Stocker R, Hunt N H, Clark I A, Weidemann M J
Infect Immun. 1984 Sep;45(3):708-12. doi: 10.1128/iai.45.3.708-712.1984.
We tested the ability of whole blood and enriched fractions of peripheral blood polymorphonuclear leukocytes obtained from mice during the course of infection with Plasmodium vinckei to produce luminol-mediated chemiluminescence in response to phagocytic and nonphagocytic stimuli. The chemiluminescence response of whole blood to all stimuli increased dramatically and nonlinearly as the infection progressed, and there was a concomitant increase (80%) and decrease (70%) in the total numbers of leukocytes and erythrocytes, respectively. The proportion of polymorphonuclear leukocytes in the total leukocyte population increased threefold. On a per cell basis and at a constant hematocrit, the chemiluminescence response of peripheral leukocytes from infected animals to phorbol myristate acetate or opsonized zymosan was only slightly greater than that of cells from uninfected animals. Polymorphonuclear leukocytes isolated from the blood of infected animals also showed no large increase per cell in chemiluminescence responsiveness. Thus, although leukocyte numbers increase during a murine malarial infection, there appears to be no major change in the capacity of individual peripheral blood leukocytes to produce activated species of oxygen. However, the physiological reduction in the total concentration of hemoglobin at high parasitemia, due to hemolysis and hemoglobin digestion by the parasites, increases the possibility of oxygen radical-mediated damage to tissues and intraerythrocytic parasites as a result of decreased antioxidant protection.
我们检测了从感染文氏疟原虫的小鼠体内获取的全血以及外周血多形核白细胞富集组分,在受到吞噬性和非吞噬性刺激时产生鲁米诺介导的化学发光的能力。随着感染的进展,全血对所有刺激的化学发光反应急剧且非线性地增加,同时白细胞总数增加了80%,红细胞总数减少了70%。多形核白细胞在总白细胞群体中的比例增加了两倍。在细胞数量恒定且血细胞比容不变的情况下,感染动物外周白细胞对佛波酯肉豆蔻酸酯或调理酵母聚糖的化学发光反应仅略高于未感染动物的细胞。从感染动物血液中分离出的多形核白细胞在化学发光反应性方面,单个细胞也没有大幅增加。因此,尽管在鼠疟感染期间白细胞数量增加,但单个外周血白细胞产生活性氧的能力似乎没有重大变化。然而,由于寄生虫导致的溶血和血红蛋白消化,在高寄生虫血症时血红蛋白总浓度的生理降低,由于抗氧化保护作用降低,增加了氧自由基介导的组织和红细胞内寄生虫损伤的可能性。