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首页> 外文期刊>Clinical hemorheology and microcirculation >Activation of N-methyl D-aspartate (NMDA) receptors has no influence on rheological properties of erythrocytes.
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Activation of N-methyl D-aspartate (NMDA) receptors has no influence on rheological properties of erythrocytes.

机译:N-甲基D-天门冬氨酸(NMDA)受体的激活对红细胞的流变特性没有影响。

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PURPOSE: Red blood cells (RBCs) express N-methyl D-aspartate (NMDA) receptors on their surface. We tested if NMDA receptor activation or inhibition had an influence on RBC deformability and aggregability. METHODS: Heparinized blood was drawn from healthy volunteers and centrifuged. RBCs were washed twice and resuspended with a hematocrit of 30% in a same buffer solution containing 3% dextran 70. Aliquots were prepared: a) control; b) containing 100 muM homocysteic acid (NMDA receptor agonist); c) 100 muM memantine (NMDA receptor inhibitor) and 100 muM homocysteic acid. RBC suspension viscometry (Contraves LS-30) was done at 37 degrees C with shear rates of 37.6 s(-1) and 0.1 s(-1). RBC aggregability was assessed with a Myrenne aggrometer and sedimentation rate. RESULTS: Neither NMDA receptor activation nor inhibition had an influence on biophysical properties of RBCs. RBC suspension viscosity at a shear rate of 37.6 s(-1) was 3.62 +/- 0.16, 3.61 +/- 0.13, and 3.62 +/- 0.16 mPa.s for control, homocysteic acid, and memantine + homocysteic acid, respectively, indicating an unchanged RBC deformability. The RBC aggregability parameters (low shear viscosity, Myrenne aggregometry at stasis (M) and 3 s(-1) (M1), and the sedimentation rate) showed no influence of either memantine and/or homocysteic acid. A large interindividual variability in RBC aggregability was observed. A good correlation was found between M, M1 and sedimentation values, but not with low shear viscosity values. CONCLUSIONS: An activation or inhibition of NMDA receptors on RBCs has no influence on their deformability and aggregability. RBC aggregability varies largely among individuals, which was consistently detected by the sedimentation rate and the Myrenne aggregometer, but not by low shear viscosity, which should not be used for this purpose.
机译:目的:红细胞(RBC)在其表面表达N-甲基D-天冬氨酸(NMDA)受体。我们测试了NMDA受体的激活或抑制是否对RBC的可变形性和聚集性有影响。方法:从健康志愿者那里抽取肝素化血液并进行离心。将RBC洗涤两次,并用30%的血细胞比容重悬于含有3%葡聚糖70的相同缓冲溶液中。 b)含有100μM同型半胱氨酸(NMDA受体激动剂); c)100μM美金刚(NMDA受体抑制剂)和100μM同型半胱氨酸。 RBC悬浮液粘度计(Contraves LS-30)在37摄氏度下进行,剪切速率为37.6 s(-1)和0.1 s(-1)。用迈伦(Myrenne)凝集计和沉降速率评估RBC的可凝集性。结果:NMDA受体的激活和抑制均不影响红细胞的生物物理特性。对照,高半胱氨酸和美金刚+高半胱氨酸在37.6 s(-1)的剪切速率下的RBC悬浮液粘度分别为3.62 +/- 0.16、3.61 +/- 0.13和3.62 +/- 0.16 mPa.s,表示RBC变形能力不变。 RBC的可凝集性参数(低剪切粘度,在停滞(M)和3 s(-1)(M1)处的Myrenne凝集法,以及沉降速率)均未显示美金刚和/或高半胱氨酸的影响。观察到RBC凝集能力存在较大的个体差异。在M,M1和沉降值之间发现了很好的相关性,但在低剪切粘度值下却没有。结论:红细胞上NMDA受体的激活或抑制对其变形能力和聚集能力没有影响。 RBC的可凝集性在个体之间差异很大,这可以通过沉降速率和Myrenne凝集计一致地检测到,但不能通过低剪切粘度来检测,这不应该用于此目的。

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