5KANG C M, PARK K P, SONG J E, et al. Possible biomarkers for ionizing radiation exposure in human peripheral blood lymphocytes[J]. Radiat Res, 2003, 159(3):312-319.
6AMUNDSON S A, DO K T, SHAHAB S, et al. Identification of potential mRNA biomarkers in peripheral blood lymphocyte for human exposure to ionizing radiation[J]. Radiat Res, 2000, 154(3):342-346.
7KIM K M, KIM H W, KIM J O, et al. Induction of 4-1BB (CD137) expression by DNA damaging agents in human T lymphocytes[J]. Immunology, 2002, 107(4):472-479.
8COURTEMANCHE C, HUANG A C, ELSON-SCHWAB I, et al. Folatedeficiency and ionizing radiation cause DNA breaks in primary human lymphocytes: a comparison[J]. FASEB J, 2004 , 18(1):209-211.
9GRACE M B, MCLELAND C B, BLAKELY W F. Real-time quantitative RT-PCR assay of GADD45 gene expression changes as a biomarker for radiation biodosimetry[J]. Int J Radiate Biol, 2002,78(11):1011-1021.
10BLAKELY W F, MILLER A C, LUO L, et al. Nucleic acid molecular biomarkers for diagnostic biodosimetry applications: use of the fluorogenic 5'clease polymerase chain reaction assay[J]. Mil Med,2002 ,167(2 Suppl):16-19.
二级参考文献70
1[1]Sharp RR,Barrett JC.The environmental genome project:e thical,legal,and social implications.Environ Health Perspect,2000,108:279- 281.
2[2]Guengerich FP.The environmental genome project:functional analy sis of polymorphisms.Environ Health Perspect,1998,106:365-368.
3[3]Philip MI.Toxicogenomics:\!The call of the wild chip".Environ Health Perspect,2001,109:1-10.
4[4]Nuwaysir EF,Bittner M,Trent J.Microarrays and toxicology:the advent of toxicogenomics.Mol Carcinog,1999,24:153-159.
5[5]Hughes TR,Marton MJ,Jones AR.Functional discovery via a compe ndium of expression profiles.Cell,2000,102:109-126.
6[6]Bustim SA.Absolute quantification of mRNA using real-time reve rse transc ription polymerase chain reaction assays.J Mol Endocrinol,2000,25:169-193.
7[7]Pennie WD,Woodyatt NJ,Aldridge TC.Application of genomics to the defin ition of the molecular basis for toxicity.Toxicol Lett,2001,120:1-3.
8[8]Burczynski ME,MxMillian M,Ciervo J.Toxicogenomics-based discr imination of toxic mechanism in HepG2 human hepatoma cells.Toxicol Sci,2000,58:399-415.
9[9]Burchiel SW,Knall CM,Davis JW.Analysis of genetic and epigene tic mechani sms of toxicity:potential roles of toxicogenomics and proteomics in toxicology.Toxicol Sci,2001,59:193-195.
10[10]White KP,Rifkin SA,Hurban P.Microarray analysis of drosophila develop ment druing metamorphosis.Science,1999,286:2179-2184.
4Zhang XC,Michael W,Li E,et al.Radioproteetionin vitro and in vivo by minieirele plasmid carrying thehuman manganese superoxide dismutase transgenc[J].Hum Gene Therapy,2008,235(6):820.
5Satoe H,Rusin M.Structural dinorphism in themitoehondrial targeting sequence in the humanmanganese superoxide dismutase gene[J].BuhemicalBiophysical Res Commun,1996,226(2):561-565.
6Veeraraghavan J,Natarajan M,Herman TS.Low-doeγ-radiation-induced oxidative stress response inmouse brain and gut:regulation by NFkB-MnSODcross-singnaling[J].Mutagenesis,2011,718(1-2):44-55.
7Matfei F,Angelini S,Cantelli G.Forti micronucleifrequencies in hospital workers occupationally exposedto low levels of ionizing radiation:influence ofsmoking statusand other factors[J].Mutagenesis,2002,175(3):405-409.
8Yen JH,Chen CJ,Tsai WC,et al.Manganesesuperoxide dismatase and cytochwme P450 1A1genespolymorphom in rhenmatoid arthritis in Taiwan[J].Hum Inmunol,2003,64(3):316-373.
9Hannah J,Zhang F,Terry D,et al.Comparison ofeffects of two polymorphic variants of manganesesuperoxide dismutase on human breast MCF-7[J].Cancer Cell Phenotypel,2002,27(23):209-226.