Gerrard J M, Kindom S E, Peterson D A, White J G
Am J Pathol. 1979 Dec;97(3):531-47.
In order to explore a possible relationship between platelet aggregation induced by lysophosphatidic acid (LPA) and that induced by adenosine diphosphate (ADP), we have studied the influence of palmitoyl-LPA (P-LPA) on platelets from dogs and rabbits and on human platelets made refractory to LPA. Dog platelets did not aggregate with P-LPA alone, but P-LPA enhanced ADP aggregation, and after a small dose of ADP, P-LPA was itself effective in causing aggregation and internal contraction in dog platelets. Rabbit platelets showed no response to P-LPA alone, but, as with dog platelets, P-LPA enhanced ADP aggregation. In addition, when P-LPA was added during or immediately after ADP aggregation, it caused a contraction within the platelets and a small wave of aggregation by itself. P-LPA added to human platelets caused aggregation without the need for ADP. However, when a small dose of P-LPA was added to human platelets and the wave of aggregation was allowed to reverse, these platelets subsequently were unresponsive to P-LPA, although they showed an enhanced response to ADP. The addition of a small dose of ADP to the P-LPA refractory platelets partially reversed the refractory state, and the platelets then showed aggregation with P-LPA. The results demonstrate that ADP and P-LPA have significant interactions in their effects on platelets. These interactions are discussed in terms of a two-component mechanism for the ADP-induced intracellular calcium flux, LPA, or possibly phosphatidic acid, being one component.
为了探究溶血磷脂酸(LPA)诱导的血小板聚集与二磷酸腺苷(ADP)诱导的血小板聚集之间可能存在的关系,我们研究了棕榈酰-LPA(P-LPA)对犬和兔血小板以及对LPA不敏感的人血小板的影响。犬血小板单独与P-LPA不发生聚集,但P-LPA增强了ADP诱导的聚集,并且在给予小剂量ADP后,P-LPA自身可有效引起犬血小板聚集和内部收缩。兔血小板单独对P-LPA无反应,但与犬血小板一样,P-LPA增强了ADP诱导的聚集。此外,当在ADP诱导的聚集过程中或之后立即加入P-LPA时,它可引起血小板内部收缩并自身引发一小波聚集。加入到人类血小板中的P-LPA可引起聚集,而无需ADP。然而,当向人血小板中加入小剂量P-LPA并使聚集波逆转后,这些血小板随后对P-LPA无反应,尽管它们对ADP的反应增强。向对P-LPA不敏感的血小板中加入小剂量ADP可部分逆转不敏感状态,然后这些血小板对P-LPA表现出聚集反应。结果表明,ADP和P-LPA在对血小板的作用方面存在显著相互作用。根据ADP诱导的细胞内钙通量的双组分机制对这些相互作用进行了讨论,LPA或可能的磷脂酸是其中一个组分。