecules, coincident with increased transcripts encoding pertinent glycosyltransferases and heightened E-selectin binding. These findings provide direct evidence for a role of G-CSF in the induction of E-selectin ligands on myeloid cells, thus providing mechanistic insight into the pathobiology of G-CSF complications.

摘要

粒细胞集落刺激因子(G-CSF)的临床应用可导致血管和炎症并发症。为了研究这些效应的分子基础,我们分析了G-CSF动员的人外周血白细胞(ML)与炎症(肿瘤坏死因子-α刺激)血管内皮的黏附情况。在生理流动条件下使用平行平板分析以及在小鼠炎症模型中进行活体显微镜检查的研究均表明,与未动员的(天然)血液白细胞相比,ML与内皮的黏附相互作用增强,这是由E-选择素受体-配体相互作用显著增加介导的。生化研究表明,ML表达强效的E-选择素配体HCELL(参考文献8)和另一种先前未被识别的约65 kDa的E-选择素配体,并具有编码糖基转移酶(ST3GalIV、FucT-IV和FucT-VII)的转录本水平升高,这些糖基转移酶赋予与E-选择素配体活性相关的聚糖修饰。酶处理和生理结合分析表明,HCELL和约65 kDa的E-选择素配体对观察到的G-CSF诱导的髓样细胞与炎症内皮的黏附起主要作用。在体外用人骨髓细胞与药代动力学相关浓度的G-CSF处理导致这两种分子的表达增加,同时编码相关糖基转移酶的转录本增加以及E-选择素结合增强。这些发现为G-CSF在髓样细胞上诱导E-选择素配体的作用提供了直接证据,从而为G-CSF并发症的病理生物学提供了机制性见解。

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