Dallegri F, Ballestrero A, Frumento G, Patrone F
First Medical Clinic, University of Genoa Medical School, Italy.
Blood. 1987 Dec;70(6):1743-9.
Neutrophilic polymorphonuclear leukocytes (PMNs) were incubated with opsonized zymosan and lysed human erythrocytes (RBCs) as measured by a 51Cr release method. Conversely, myeloperoxidase (MPO)-negative hydrogen peroxide (H2O2)-generating cells, derived in vitro from human monocytes (monocyte-derived cells (MDCs), were ineffective per se but capable of augmenting the lysis by PMNs. The lysis by PMNs and PMNs plus MDCs was inhibited by catalase, azide, taurine, and alanine, consistent with the requirement for hypochlorous acid (HOCl). As detected under conditions similar to those used for lytic assays, MDCs failed to produce HOCl but augmented the HOCl recovery from the PMN-RBC system. Moreover, when the extent of the lysis was plotted as a function of the HOCl recovery, a positive linear relationship was found. Although the actual size of the H2O2 extracellular pool could not be measured because of the inexistence of a reliable assay to probe our cytolytic model without perturbing the equilibrium of the system, the results presented suggest that MDCs enhance the PMN-mediated lysis by improving the HOCl production, presumably by supplying extra amounts of H2O2 to be handled by PMN MPO. In fact, the events mediated by MDCs could be reproduced by using an appropriate H2O2-generating enzymatic system (glucose-glucose oxidase). The present study provides direct evidence for the possibility of cooperation between MPO-positive and MPO-negative phagocytes in exerting functions (HOCl production and, in turn, cytolysis) possibly relevant to the outcome of inflammatory processes.
嗜中性多形核白细胞(PMNs)与调理后的酵母聚糖和经裂解的人红细胞(RBCs)一起孵育,采用51Cr释放法进行测定。相反,体外从人单核细胞衍生而来的髓过氧化物酶(MPO)阴性的过氧化氢(H2O2)生成细胞(单核细胞衍生细胞(MDCs))本身无作用,但能够增强PMNs介导的裂解作用。PMNs以及PMNs加MDCs介导的裂解作用受到过氧化氢酶、叠氮化物、牛磺酸和丙氨酸的抑制,这与次氯酸(HOCl)的需求一致。在类似于裂解试验所用的条件下检测发现,MDCs不能产生HOCl,但能增加从PMN-RBC系统中回收的HOCl。此外,当将裂解程度绘制为HOCl回收量的函数时,发现呈正线性关系。尽管由于不存在一种可靠的检测方法来探测我们的细胞溶解模型而不扰乱系统平衡,无法测量细胞外H2O2池的实际大小,但所呈现的结果表明,MDCs通过改善HOCl的产生来增强PMN介导的裂解作用,推测是通过提供额外量的H2O2以供PMN MPO处理。事实上,MDCs介导的事件可以通过使用合适的H2O2生成酶系统(葡萄糖-葡萄糖氧化酶)来重现。本研究为MPO阳性和MPO阴性吞噬细胞在发挥可能与炎症过程结果相关的功能(HOCl产生以及随之而来的细胞溶解)方面进行合作的可能性提供了直接证据。