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血小板增强粒细胞对趋化因子的聚集反应:利用改进的细胞制备技术的研究。

Augmentation by platelets of granulocyte aggregation in response to chemotaxins: studies utilizing an improved cell preparation technique.

作者信息

Redl H, Hammerschmidt D E, Schlag G

出版信息

Blood. 1983 Jan;61(1):125-31.

PMID:6848141
Abstract

Considerable evidence exists to suggest roles for both platelets and granulocytes (PMNs) in pulmonary injury in shock. While believing that the major contributions of the two cell types are sequential, in vitro observations suggested that direct interactions between granulocytes and platelets might also amplify tissue damage. Using isotonic Percoll density gradients to isolate PMNs, we therefore studied the effect of deliberate platelet contamination on PMN aggregation. PMN aggregation in response to N-formyl-met-leu-phe or activated complement was enhanced by the presence of 1 platelet/PMN, an effect that became maximal at 16 platelets/PMN (p less than 0.01); large mixed aggregates were formed. Lysed, aspirinated, and indomethacin-treated platelets retained their augmentative capacity, as did platelets washed by gel filtration. The effect was not mimicked by the addition of histamine or serotonin to PMN preparations. None of these platelet preparations augmented lysosomal enzyme release. We conclude that platelets augment PMN aggregation, both by forming giant mixed PMN/platelet aggregates and also by producing a labile augmentative substance, the production of which may be independent of thromboxane synthesis. We propose that direct as well as sequential platelet/PMN interactions may be important in tissue injury in shock.

摘要

有大量证据表明血小板和粒细胞(多形核白细胞,PMNs)在休克所致肺损伤中发挥作用。虽然认为这两种细胞类型的主要作用是相继发生的,但体外观察表明粒细胞与血小板之间的直接相互作用也可能加剧组织损伤。因此,我们使用等渗Percoll密度梯度分离多形核白细胞,研究了故意混入血小板对多形核白细胞聚集的影响。每1个多形核白细胞中存在1个血小板时,多形核白细胞对N-甲酰-蛋氨酸-亮氨酸-苯丙氨酸或活化补体的反应性聚集增强,在每1个多形核白细胞中有16个血小板时这种作用达到最大(p<0.01);形成了大的混合聚集体。经裂解、用阿司匹林处理以及用消炎痛处理的血小板仍保留其增强能力,经凝胶过滤洗涤的血小板也是如此。向多形核白细胞制剂中添加组胺或血清素并不能模拟这种作用。这些血小板制剂均未增加溶酶体酶的释放。我们得出结论,血小板通过形成巨大的多形核白细胞/血小板混合聚集体以及产生一种不稳定的增强物质来增强多形核白细胞的聚集,这种物质的产生可能独立于血栓素的合成。我们提出,血小板/多形核白细胞之间的直接相互作用以及相继发生的相互作用在休克所致组织损伤中可能都很重要。

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