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多形核白细胞中膜电位变化和氧化代谢爆发的独立刺激。

Independent stimulation of membrane potential changes and the oxidative metabolic burst in polymorphonuclear leukocytes.

作者信息

Seeds M C, Parce J W, Szejda P, Bass D A

出版信息

Blood. 1985 Jan;65(1):233-40.

PMID:3965049
Abstract

Early events of stimulus-response coupling in polymorphonuclear leukocytes (PMNL) reportedly include membrane depolarization as a necessary antecedent to oxidative responses. However, depolarization by nonspecific means (ionophores) is insufficient to elicit an oxidative burst. This apparent conflict might be related to whether depolarization is due to membrane receptor-mediated stimulation of PMNL. We used two fluorescent probes and dual laser flow cytometry to monitor both membrane potential and oxidative product formation in individual PMNL, following stimulation by phorbol myristate acetate (PMA) or formylmethionyl-leucyl-phenylalanine (fMLP). Dipentylindocarbocyanine [di-I-C5(3)] is one of a family of dyes that partition between cells and aqueous media as a function of transmembrane potential. The dye appeared stable in the presence of PMNL oxidative products. Oxidation of intracellularly trapped, nonfluorescent dichlorofluorescin (DCFH) to fluorescent dichlorofluorescein (DCF) provided a quantitative assessment of oxidative metabolism (H2O2 production) of stimulated PMNL. Incubating PMNL with both fluorochromes resulted in stable red [di-l-C5(3)] and green (DCF) fluorescence when examined on a Cytofluorograph. Upon stimulation by 0.03 to 0.1 nmol/L PMA, PMNL showed a unimodal apparent depolarization (decrease in di-l-C5(3) fluorescence). Oxidative activity (increased DCF fluorescence) was first seen at a concentration of PMA of 0.17 nmol/L, higher than that required to elicit depolarization. This oxidative burst appeared as a dose-dependent, graded response. Thus, receptor-mediated membrane depolarization, although antecedent to the onset of the oxidative burst, was not in itself sufficient to trigger the oxidative metabolic response. When PMNL were isolated by centrifugation through Ficoll-metrizoate, fMLP caused an apparent depolarization of a variable subpopulation of the cells. However, such purified PMNL appeared relatively unstable and often depolarized spontaneously. PMNL studied without centrifugation through Ficoll-metrizoate were stable. Moreover, fMLP stimulation of such cells did not cause membrane depolarization but did stimulate a two- to six-fold increase in DCFH oxidation. Apparently, membrane depolarization may antecede oxidative responses in PMNL, but appears to depend upon the method of cell preparation and the nature of the stimulus.

摘要

据报道,多形核白细胞(PMNL)中刺激-反应偶联的早期事件包括膜去极化,这是氧化反应的必要前提。然而,通过非特异性手段(离子载体)进行的去极化不足以引发氧化爆发。这种明显的矛盾可能与去极化是否由膜受体介导的PMNL刺激有关。我们使用两种荧光探针和双激光流式细胞术来监测单个PMNL在佛波酯肉豆蔻酸乙酸酯(PMA)或甲酰甲硫氨酰-亮氨酰-苯丙氨酸(fMLP)刺激后的膜电位和氧化产物形成。二戊基吲哚羰花青[di-I-C5(3)]是一类染料中的一种,其在细胞和水性介质之间的分配取决于跨膜电位。该染料在PMNL氧化产物存在下似乎是稳定的。将细胞内捕获的非荧光二氯荧光素(DCFH)氧化为荧光二氯荧光素(DCF),可对受刺激的PMNL的氧化代谢(H2O2产生)进行定量评估。当在细胞荧光分析仪上检测时,用两种荧光染料孵育PMNL会产生稳定的红色[di-l-C5(3)]和绿色(DCF)荧光。在用0.03至0.1 nmol/L PMA刺激后,PMNL表现出单峰明显去极化(di-l-C5(3)荧光降低)。氧化活性(DCF荧光增加)首先在PMA浓度为0.17 nmol/L时出现,高于引发去极化所需的浓度。这种氧化爆发表现为剂量依赖性的分级反应。因此,受体介导的膜去极化虽然是氧化爆发开始的前提,但本身不足以触发氧化代谢反应。当通过聚蔗糖-泛影葡胺离心分离PMNL时,fMLP会导致细胞可变亚群出现明显去极化。然而,这种纯化的PMNL似乎相对不稳定,并且经常自发去极化。未经聚蔗糖-泛影葡胺离心处理而研究的PMNL是稳定的。此外,fMLP对这类细胞的刺激不会引起膜去极化,但会刺激DCFH氧化增加两到六倍。显然,膜去极化可能先于PMNL中的氧化反应,但似乎取决于细胞制备方法和刺激的性质。

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