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地塞米松和美洛昔康对牛WC1 + γδ T细胞影响的体外研究

In vitro studies on the influence of dexamethasone and meloxicam on bovine WC1+ γδ T cells.

作者信息

Maślanka Tomasz, Jaroszewski Jerzy Jan

机构信息

Department of Pharmacology and Toxicology, Faculty of Veterinary Medicine, University of Warmia and Mazury, Oczapowskiego Street 13, 10-718 Olsztyn, Poland.

出版信息

Vet Immunol Immunopathol. 2013 Feb 15;151(3-4):248-62. doi: 10.1016/j.vetimm.2012.11.015. Epub 2012 Dec 1.

Abstract

In view of the lack of data on the effect of meloxicam (non-steroidal anti-inflammatory drug) on bovine γδ T cells (WC1(+) cells) and very poorly recognized effects of dexamethasone (steroidal anti-inflammatory drug) on these cells, the purpose of the present study has been to determine the in vitro influence of these drugs on CD25(high)WC1(+), CD25(low)WC1(+) and CD25(-)WC1(+) lymphocytes of the peripheral blood of cattle. Peripheral blood mononuclear cells were treated with the drugs in concentrations reflecting their plasma levels achieved in vivo at therapeutic doses (dexamethasone 10(-7)M; meloxicam 5×10(-6)M) and at ten-fold lower concentrations. It was found out that percentages and absolute counts of CD25(high)WC1(+) and CD25(low)WC1(+) cells increased in the presence of dexamethasone, and this effect was at least partly attributable to lower mortality of these cells, whose apoptosis was depressed by exposure to dexamethasone. It seems certain that this effect was not a result of increased multiplication of CD25(high)WC1(+) and CD25(low)WC1(+) cells because their proliferation was reduced in the presence of dexamethasone. Exposure to this drug caused a rapidly occurring and lasting depletion of CD25(-)WC1(+), which was at least partly due to their higher apoptosis. The results seem to suggest that impaired proliferation of these cells was responsible for a more profound expression of this disorder. Paradoxically, the percentage of cells producing IFN-γ, a proinflammatory cytokine, increased in the presence of dexamethasone, whereas the count of cells secreting the key anti-inflammatory and immunosuppressive cytokine, i.e. IL-10, declined. This effect was observed in all analyzed subpopulations of cells. Meloxicam did not interfere so drastically as dexamethasone with the functioning of WC1(+) lymphocytes because it did not affect their apoptosis, proliferation, percentage or absolute count. With respect to the effect of meloxicam on counts of particular WC1(+) lymphocyte subpopulations, it was only demonstrated that exposure to the drug was correlated with a transient and very weakly expressed decrease in the relative and absolute counts of CD25(high)WC1(+) and CD25(low)WC1(+) cells, which was most probably a result of a temporary down-regulation of the expression of the CD25 molecule. In the presence of meloxicam, percentages of IFN-γ(+)CD25(-)WC1(+) cells as well as cells producing IL-10 declined, an effect observed in all analyzed cell populations. These results suggest that care should be taken when administering this medication to animals with bacterial or viral infections, and we should avoid giving it to patients suffering from allergic or autoimmune disorders.

摘要

鉴于缺乏关于美洛昔康(非甾体抗炎药)对牛γδT细胞(WC1(+)细胞)影响的数据,以及地塞米松(甾体抗炎药)对这些细胞的影响鲜为人知,本研究的目的是确定这些药物对牛外周血中CD25(高)WC1(+)、CD25(低)WC1(+)和CD25(-)WC1(+)淋巴细胞的体外影响。外周血单核细胞用反映其在治疗剂量下体内血浆水平的浓度的药物处理(地塞米松10(-7)M;美洛昔康5×10(-6)M)以及浓度低十倍的药物处理。结果发现,在地塞米松存在的情况下,CD25(高)WC1(+)和CD25(低)WC1(+)细胞的百分比和绝对计数增加,这种效应至少部分归因于这些细胞较低的死亡率,其凋亡因暴露于地塞米松而受到抑制。似乎可以肯定的是,这种效应不是CD25(高)WC1(+)和CD25(低)WC1(+)细胞增殖增加的结果,因为在地塞米松存在的情况下它们的增殖减少。暴露于这种药物导致CD25(-)WC1(+)迅速且持续减少,这至少部分是由于它们较高的凋亡率。结果似乎表明这些细胞增殖受损是这种紊乱更严重表现的原因。矛盾的是,促炎细胞因子IFN-γ产生细胞的百分比在地塞米松存在的情况下增加,而分泌关键抗炎和免疫抑制细胞因子即IL-10的细胞计数下降。在所有分析的细胞亚群中都观察到了这种效应。美洛昔康对WC1(+)淋巴细胞功能的干扰不像地塞米松那么剧烈,因为它不影响它们的凋亡、增殖、百分比或绝对计数。关于美洛昔康对特定WC1(+)淋巴细胞亚群计数的影响,仅表明暴露于该药物与CD25(高)WC1(+)和CD25(低)WC1(+)细胞的相对和绝对计数的短暂且非常微弱的下降相关,这很可能是CD25分子表达暂时下调的结果。在美洛昔康存在的情况下,IFN-γ(+)CD25(-)WC1(+)细胞以及产生IL-10的细胞百分比下降,在所有分析的细胞群体中都观察到了这种效应。这些结果表明,在给患有细菌或病毒感染的动物使用这种药物时应谨慎,并且我们应该避免给患有过敏或自身免疫性疾病的患者使用。

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