[1] Abubakar Ⅱ, Tillmann T, Banerjee A. Global, regional, and national age-sex specific all-cause and cause-specific mortality for 240 causes of death, 1990-2013:a systematic analysis for the Global Burden of Disease Study 2013[J]. Lancet, 2015, 385(9963):117-171. [2] Lin MY, Hagler G, Baldauf R, et al. The effects of vegetation barriers on near-road ultrafine particle number and carbon monoxide concentrations[J]. Sci Total Environ, 2016, 553:372-379. [3] Jacobsen NR, Pojana G, White P, et al. Genotoxicity, cytotoxicity, and reactive oxygen species induced by single-walled carbon nanotubes and C (60) fullrenes in the FE1-mutatrade mark Mouse lung epithelial cells[J]. Environ Mol Mutagen, 2008, 49(6):476-487. [4] Kroll A, Dierker C, Rommel C,et al. Cytotoxicity screening of 23 engineered nanomaterials using a test matrix of ten cell lines and three different assays[J]. Part FibreToxicol, 2011, 8(1):9. [5] Sager TM, Castranova V. Surface area of particle administered versus mass in determining the pulmonary toxicity of ultrafine and fine carbon black:comparison to ultrafine titanium dioxide[J]. Part FibreToxicol, 2009, 6(1):15-46. [6] Knaapen A, Borm P, Albrecht C, et al. Inhaled particles and lung cancer. part A:mechanisms[J]. Int J Cancer, 2004, 109(6):799-809. [7] 张云, 金银龙, 崔国权, 等. 2009-2011年哈尔滨市寒潮天气对呼吸系统疾病的影响[J]. 环境卫生学杂志, 2014, 4(2):125-131. [8] Husain M, Kyjovska ZO, Bourdon-Lacombe J, et al. Carbon black nanoparticles induce biphasic gene expression changes associated with inflammatory responses in the lungs of C57BL/6 mice following a single intratracheal instillation[J]. Toxicol Appl Pharmacol, 2015, 289(3):573-588. [9] Hanot-Roy M, Tubeuf E, Guilbert A, et al. Oxidative stress pathways involved in cytotoxicity and genotoxicity of titanium dioxide (TiO2) nanoparticles on cells constitutive of alveolo-capillary barrier in vitro[J]. Toxicol in vitro, 2016, 33:125-135. [10] Morimoto Y, Izumi H, Yoshiura Y, et al. Usefulness of intratracheal instillation studies for estimating nanoparticle-induced pulmonary toxicity[J]. Int J Mol Sci, 2016, 17(2):165. [11] Lee BJ, Kim B, Lee K. Air pollution exposure and cardiovascular disease[J]. Toxicol Res, 2014, 30(2):71. [12] Sahu D, Kannan GM, Vijayaraghavan. Carbon black particle exhibits size dependent toxicity in human monocytes[R]. Int J Inflamm, 2014:827019. [13] Govindasamy R, Rahuman AA. Histopathological studies and oxidative stress of synthesized silver nanoparticles in Mozambique tilapia (Oreochromis mossambicus)[J]. J Environ Sci, 2012, 24(6):1091-1098. [14] Shustanova TA, Bondarenko TI, Miliutina NP, et al. Free radical mechanism of the cold stress development in rats[J]. Ross FiziolZhIm I M Sechenova, 2004, 90(1):73-82. [15] Wu H, Yin JJ, Wamer WG, et al. Reactive oxygen species-related activities of nano-iron metal and nano-iron oxides[J]. J Food Drug Anal, 2014, 22(1):86-94. [16] Pelclova D, Fenclova Z, Vlckova S. Increased markers of oxidative stress in workers exposed to nanoparticles[C]. European Respiratory Society Annual Congress, 2012, 7(1826):1210. [17] 罗斌, 王丽娜, 晚亚雄, 等. 低温条件下大气PM2.5对大鼠心脏抗氧化能力及炎症反应的影响[J]. 中国应用生理学杂志, 2015, 31(1):11-13. [18] 龙杰, 王羽, 刘晓翠, 等. 氧化应激对原代培养乳鼠心房肌细胞中内质网应激及凋亡因子的影响[J]. 中国应用生理学杂志, 2017, 33(2):185-188. [19] Lepetsos P, Papavassiliou A G. ROS/oxidative stress signaling in osteoarthritis[J]. Biochim Biophys Acta, 2016, 4(1862):576-591. [20] Kaushik G, Nidhi T, Hemant K, et al. DNA interaction, SOD, peroxidase and nuclease activity studies of iron complex having ligand with carboxamido nitrogen donors[J]. Spectrochim Acta, 2015, 5(146):292-296. |