174
T. Sahoo et al.
Pournara A, Kippler M, Holmlund T, Ceder R, Grafström R, Vahter M, Broberg K, Wallberg AE
(2016) Arsenic alters global histone modifications in lymphocytes in vitro and in vivo. Cell Biol
Toxicol 32(4):275–284
Poynton HC, Vulpe CD (2009) Ecotoxicogenomics: emerging technologies for emerging contaminants 1. JAWRA J Am Water Resour Assoc 45(1):83–96
Prevedouros K, Brorström-Lundén E, Halsall CJ, Jones KC, Lee RGM, Sweetman AJ (2004).
Seasonal and long-term trends in atmospheric PAH concentrations: evidence and implications.
Environ Poll 128(1–2):17–27
Richardson SD (2003) Disinfection by-products and other emerging contaminants in drinking water.
TrAC Trends Anal Chem 22(10):666–684
Riley PA (1994) Free radicals in biology: oxidative stress and the effects of ionizing radiation. Int
J Radiat Biol 65(1):27–33
Rossman Toby G (2003) Mechanism of arsenic carcinogenesis: an integrated approach. Mutat
Res/Fundam Mol Mech Mutagen 533(1–2):37–65
Rossman TG, Klein CB (2011) Genetic and epigenetic effects of environmental arsenicals.
Metallomics 3(11):1135–1141
Ruiz-Ramos R, Lopez-Carrillo L, Rios-Perez AD, De Vizcaya-Ruíz A, Cebrian ME (2009) Sodium
arsenite induces ROS generation, DNA oxidative damage, HO-1 and c-Myc proteins, NF-κB
activation and cell proliferation in human breast cancer MCF-7 cells. Mutat Res/Genet Toxicol
Environ Mutagen 674(1–2):109–115
Samet JM (1989) Radon and lung cancer. JNCI: J Natl Cancer Inst 81(10):745–758
Samet JM, Eradze GR (2000) Radon and lung cancer risk: taking stock at the millenium. Environ
Health Perspect 108(suppl 4):635–641
Samet JM, Avila-Tang E, Boffetta P, Hannan LM, Olivo-Marston S, Thun MJ, Rudin CM (2009)
Lung cancer in never smokers: clinical epidemiology and environmental risk factors. Clin Cancer
Res 15(18):5626–5645
Scheurer M, Brauch H-J, Lange FT (2009). Analysis and occurrence of seven artificial sweeteners
in German waste water and surface water and in soil aquifer treatment (SAT). Anal Bioanal Chem
394(6):1585–1594
Sharma AK, ChrTjell J, Sloth JJ, Holm PE (2014) Review of arsenic contamination, exposure
through water and food and low cost mitigation options for rural areas. Appl Geochem 41:11–33
Shuko CM (1986) Radon gas: contractor liability for an indoor health hazard. Am JL Med 12:241
Siddique S, Kubwabo C, Harris SA (2016) A review of the role of emerging environmental contaminants in the development of breast cancer in women. Emerging Contaminants
2(4):204–219
Silvia D´ ıaz-Cruz M, López de Alda MJ, Barcelo D (2003) Environmental behavior and analysis of
veterinary and human drugs in soils, sediments and sludge. TrAC Trends Anal Chem 22(6):340–
351
Simpson KL, Hayes KP (1998) Drinking water disinfection by-products: an Australian perspective.
