[1型糖尿病患儿内皮细胞损伤生化与生物物理指标的相关性分析]。

Barbara Głowińska-Olszewska, Mirosława Urban, Joanna Tołwińska, Jadwiga Peczyńska, Bozena Florys
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引用次数: 0

摘要

未标记:内皮损伤是动脉粥样硬化过程中最早的阶段之一。功能失调的内皮细胞分泌的粘附分子被认为是动脉粥样硬化疾病的早期标志物。肱动脉超声检查可检测血管内皮功能的生物物理变化,颈动脉内膜-中膜厚度检查可评估血管早期结构变化。本研究的目的是通过肱动脉扩张研究(血流介导扩张——FMD,硝酸甘油介导扩张——NTGMD)和颈动脉IMT,评估儿童和青少年1型糖尿病患者颈动脉中选定粘附分子(sICAM-1, sVCAM-1, se -选择素,sp -选择素)和内皮功能的水平,以及内皮功能障碍的生化和生物物理标志物之间的相关性分析。材料和方法:我们研究了76名儿童和青少年,平均年龄-15.6+/-2.5岁,糖尿病患者平均7.8+/-2.8岁,平均HbA1c- 8.4+/-1.5%。对照组为年龄、性别相匹配的健康儿童33例。使用免疫酶法(R&D Systems)估计粘附分子水平。通过研究肱动脉扩张-FMD, NTGMD评估内皮功能,Celermajer法后超声评估(Hewlett Packard Sonos 4500), Pignoli法后IMT。结果:在研究组中,我们发现sICAM-1水平升高:对照组为309.54+/-64 ng/ml,对照组为277.85+/-52 ng/ml。在患有1型糖尿病的儿童和青少年中,我们发现黏附分子sICAM-1和硒选择素水平升高,这可以证实这些患者存在内皮功能障碍。2. 硒选择素水平与FMD呈显著负相关,与IMT呈显著正相关。3.这种损伤的生物物理证据是肱动脉扩张受损(FMD), IMT值的增加提供了血管结构变化的信息。
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[Correlation analysis between biochemical and biophysical markers of endothelium damage in children with diabetes type 1].

Unlabelled: Endothelial damage is one of the earliest stages in the atherosclerosis process. Adhesion molecules, secreted from dysfunctional endothelial cells are considered as early markers of atherosclerotic disease. Ultrasonographic evaluation of brachial arteries serves to detect biophysical changes in endothelial function, and evaluation of carotid arteries intima-media thickness allows to evaluate the earliest structural changes in the vessels. The aim of the study was to the evaluate levels of selected adhesion molecules (sICAM-1, sVCAM-1, sE-selectin, sP-selectin) and endothelial function with use of brachial artery dilatation study (flow mediated dilation--FMD, nitroglycerine mediated dilation--NTGMD) and IMT in carotid arteries in children and adolescents with diabetes type 1, as well as the correlation analysis between biochemical and biophysical markers of endothelial dysfunction.

Material and methods: We studied 76 children and adolescents, with mean age--15.6+/-2.5 years, suffering from diabetes mean 7.8+/-2.8 years, mean HbA1c--8.4+/-1.5%. Control group consisted of 33 healthy children age and gender matched. Adhesion molecules levels were estimated with the use of immunoenzymatic methods (R&D Systems). Endothelial function was evaluated by study of brachial arteries dilation--FMD, NTGMD, with ultrasonographic evaluation (Hewlett Packard Sonos 4500) after Celermajer method, and IMT after Pignoli method.

Results: In the study group we found elevated levels of sICAM-1: 309.54+/-64 vs. 277.85+/-52 ng/ml in the control group (p<00.05) and elevated level of sE-selectin: 87.81+/-35 vs. 66.21+/-22 ng/ml (p<00.05). We found significantly impaired FMD in brachial arteries in the study group--7.51+/-4.52 vs. 12.61+/-4.65% (p<00.05) and significantly higher IMT value: 0.51+/-0.07 vs. 0.42+/-0.05 mm (p<00.001). Correlation analysis revealed a significant negative correlation between sE-selectin and FMD - r=-0.33 (p=0.004), and a positive correlation between E-selectin and IMT: r=0.32 (p=0.005).

Conclusions: 1. In children and adolescents with diabetes type 1 we found elevated levels of adhesion molecules sICAM-1 and sE-selectin, what can confirm an endothelial dysfunction in these patients. 2. Significant negative correlation between sE-selectin level and FMD, and positive correlation between sE-selectin and IMT were found. 3. Biophysical proof of this damage is impaired brachial artery dilatation--FMD, and increased IMT values provide information about structural changes in the vessels.

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