Miller Alexandra C, Stewart Michael, Brooks Kia, Shi Lin, Page Natalie
Applied Cellular Radiobiology Department, Armed Forces Radiobiology Research Institute, 8901 Wisconsin Ave., Bethesda, MD 20889-5603, USA.
J Inorg Biochem. 2002 Jul 25;91(1):246-52. doi: 10.1016/s0162-0134(02)00391-4.
Depleted uranium (DU) is a dense heavy metal used primarily in military applications. Published data from our laboratory have demonstrated that DU exposure in vitro to immortalized human osteoblast cells (HOS) is both neoplastically transforming and genotoxic. DU possesses both a radiological (alpha particle) and a chemical (metal) component. Since DU has a low-specific activity in comparison to natural uranium, it is not considered to be a significant radiological hazard. In the current study we demonstrate that DU can generate oxidative DNA damage and can also catalyze reactions that induce hydroxyl radicals in the absence of significant alpha particle decay. Experiments were conducted under conditions in which chemical generation of hydroxyl radicals was calculated to exceed the radiolytic generation by one million-fold. The data showed that markers of oxidative DNA base damage, thymine glycol and 8-deoxyguanosine could be induced from DU-catalyzed reactions of hydrogen peroxide and ascorbate similarly to those occurring in the presence of iron catalysts. DU was 6-fold more efficient than iron at catalyzing the oxidation of ascorbate at pH 7. These data not only demonstrate that DU at pH 7 can induced oxidative DNA damage in the absence of significant alpha particle decay, but also suggest that DU can induce carcinogenic lesions, e.g. oxidative DNA lesions, through interaction with a cellular oxygen species.
贫铀(DU)是一种主要用于军事用途的高密度重金属。我们实验室发表的数据表明,体外将永生化人成骨细胞(HOS)暴露于贫铀会导致细胞发生肿瘤转化并具有基因毒性。贫铀具有放射性(α粒子)和化学(金属)两种成分。由于与天然铀相比,贫铀的比活度较低,因此它不被视为重大的放射性危害。在当前研究中,我们证明贫铀能够产生氧化性DNA损伤,并且在没有显著α粒子衰变的情况下,还能催化诱导羟基自由基的反应。实验是在计算得出化学产生的羟基自由基比辐射分解产生的羟基自由基多一百万倍的条件下进行的。数据表明,氧化性DNA碱基损伤的标志物胸腺嘧啶乙二醇和8-脱氧鸟苷可以由贫铀催化的过氧化氢与抗坏血酸的反应诱导产生,这与在铁催化剂存在下发生的情况类似。在pH 7时,贫铀催化抗坏血酸氧化的效率比铁高6倍。这些数据不仅证明了在没有显著α粒子衰变的情况下,pH 7的贫铀能够诱导氧化性DNA损伤,还表明贫铀可以通过与细胞内的氧物种相互作用诱导致癌性损伤,例如氧化性DNA损伤。