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首页> 外文期刊>Experimental Gerontology >Depression of progenitor cell function by advanced glycation endproducts (AGEs): potential relevance for impaired angiogenesis in advanced age and diabetes.
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Depression of progenitor cell function by advanced glycation endproducts (AGEs): potential relevance for impaired angiogenesis in advanced age and diabetes.

机译:晚期糖基化终产物(AGEs)抑制祖细胞功能:在老年和糖尿病中与血管生成受损有关。

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Diabetes and ageing induce reduction and dysfunction of vascular progenitor cells. Advanced glycation endproducts (AGEs) accumulate in diabetes and ageing. We investigated the influence of AGEs on function of CD34 progenitor cells. CD34 cells were co-cultured with HUVECs in a three-dimensional spheroid assay. Sprout length growth and incorporation of CD34 cells into the sprouts were analyzed under 2, 20 or 200 microg/ml AGEs. AGE-receptor expression, MAP-kinase signal transduction and apoptosis were analyzed using PCR, Western blotting and flow cytometry. In the spheroid assay, AGEs concentration-dependently cause a reduction of sprout length growth by 6+/-6 to 32+/-6% and an attenuation of progenitor cells incorporation into the sprouting endothelium by up to 43+/-6%. This functional impairment is accompanied by activation of CD34 cell proliferation at lower concentrations (2 or 20 microg/ml) and by apoptosis activation under 200 microg/ml AGEs. The mRNA expression of the receptors for AGEs and the AGEs-induced activation of p38 and p44/42 MAP-kinases are demonstrable in CD34 cells. This AGEs-mediated impairment of progenitor cell function identifies a new pathophysiological mechanism of disturbed vascular adaptation in diabetes or ageing and suggests that lowering AGEs in recipients of progenitor cell therapy might be beneficial for the success of this therapy.
机译:糖尿病和衰老引起血管祖细胞的减少和功能障碍。晚期糖化终产物(AGEs)在糖尿病和衰老中积累。我们调查了AGEs对CD34祖细胞功能的影响。 CD34细胞与HUVEC在三维球体分析中共培养。在2、20或200 microg / ml AGEs下分析新芽的长度生长和将CD34细胞掺入芽中。使用PCR,蛋白质印迹和流式细胞仪分析AGE受体的表达,MAP激酶信号的转导和凋亡。在球体分析中,AGEs浓度依赖性地导致发芽长度增长减少6 +/- 6至32 +/- 6%,并使掺入发芽内皮的祖细胞减少高达43 +/- 6%。这种功能损伤伴随着在较低浓度(2或20微克/毫升)下CD34细胞增殖的激活以及在200微克/毫升AGEs下的细胞凋亡激活。在CD34细胞中可证实AGEs受体的mRNA表达以及AGEs诱导的p38和p44 / 42 MAP激酶激活。这种AGEs介导的祖细胞功能受损,确定了糖尿病或衰老中血管适应性紊乱的新病理生理机制,并表明降低祖细胞治疗受体的AGEs可能对该疗法的成功有益。

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