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胶原蛋白诱导血小板聚集的结构要求的证据。

Evidence for a structural requirement for the aggregation of platelets by collagen.

作者信息

Jaffe R, Deykin D

出版信息

J Clin Invest. 1974 Mar;53(3):875-83. doi: 10.1172/JCI107628.

Abstract

This study investigates whether soluble collagen can initiate platelet aggregation or whether a higher degree of polymerization is required. Purified rat skin collagen was prepared in four states. Soluble monomeric collagen, containing 2 muM calcium chloride, was maintained at 4 degrees C until use. A previously uncharacterized form of collagen, soluble microfibrillar collagen, was prepared from monomeric collagen containing calcium chloride by allowing it to polymerize at 23 degrees C. Viscometric and electron microscopic characterization of microfibrillar collagen indicated polymerization to ordered native filaments. Particulate native macrofibrillar collagen was prepared from monomeric collagen by allowing it to polymerize at 37 degrees C in the absence of calcium. Particulate collagen, in which the fibers were randomly associated, was prepared by salt precipitation of calcium-free monomeric collagen. Microfibrillar and native macrofibrillar collagen initiated platelet aggregation, with a lag phase of approximately 60 s. Monomeric collagen initiated aggregation with a lag phase of approximately 180 s. The duration of the lag phase for platelet aggregation initiated by monomeric collagen was independent of the dose. Salt-precipitated particulate collagen did not initiate platelet aggregation. Agents which prolong the transition from monomeric collagen to fibrillar collagen (urea, arginine) retarded or prevented the aggregation of platelets by monomeric collagen. Sodium borohydride, which stabilizes the intraand intermolecular cross-links of collagen did not affect platelet aggregation. Penicillamine, which displaces the intermolecular cross-links and binds the intramolecular cross-links of collagen, did not prevent platelet aggregation. The data suggest that an architectural requirement exists for the initiation of self-perpetuating platelet aggregation; that tropocollagen units do not fulfill this requirement; that a soluble collagen preparation, microfibrillar collagen, contains the minimal structural unit; and that cross-linkages within collagen do not play a critical role in platelet aggregation.

摘要

本研究调查了可溶性胶原蛋白是否能引发血小板聚集,或者是否需要更高程度的聚合。制备了四种状态的纯化大鼠皮肤胶原蛋白。含有2μM氯化钙的可溶性单体胶原蛋白在4℃下保存直至使用。一种先前未表征的胶原蛋白形式,可溶性微纤维胶原蛋白,是通过使含有氯化钙的单体胶原蛋白在23℃下聚合而制备的。微纤维胶原蛋白的粘度测定和电子显微镜表征表明其聚合成有序的天然细丝。颗粒状天然大纤维胶原蛋白是通过使单体胶原蛋白在无钙的情况下于37℃下聚合而制备的。通过无钙单体胶原蛋白的盐沉淀制备了纤维随机缔合的颗粒状胶原蛋白。微纤维和天然大纤维胶原蛋白引发血小板聚集,延迟期约为60秒。单体胶原蛋白引发聚集的延迟期约为180秒。单体胶原蛋白引发血小板聚集的延迟期持续时间与剂量无关。盐沉淀的颗粒状胶原蛋白不引发血小板聚集。延长从单体胶原蛋白到纤维状胶原蛋白转变的试剂(尿素、精氨酸)会延迟或阻止单体胶原蛋白引发的血小板聚集。硼氢化钠可稳定胶原蛋白的分子内和分子间交联,但不影响血小板聚集。青霉胺可取代胶原蛋白的分子间交联并结合其分子内交联,但不能阻止血小板聚集。数据表明,引发自我持续的血小板聚集存在结构要求;原胶原蛋白单元不满足这一要求;一种可溶性胶原蛋白制剂,微纤维胶原蛋白,包含最小结构单元;并且胶原蛋白内的交联在血小板聚集中不发挥关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99f1/333070/451e2b4a8788/jcinvest00640-0220-a.jpg

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