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重组干扰素α2和γ对粒细胞氧化反应的调节作用

Modulation of granulocyte oxidative response by recombinant interferon alpha 2 and gamma.

作者信息

Kapp A, Kirchner H, Wokalek H, Schöpf E

出版信息

Arch Dermatol Res. 1986;278(4):274-6. doi: 10.1007/BF00407737.

Abstract

Interferon (IFN) has been described to influence various cellular functions. In this study we investigated whether the oxidative response of polymorphonuclear leukocytes (PMN) is also affected by IFN. In order to exclude the possible influence of impurities in IFN preparations, only recombinant human IFN alpha 2 or gamma were used. Lucigenin-dependent chemiluminescence (CL) of PMN was measured to assess the production of oxygen radicals. IFN gamma at a concentration of more than 10 ng/ml elicited a minimal CL response in PMN. When PMN were incubated with IFN gamma for 1 h and then stimulated with chemotactic peptide f-met-phe (FMP), zymosan-activated serum (ZAS), zymosan particles, or phorbol-myristate acetate (PMA), the CL response was increased as consequence of the generally enhanced oxidative metabolism. IFN alpha 2 showed no such effect at any concentration tested. A 5-min pretreatment with IFN gamma decreased the ZAS response but did not affect the reaction to the other stimuli. The possibility of a generation of IFN by PMN during the assay could be excluded as no IFN activity could be detected in an antiviral assay after stimulation of PMN for 6 h with PolyI X PolyC, LPS, ConA, C. parvum, PMA, zymosan, or FMP. The modulation of granulocyte activity by IFN gamma may be important in the regulation of the anti-inflammatory response of PMN.

摘要

干扰素(IFN)已被描述为可影响多种细胞功能。在本研究中,我们调查了多形核白细胞(PMN)的氧化反应是否也受IFN影响。为排除IFN制剂中杂质的可能影响,仅使用重组人IFNα2或γ。通过测量PMN的鲁米诺依赖性化学发光(CL)来评估氧自由基的产生。浓度超过10 ng/ml的IFNγ在PMN中引起最小的CL反应。当PMN与IFNγ孵育1小时,然后用趋化肽f-甲硫-苯丙氨酸(FMP)、酵母聚糖激活血清(ZAS)、酵母聚糖颗粒或佛波醇-肉豆蔻酸酯乙酸酯(PMA)刺激时,由于氧化代谢普遍增强,CL反应增加。在任何测试浓度下,IFNα2均未显示出这种作用。用IFNγ预处理5分钟可降低ZAS反应,但不影响对其他刺激的反应。在检测过程中PMN产生IFN的可能性可以排除,因为在用多聚肌苷酸×多聚胞苷酸(PolyI X PolyC)、脂多糖(LPS)、刀豆蛋白A(ConA)、微小隐孢子虫(C. parvum)、PMA、酵母聚糖或FMP刺激PMN 6小时后,在抗病毒检测中未检测到IFN活性。IFNγ对粒细胞活性的调节可能在PMN抗炎反应的调节中起重要作用。

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