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17β-雌二醇可部分减轻晚期糖基化终产物对人血小板中一氧化氮合酶-3的抑制作用。

17Beta-oestradiol partially attenuates the inhibition of nitric oxide synthase-3 by advanced glycation end-products in human platelets.

作者信息

Chen Lu, Liu Yuan, Cui Bota, Mi Qiongyu, Huang Yan, Fan Leming, Chen Qi, Tang James, Ferro Albert, Ji Yong

机构信息

Laboratory of Reproductive Medicine, Atherosclerosis Research Centre, Nanjing Medical University, Nanjing, China.

出版信息

Clin Exp Pharmacol Physiol. 2007 Oct;34(10):972-8. doi: 10.1111/j.1440-1681.2007.04680.x.

Abstract
  1. Diabetes mellitus predisposes to and female sex protects against arterial thrombosis. The aim of the present study was to determine whether advanced glycation end-products (AGE), which accumulate in diabetes, impair platelet function through effects on platelet nitric oxide (NO) generation and whether this can be prevented by 17beta-oestradiol. 2. Aggregation responses of human platelet-rich plasma to ADP were determined in the absence or presence of 200 mg/L AGE-modified albumin (AGE-albumin), 10(-5) mol/L 17beta-oestradiol and 10(-5) mol/L ICI 182 780 (the pure oestrogen receptor antagonist). 3. Intraplatelet cGMP, an index of bioactive NO, was measured by radioimmunoassay and expression of nitric oxide synthase (NOS)-3, phosphoserine-1177-NOS-3 and O-glycosylated NOS-3 was quantified by western blotting in response to these same treatments. 4. Advanced glycation end-products-albumin increased platelet aggregatory responses to ADP. This increase was largely prevented by 17beta-oestradiol. Advanced glycation end-products-albumin decreased and 17beta-oestradiol increased intraplatelet NO-attributable cGMP and 17beta-oestradiol attenuated the AGE-albumin-induced decrease in NO-attributable cGMP. Despite no effect on NOS-3 expression, AGE-albumin decreased and 17beta-oestradiol increased phosphoserine-1177-NOS-3 and 17beta-oestradiol largely prevented the decrease in phosphoserine-1177-NOS-3 induced by AGE-albumin. Alone, AGE-albumin increased O-glycosylation of NOS-3 by N-acetylglucosamine, an effect largely inhibited by 17beta-oestradiol. 5. In conclusion, AGE-albumin inhibits platelet NO biosynthesis through effects on serine phosphorylation and O-glycosylation of platelet NOS-3 and this may explain, at least in part, the increase in platelet aggregability induced by AGE-albumin. These effects of AGE-albumin are largely prevented by 17beta-oestradiol. These actions may contribute to the effects of diabetes and sex on arterial thrombosis in vivo.
摘要
  1. 糖尿病易引发动脉血栓形成,而女性性别则对其有保护作用。本研究的目的是确定糖尿病中积累的晚期糖基化终产物(AGE)是否通过影响血小板一氧化氮(NO)生成来损害血小板功能,以及17β-雌二醇是否能预防这种情况。2. 在不存在或存在200 mg/L AGE修饰白蛋白(AGE-白蛋白)、10⁻⁵ mol/L 17β-雌二醇和10⁻⁵ mol/L ICI 182 780(纯雌激素受体拮抗剂)的情况下,测定富含人血小板血浆对ADP的聚集反应。3. 通过放射免疫测定法测量血小板内cGMP(生物活性NO的指标),并通过蛋白质印迹法对一氧化氮合酶(NOS)-3、磷酸化丝氨酸-1177-NOS-3和O-糖基化NOS-3的表达进行定量,以响应这些相同的处理。4. AGE-白蛋白增加了血小板对ADP的聚集反应。这种增加在很大程度上被17β-雌二醇所预防。AGE-白蛋白降低而17β-雌二醇增加血小板内NO相关的cGMP,并且17β-雌二醇减弱了AGE-白蛋白诱导的NO相关cGMP的降低。尽管对NOS-3表达没有影响,但AGE-白蛋白降低而17β-雌二醇增加了磷酸化丝氨酸-1177-NOS-3,并且17β-雌二醇在很大程度上预防了AGE-白蛋白诱导的磷酸化丝氨酸-1177-NOS-3的降低。单独使用时,AGE-白蛋白通过N-乙酰葡糖胺增加NOS-3的O-糖基化,这种作用在很大程度上被17β-雌二醇抑制。5. 总之,AGE-白蛋白通过影响血小板NOS-3的丝氨酸磷酸化和O-糖基化来抑制血小板NO生物合成,这可能至少部分解释了AGE-白蛋白诱导的血小板聚集性增加。AGE-白蛋白的这些作用在很大程度上被17β-雌二醇所预防。这些作用可能有助于解释糖尿病和性别对体内动脉血栓形成的影响。

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