Hahn S M, Mitchell J B, Shacter E
Radiation Biology Branch, National Cancer Institute, Bethesda, MD 20892, USA.
Free Radic Biol Med. 1997;23(6):879-84. doi: 10.1016/s0891-5849(97)00079-8.
Inflammatory conditions characterized by neutrophil activation are associated with a variety of chronic diseases. Reactive oxygen species are produced by activated neutrophils and produce DNA damage which may lead to tissue damage. Previous studies have shown that activated murine neutrophils induce DNA strand breaks in a target plasmacytoma cell, RIMPC 2394. We studied the effect of a water soluble nitroxide anti-oxidant, Tempol, on murine neutrophil induction of DNA strand breaks in this system. Murine neutrophils were isolated from the peritoneal cavity of BALB/cAn mice after an i.p. injection of pristane oil. Neutrophils were activated by the phorbol ester PMA and co-incubated with RIMPC 2394 cells. Control alkaline elution studies revealed progressive DNA strand breaks in RIMPC cells with time. The addition of Tempol to the incubation mixture prevented DNA damage in a dose dependent fashion. Five mM Tempol provided complete protection. Tempol protection against DNA strand breaks was similar for both stimulated neutrophils and exogenously added hydrogen peroxide. Measurement of hydrogen peroxide produced by stimulated neutrophils demonstrated that Tempol did not decrease hydrogen peroxide concentration. Oxidation of reduced metals, thereby interfering with the production of hydroxyl radical, is the most likely mechanism of nitroxide protection, although superoxide dismutase (SOD) like activity and scavenging of carbon-based free radicals may also account for a portion of the observed protection. The anti-oxidant activity of Tempol inhibited DNA damage by activated neutrophils. The nitroxides as a class of compounds may have a role in the investigation and modification of inflammatory conditions.
以中性粒细胞活化为特征的炎症性疾病与多种慢性疾病相关。活性氧由活化的中性粒细胞产生,并导致DNA损伤,进而可能引发组织损伤。先前的研究表明,活化的小鼠中性粒细胞可诱导靶浆细胞瘤细胞RIMPC 2394中的DNA链断裂。我们研究了水溶性氮氧化物抗氧化剂Tempol对该系统中小鼠中性粒细胞诱导DNA链断裂的影响。在腹腔注射 pristane 油后,从BALB/cAn小鼠的腹腔中分离出小鼠中性粒细胞。中性粒细胞通过佛波酯PMA激活,并与RIMPC 2394细胞共同孵育。对照碱性洗脱研究显示,RIMPC细胞中的DNA链断裂随时间逐渐增加。在孵育混合物中添加Tempol可剂量依赖性地防止DNA损伤。5 mM的Tempol提供了完全保护。Tempol对DNA链断裂的保护作用对于刺激的中性粒细胞和外源性添加的过氧化氢均相似。对刺激的中性粒细胞产生的过氧化氢的测量表明,Tempol不会降低过氧化氢浓度。尽管超氧化物歧化酶(SOD)样活性和清除碳基自由基也可能部分解释了观察到的保护作用,但还原金属的氧化从而干扰羟基自由基的产生是氮氧化物保护的最可能机制。Tempol的抗氧化活性抑制了活化的中性粒细胞对DNA的损伤。作为一类化合物,氮氧化物可能在炎症性疾病的研究和治疗中发挥作用。