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奈多罗米钠、BN 52021和色甘酸钠对血小板活化因子及酵母聚糖激活血清诱导的人中性粒细胞趋化性的抑制作用

Inhibition of platelet-activating factor- and zymosan-activated serum-induced chemotaxis of human neutrophils by nedocromil sodium, BN 52021 and sodium cromoglycate.

作者信息

Bruijnzeel P L, Warringa R A, Kok P T

机构信息

Department of Pulmonary Disease, State University Hospital Utrecht, The Netherlands.

出版信息

Br J Pharmacol. 1989 Aug;97(4):1251-7. doi: 10.1111/j.1476-5381.1989.tb12586.x.

Abstract
  1. Inflammatory cells such as eosinophils and neutrophils are thought to contribute actively to the pathogenesis of asthma since they infiltrate into the lung tissue. These cells are mobilized by lipid-like and protein-like chemotactic factors. As illustrative examples of both groups, platelet-activating-factor (Paf) and zymosan-activated-serum (ZAS) were used in this study. The inhibitory effects of nedocromil sodium, the Paf antagonist BN 52021 and sodium cromoglycate on Paf- and ZAS-induced neutrophil chemotaxis were evaluated. 2. All tested drugs inhibited Paf-induced neutrophil chemotaxis with approximately the same potency (IC50 approximately 1 nM). 3. Nedocromil sodium and sodium cromoglycate were equally potent in inhibiting ZAS-induced neutrophil chemotaxis (IC50 = 0.1-1 microM), whereas BN 52021 was considerably less potent (IC30 = 10 microM). 4. To find out whether the drugs tested could inhibit early events in cell activation, their capacity to inhibit Paf- and ZAS-induced cytosolic free Ca2+-mobilization was investigated. BN 52021, at a concentration of 100 microM, completely inhibited Paf-induced Ca2+-mobilization and inhibited ZAS-induced Ca2+-mobilization by about 50%. Nedocromil sodium and sodium cromoglycate were ineffective.
摘要
  1. 诸如嗜酸性粒细胞和中性粒细胞等炎性细胞被认为会积极参与哮喘的发病机制,因为它们会浸润到肺组织中。这些细胞由脂质样和蛋白质样趋化因子动员。作为这两类趋化因子的示例,本研究使用了血小板活化因子(Paf)和酵母聚糖活化血清(ZAS)。评估了奈多罗米钠、Paf拮抗剂BN 52021和色甘酸钠对Paf和ZAS诱导的中性粒细胞趋化性的抑制作用。2. 所有受试药物对Paf诱导的中性粒细胞趋化性的抑制效力大致相同(IC50约为1 nM)。3. 奈多罗米钠和色甘酸钠在抑制ZAS诱导的中性粒细胞趋化性方面效力相当(IC50 = 0.1 - 1 microM),而BN 52021的效力则低得多(IC30 = 10 microM)。4. 为了确定受试药物是否能抑制细胞活化的早期事件,研究了它们抑制Paf和ZAS诱导的胞质游离Ca2+动员的能力。浓度为100 microM的BN 52021完全抑制了Paf诱导的Ca2+动员,并将ZAS诱导的Ca2+动员抑制了约50%。奈多罗米钠和色甘酸钠无效。

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