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老年大鼠中性粒细胞超氧阴离子分泌及杀菌活性的降低:γ干扰素与生长激素联合使用可使其逆转

Reduction in superoxide anion secretion and bactericidal activity of neutrophils from aged rats: reversal by the combination of gamma interferon and growth hormone.

作者信息

Fu Y K, Arkins S, Li Y M, Dantzer R, Kelley K W

机构信息

Department of Animal Sciences, University of Illinois, Urbana 61801.

出版信息

Infect Immun. 1994 Jan;62(1):1-8. doi: 10.1128/iai.62.1.1-8.1994.

Abstract

Polymorphonuclear neutrophils (PMN) from bone marrow of 24-month-old rats kill Escherichia coli less efficiently than PMN from 3-month-old rats. Secretion of O2- and killing of E. coli by PMN from both young and old rats can be significantly augmented by preincubation with either 250 U of gamma interferon (IFN-gamma) or 250 ng of growth hormone (GH) per ml. This priming is specific, because neutralizing monoclonal antibodies against either IFN-gamma or GH completely abrogate the enhanced O2- secretion by PMN from young rats. However, in contrast to PMN from young rats, PMN from aged rats are not primed to kill E. coli by 10-fold-lower concentrations of either IFN-gamma (25 U/ml) or GH (25 ng/ml). To explore the mechanism for the reduction in bacterial killing by PMN from old rats, a syngeneic GH-secreting pituitary cell line (GH3) was implanted in vivo. PMN from GH3-treated aged rats, but not control aged rats, could now be primed in vitro for O2- secretion by IFN-gamma (25 U/ml). Although PMN from aged rats do not respond to the lower doses of either IFN-gamma or GH, the combination of both reagents totally restores the ability of PMN to secrete O2- and to kill E. coli. This synergistic priming is observed with PMN from aged rats, but not with those from young rats, and can be detected when both reagents are added simultaneously or when they are added in either sequence. Furthermore, addition of a monoclonal antibody against either IFN-gamma or GH abrogates the synergism of these two molecules. Collectively, these data identify an important alteration in myeloid cells from aged rodents by showing that their PMN are intrinsically unable to respond to low concentrations of IFN-gamma by secreting O2- and killing bacteria. The results also define a previously unrecognized synergism in PMN from aged animals by showing that GH synergizes with IFN-gamma both in vivo and in vitro to restore these suppressed responses.

摘要

24月龄大鼠骨髓中的多形核中性粒细胞(PMN)杀灭大肠杆菌的效率低于3月龄大鼠的PMN。将年轻和老年大鼠的PMN与每毫升250 U的γ干扰素(IFN-γ)或250 ng生长激素(GH)预孵育,均可显著增强其O₂⁻的分泌及对大肠杆菌的杀灭作用。这种预处理具有特异性,因为针对IFN-γ或GH的中和单克隆抗体可完全消除年轻大鼠PMN增强的O₂⁻分泌。然而,与年轻大鼠的PMN不同,老年大鼠的PMN在10倍低浓度的IFN-γ(25 U/ml)或GH(25 ng/ml)作用下不能被预处理来杀灭大肠杆菌。为探究老年大鼠PMN细菌杀灭能力降低的机制,将同基因的分泌GH的垂体细胞系(GH3)植入体内。来自经GH3处理的老年大鼠而非对照老年大鼠的PMN,现在可在体外被IFN-γ(25 U/ml)预处理以分泌O₂⁻。尽管老年大鼠的PMN对较低剂量的IFN-γ或GH均无反应,但两种试剂联合使用可完全恢复PMN分泌O₂⁻及杀灭大肠杆菌的能力。这种协同预处理在老年大鼠的PMN中可见,而在年轻大鼠的PMN中未观察到,且当两种试剂同时添加或以任一顺序添加时均可检测到。此外,添加针对IFN-γ或GH的单克隆抗体可消除这两种分子的协同作用。总体而言,这些数据通过表明老年啮齿动物髓细胞中的PMN本质上无法通过分泌O₂⁻和杀灭细菌来对低浓度的IFN-γ作出反应,从而确定了其重要改变。结果还通过表明GH在体内和体外均与IFN-γ协同作用以恢复这些受抑制的反应,定义了老年动物PMN中一种先前未被认识的协同作用。

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