首页> 外文期刊>Immunology: An Official Journal of the British Society for Immunology >Enhanced natural killer activity and production of pro-inflammatory cytokines in mice selected for high acute inflammatory response (AIRmax).
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Enhanced natural killer activity and production of pro-inflammatory cytokines in mice selected for high acute inflammatory response (AIRmax).

机译:选择用于高度急性炎症反应(AIRmax)的小鼠增强了自然杀伤活性,并产生了促炎细胞因子。

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摘要

Strains of mice with maximal and minimal acute inflammatory responsiveness (AIRmax and AIRmin, respectively) were developed through selective breeding based on their high- or low-acute inflammatory responsiveness. Previous reports have shown that AIRmax mice are more resistant to the development of a variety of tumours than AIRmin mice, including spontaneous metastasis of murine melanoma. Natural killer activity is involved in immunosurveillance against tumour development, so we analysed the number and activity of natural killer cells (CD49b(+)), T-lymphocyte subsets and in vitro cytokine production by spleen cells of normal AIRmax and AIRmin mice. Analysis of lymphocyte subsets by flow cytometry showed that AIRmax mice had a higher relative number of CD49b(+) cells than AIRmin mice, as well as cytolytic activity against Yac.1 target cells. The number of CD3(+) CD8(+) cells was also higher in AIRmax mice. These findings were associated with the ability of spleen cells from AIRmax mice in vitro to produce higher levels of the pro-inflammatory cytokines tumour necrosis factor-alpha, interleukin-12p40 and interferon-gamma but not the anti-inflammatory interleukin-10. Taken together, our data suggest that the selective breeding to achieve the AIRmax and AIRmin strains was able to polarize the genes associated with cytotoxic activity, which can be responsible for the antitumour resistance observed in AIRmax mice.
机译:根据小鼠的高或低急性炎症反应性,通过选择性繁殖培育出具有最大和最小急性炎症反应性(分别为AIRmax和AIRmin)的小鼠品系。先前的报道表明,AIRmax小鼠比AIRmin小鼠对多种肿瘤的发展更具抵抗力,包括鼠黑色素瘤的自发转移。自然杀伤活性参与针对肿瘤发展的免疫监视,因此我们分析了正常AIRmax和AIRmin小鼠脾脏细胞的自然杀伤细胞(CD49b(+))的数量和活性,T淋巴细胞亚群以及体外细胞因子的产生。通过流式细胞仪分析淋巴细胞亚群显示,AIRmax小鼠具有比AIRmin小鼠更高的相对CD49b(+)细胞数量,并且具有针对Yac.1目标细胞的细胞溶解活性。在AIRmax小鼠中,CD3(+)CD8(+)细胞的数量也更高。这些发现与来自AIRmax小鼠的脾细胞在体外产生更高水平的促炎性细胞因子肿瘤坏死因子-α,白介素-12p40和干扰素-γ的能力有关,而与抗炎性白介素10无关。综上所述,我们的数据表明,实现AIRmax和AIRmin菌株的选择性育种能够使与细胞毒性活性相关的基因极化,这可能是在AIRmax小鼠中观察到的抗肿瘤性的原因。

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