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坏死梭杆菌诱导血小板聚集。

Aggregation of platelets by Fusobacterium necrophorum.

作者信息

Forrester L J, Campbell B J, Berg J N, Barrett J T

出版信息

J Clin Microbiol. 1985 Aug;22(2):245-9. doi: 10.1128/jcm.22.2.245-249.1985.

Abstract

Broth cultures and washed cells of 13 of 24 bovine isolates of Fusobacterium necrophorum aggregated human platelets in platelet-rich plasma. The cell-free culture fluid was inactive. Bacteria stored at 4 degrees C in saline remained active for at least 3 months, but they did not release activity into the storage solution. Aggregation typically began within 1 min after the addition of 10(3) bacteria to 10(3) platelets was complete within 5.5 min. Assays for cytosolic lactic dehydrogenase revealed that platelet lysis did not occur. The release of [14C]serotonin from platelets preincubated with this amine accompanied aggregation, indicating that this was a typical aggregation-degranulation reaction. Platelet aggregation was inhibited by EDTA (88% at 2.0 mM), aspirin (75% inhibition at 1.0 mM), and quinacrine (80% inhibition at 0.25 mM). Thus the reaction was an ion-dependent, cyclooxygenase-sensitive event. Gel-filtered platelets were less sensitive to aggregation than were platelets in plasma, but this sensitivity was fully restored by the addition of plasma and partially restored with fibrinogen. Biotyping of the cultures revealed that none of the avirulent, B-type strains of F. necrophorum could aggregate platelets, whereas 13 of 16 virulent A type strains were positive. These results suggest that platelet aggregation by F. necrophorum is related to the virulence of this organism.

摘要

24株坏死梭杆菌牛分离株中的13株的肉汤培养物和洗涤过的细胞,可使富血小板血浆中的人血小板聚集。无细胞培养液无活性。保存在4℃盐水中的细菌至少3个月内仍保持活性,但它们不会将活性释放到储存溶液中。通常在加入10³个细菌后1分钟内开始聚集,10³个血小板在5.5分钟内聚集完成。细胞溶质乳酸脱氢酶检测显示未发生血小板裂解。预先用这种胺孵育的血小板释放[¹⁴C]血清素伴随着聚集,表明这是一种典型的聚集-脱颗粒反应。血小板聚集受到EDTA(2.0 mM时抑制88%)、阿司匹林(1.0 mM时抑制75%)和奎纳克林(0.25 mM时抑制80%)的抑制。因此,该反应是一种离子依赖性、对环氧化酶敏感的事件。凝胶过滤的血小板比血浆中的血小板对聚集的敏感性更低,但通过添加血浆可使这种敏感性完全恢复,添加纤维蛋白原可部分恢复。对培养物进行生物分型显示,坏死梭杆菌无毒力的B型菌株均不能使血小板聚集,而16株有毒力的A型菌株中有13株呈阳性。这些结果表明,坏死梭杆菌引起的血小板聚集与该菌的毒力有关。

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