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首页> 外文期刊>Infection and immunity >Natural inhibitor from Candida albicans blocks release of azurophil and specific granule contents by chemotactic peptide-stimulated human neutrophils.
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Natural inhibitor from Candida albicans blocks release of azurophil and specific granule contents by chemotactic peptide-stimulated human neutrophils.

机译:来自白色念珠菌的天然抑制剂可通过趋化肽刺激的人类嗜中性白细胞来阻止嗜酸性粒细胞的释放和特定颗粒的含量。

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摘要

A product released by Candida albicans hyphae which was previously determined to block the neutrophil respiratory burst also inhibited the degranulation response elicited by the chemotactic peptide N-formyl-methionyl-leucyl-phenylalanine (FMLP). When neutrophils were incubated with 100 micrograms of this Candida hyphal inhibitory product (CHIP) per ml and stimulated with 1,000 nM FMLP, release of the azurophil granule marker beta-glucuronidase and the specific granule marker lactoferrin was decreased to 31.2 +/- 5.7 and 35.7 +/- 5.3% of control, respectively. Inhibition was concentration dependent, with a half-maximal reduction of beta-glucuronidase and lactoferrin release being induced by 4 and 1 micrograms of CHIP per ml, respectively. In contrast to these striking alterations in response to FMLP, CHIP had no significant effect on lactoferrin release stimulated by phorbol myristate acetate. Moreover, actin polymerization, which has been suggested to be involved in regulation of degranulation, was unaffected by CHIP whether the neutrophils were stimulated by FMLP or phorbol myristate acetate. The selectivity of inhibition of neutrophil degranulation thus provides additional confirmation that CHIP is a useful agent for exploring human neutrophil activation pathways.
机译:先前已确定由白色念珠菌菌丝释放的产物可阻止中性粒细胞呼吸爆发,但该产物也抑制了趋化肽N-甲酰基-甲硫酰基-亮氨酰-苯丙氨酸(FMLP)引起的脱粒反应。当嗜中性粒细胞与每毫升100毫克的这种念珠菌菌丝抑制产物(CHIP)孵育并用1,000 nM FMLP刺激时,嗜蓝粒颗粒标记物β-葡萄糖醛酸苷酶和特定颗粒标记物乳铁蛋白的释放降低至31.2 +/- 5.7和35.7分别为对照组的+/- 5.3%。抑制作用是浓度依赖性的,每毫升分别有4和1微克CHIP引起β-葡萄糖醛酸苷酶和乳铁蛋白的释放减半。与响应FMLP的这些显着变化相反,CHIP对肉豆蔻酸佛波醇酯刺激的乳铁蛋白释放没有明显影响。此外,无论是中性粒细胞是被FMLP还是佛波醇肉豆蔻酸酯乙酸盐刺激,已经提出的肌动蛋白聚合都被认为参与了脱粒的调节,而不受CHIP的影响。因此,抑制嗜中性粒细胞脱粒的选择性进一步证实了CHIP是探索人类嗜中性粒细胞活化途径的有用试剂。

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