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在人类自然杀伤细胞的细胞毒性过程中,通过化学发光无法检测到游离氧自由基。

Free oxygen radicals are not detectable by chemiluminescence during human natural killer cell cytotoxicity.

作者信息

Ramstedt U, Rossi P, Kullman C, Warren E, Palmblad J, Jondal M

出版信息

Scand J Immunol. 1984 May;19(5):457-64. doi: 10.1111/j.1365-3083.1984.tb00954.x.

Abstract

Mononuclear cells isolated from peripheral blood of normal donors produce free oxygen radicals (FR), detectable by chemiluminescence (CL), when interacting with target cells during natural killer (NK) cell lysis. FR-producing cells were found to have monocyte characteristics and gave a positive CL reaction when mixed at low concentration (0.5%) with purified NK cells. No correlation was found between susceptibility to NK cell lysis and capacity to induce CL with different target cell lines. Using high and low molecular FR scavengers, no NK cell inhibition was seen with superoxide dismutase, cytochrome c, and catalase, whereas some inhibition was seen with 4,5-dihydroxy-m- benzenedisulphonic acid (Tiron) and 2,3-dihydroxybenzoate. These compounds, however, required higher concentrations than used for inhibition of CL, suggesting an alternative action of these compounds. Normal levels of NK cell activity were found in two patients with chronic granulomatous disease, who were genetically incapable of producing detectable amounts of FR. As a result, it is concluded that human NK cells do not produce large amounts of FR during killing and that FR are unlikely to be the lytic end product. Nevertheless, neither a low degree of FR formation in NK cells nor a more subtle signal-transmitting role of FR during NK cell triggering can be excluded.

摘要

从正常供体外周血中分离出的单核细胞在自然杀伤(NK)细胞裂解过程中与靶细胞相互作用时会产生可通过化学发光(CL)检测到的游离氧自由基(FR)。发现产生FR的细胞具有单核细胞特征,并且当以低浓度(0.5%)与纯化的NK细胞混合时会产生阳性CL反应。在不同靶细胞系中,未发现对NK细胞裂解的敏感性与诱导CL的能力之间存在相关性。使用高分子和低分子FR清除剂时,超氧化物歧化酶、细胞色素c和过氧化氢酶未观察到NK细胞抑制作用,而4,5-二羟基间苯二磺酸(Tiron)和2,3-二羟基苯甲酸观察到了一些抑制作用。然而,这些化合物所需的浓度高于抑制CL所用的浓度,这表明这些化合物具有其他作用。在两名慢性肉芽肿病患者中发现了正常水平的NK细胞活性,这两名患者在基因上无法产生可检测量的FR。因此,得出结论,人类NK细胞在杀伤过程中不会产生大量FR,并且FR不太可能是裂解终产物。然而,不能排除NK细胞中低程度的FR形成或FR在NK细胞触发过程中更微妙的信号传递作用。

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