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关于二磷酸腺苷引起的血小板形状变化的观察

Observations on the change in shape of blood platelets brought about by adenosine diphosphate.

作者信息

Born G V

出版信息

J Physiol. 1970 Aug;209(2):487-511. doi: 10.1113/jphysiol.1970.sp009176.

Abstract
  1. An optical method used for measuring platelet aggregation was adapted for measurements of the change in shape of platelets that rapidly follows the addition of the aggregating agent adenosine diphosphate (ADP).2. Measurements were made using dilute suspension of platelets with sufficient EDTA to prevent their aggregation.3. Measurements of the velocity and magnitude of the optical effects of the shape change were highly reproducible.4. Volumetric measurements showed that the shape change is not associated with an increase in mean platelet volume.5. The velocity of the shape change had a temperature coefficient of about 4.5.6. The velocity and magnitude of the shape change were not affected by pH between 5.8 and 9.2.7. The dependence of the velocity of the shape change on the ADP concentration was in accordance with Michaelis-Menton kinetics. The K(m) was about 7.2 x 10(-7)M.8. The velocity of the shape change was inhibited competitively by ATP, adenosine and 2-chloroadenosine but not by AMP. When the inhibitors were added after the maximum of the shape change they caused a concentration-dependent diminution in the record of the change.9. The results suggest that the shape change is initiated by reaction of the agonist ADP with specific receptor sites on the platelet membrane which leads to energy-requiring changes in the structures responsible for maintaining the disk shape of normal platelets.
摘要
  1. 一种用于测量血小板聚集的光学方法被改编用于测量在添加聚集剂二磷酸腺苷(ADP)后血小板迅速发生的形状变化。

  2. 使用含有足够乙二胺四乙酸(EDTA)以防止血小板聚集的血小板稀释悬浮液进行测量。

  3. 形状变化的光学效应的速度和幅度测量具有高度可重复性。

  4. 体积测量表明形状变化与平均血小板体积增加无关。

  5. 形状变化的速度具有约4.5的温度系数。

  6. 形状变化的速度和幅度在pH值5.8至9.2之间不受影响。

  7. 形状变化速度对ADP浓度的依赖性符合米氏动力学。米氏常数(K(m))约为7.2×10⁻⁷M。

  8. 形状变化的速度受到ATP、腺苷和2-氯腺苷的竞争性抑制,但不受AMP抑制。当在形状变化达到最大值后添加抑制剂时,它们会导致记录的变化呈浓度依赖性减小。

  9. 结果表明,形状变化是由激动剂ADP与血小板膜上的特定受体位点反应引发的,这导致负责维持正常血小板盘状形状的结构发生需要能量的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d516/1395740/8536b77c802d/jphysiol01049-0234-a.jpg

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