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首页> 外文期刊>Cellular Physiology and Biochemistry >Expression of Junctional Adhesion Molecule-C on the Surface of Platelets Supports Adhesion, but not Differentiation, of Human CD34+ Cells in Vitro
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Expression of Junctional Adhesion Molecule-C on the Surface of Platelets Supports Adhesion, but not Differentiation, of Human CD34+ Cells in Vitro

机译:血小板表面连接黏附分子C的表达支持人CD34 +细胞的体外黏附但不分化。

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Background CD34sup+/sup progenitor cells play an important role in haematopoiesis and vascular homeostasis. The aim of the present study was to investigate the role of platelet-derived junctional adhesion molecule-C (JAM-C) in adhesion and differentiation of human CD34sup+/sup cells iin vitro/i, as well as its association with platelet-derived P-selectin in patients with coronary artery disease. Methods and Results Using flow cytometry we observed that JAM-C expression on the surface of washed platelets is increased after activation with thrombin receptor activating peptide-6 iin vitro/i and correlated with platelet-derived P-selectin expression in patients with coronary artery disease (r=0.326, P=0.007). The role of JAM-C and its counter receptor Mac-1 in adhesion of human CD34sup+/sup cells over immobilized platelets was investigated by using a neutralizing soluble protein (sJAM-C-Fc) and a monoclonal antibody against JAM-C or integrin Mac-1 (CD11b/CD18). Treatment with soluble JAM-C-Fc or anti-JAM-C or anti-Mac-1, but not with control-Fc or IgG1, resulted in a significantly decreased adhesion of human CD34sup+/sup cells to platelets under static conditions (P0.05). In order to validate our findings under high shear stress we performed flow chamber experiments. In a similar manner, inhibiting JAM-C interaction with Mac-1 resulted in a significantly decreased adhesion of CD34sup+/sup cells over immobilized platelets under high shear stress (P0.05). Colony forming unit assays and coculture assays revealed that inhibition of JAM-C/Mac-1 axis did not influence the platelet-mediated differentiation of CD34sup+/sup cells to endothelial cells or to macrophages/foam cells. Conclusions Taken together a platelet-derived JAM-C supports CD34sup+/sup cell adhesion, a mechanism potentially involved in homing as well as domiciliation of human CD34sup+/sup cells.
机译:背景CD34 + 祖细胞在造血和血管稳态中起重要作用。本研究的目的是研究血小板衍生的连接粘附分子-C(JAM-C)在体外人CD34 + 细胞粘附和分化中的作用 ,以及与冠心病患者血小板衍生的P-选择素的关系。方法和结果使用流式细胞仪,我们观察到凝血酶受体激活肽-6 体外激活后,洗涤后的血小板表面的JAM-C表达增加,并且与血小板衍生的P-选择素表达相关。冠心病患者(r = 0.326,P = 0.007)。通过使用中和性可溶性蛋白(sJAM-C-Fc)和抗JM-C的单克隆抗体,研究了JAM-C及其抗受体Mac-1在人CD34 + 细胞与固定化血小板粘附中的作用。 JAM-C或整合蛋白Mac-1(CD11b / CD18)。用可溶性JAM-C-Fc或抗JAM-C或抗Mac-1处理但不使用对照Fc或IgG1处理可导致人CD34 + 细胞与血小板的粘附力显着降低在静态条件下(P <0.05)。为了验证我们在高剪切应力下的发现,我们进行了流室实验。以相似的方式,在高剪切应力下,抑制JAM-C与Mac-1的相互作用会导致CD34 + 细胞的粘附力明显低于固定化的血小板(P <0.05)。集落形成单位测定和共培养测定表明,抑制JAM-C / Mac-1轴不影响血小板介导的CD34 + 细胞向内皮细胞或巨噬细胞/泡沫细胞的分化。结论血小板衍生的JAM-C共同支持CD34 + 细胞粘附,这是人类CD34 + 细胞归巢和定居的潜在机制。

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