Water Res 32(5):1522–1528
Singh A, Patel AK, Deka JP, Das A, Kumar A, Kumar M (2019) Prediction of arsenic vulnerable
zones in groundwater environment of rapidly urbanizing setup, Guwahati, India. Geochemistry
125590. https://doi.org/10.1016/j.chemer.2019.125590
Singh A., A.K. Patel, and Manish Kumar* (2020). “Mitigating the risk of Arsenic and Fluoride
contamination of groundwater through a Multi-Model framework of statistical assessment and
natural remediation techniques”, In Manish Kumar, Daniel Snow, and Ryo Honda Editors: Emerging Issues in the Water Environment during Anthropocene: A South East Asian Perspective (ISBN
978–93-81891-41-4), Publisher Springer Nature
Smedley PL, Kinniburgh DG (2002) A review of the source, behaviour and distribution of arsenic
in natural waters. Appl Geochem 17(5):517–568
Srivastava RK, Lohani M, Bhushan Pant A, Rahman Q (2010) Cyto-genotoxicity of amphibole
asbestos fibers in cultured human lung epithelial cell line: role of surface iron. Toxicol Ind Health
26(9):575–582
T. Sahoo et al.
Pournara A, Kippler M, Holmlund T, Ceder R, Grafström R, Vahter M, Broberg K, Wallberg AE
(2016) Arsenic alters global histone modifications in lymphocytes in vitro and in vivo. Cell Biol
Toxicol 32(4):275–284
Poynton HC, Vulpe CD (2009) Ecotoxicogenomics: emerging technologies for emerging contaminants 1. JAWRA J Am Water Resour Assoc 45(1):83–96
Prevedouros K, Brorström-Lundén E, Halsall CJ, Jones KC, Lee RGM, Sweetman AJ (2004).
Seasonal and long-term trends in atmospheric PAH concentrations: evidence and implications.
Environ Poll 128(1–2):17–27
Richardson SD (2003) Disinfection by-products and other emerging contaminants in drinking water.
TrAC Trends Anal Chem 22(10):666–684
Riley PA (1994) Free radicals in biology: oxidative stress and the effects of ionizing radiation. Int
J Radiat Biol 65(1):27–33
Rossman Toby G (2003) Mechanism of arsenic carcinogenesis: an integrated approach. Mutat
Res/Fundam Mol Mech Mutagen 533(1–2):37–65
Rossman TG, Klein CB (2011) Genetic and epigenetic effects of environmental arsenicals.
Metallomics 3(11):1135–1141
Ruiz-Ramos R, Lopez-Carrillo L, Rios-Perez AD, De Vizcaya-Ruíz A, Cebrian ME (2009) Sodium
arsenite induces ROS generation, DNA oxidative damage, HO-1 and c-Myc proteins, NF-κB
activation and cell proliferation in human breast cancer MCF-7 cells. Mutat Res/Genet Toxicol
Environ Mutagen 674(1–2):109–115
Samet JM (1989) Radon and lung cancer. JNCI: J Natl Cancer Inst 81(10):745–758
Samet JM, Eradze GR (2000) Radon and lung cancer risk: taking stock at the millenium. Environ
Health Perspect 108(suppl 4):635–641
Samet JM, Avila-Tang E, Boffetta P, Hannan LM, Olivo-Marston S, Thun MJ, Rudin CM (2009)
Lung cancer in never smokers: clinical epidemiology and environmental risk factors. Clin Cancer
Res 15(18):5626–5645
Scheurer M, Brauch H-J, Lange FT (2009). Analysis and occurrence of seven artificial sweeteners
in German waste water and surface water and in soil aquifer treatment (SAT). Anal Bioanal Chem
394(6):1585–1594
Sharma AK, ChrTjell J, Sloth JJ, Holm PE (2014) Review of arsenic contamination, exposure
through water and food and low cost mitigation options for rural areas. Appl Geochem 41:11–33
Shuko CM (1986) Radon gas: contractor liability for an indoor health hazard. Am JL Med 12:241
Siddique S, Kubwabo C, Harris SA (2016) A review of the role of emerging environmental contaminants in the development of breast cancer in women. Emerging Contaminants
2(4):204–219
Silvia D´ ıaz-Cruz M, López de Alda MJ, Barcelo D (2003) Environmental behavior and analysis of
veterinary and human drugs in soils, sediments and sludge. TrAC Trends Anal Chem 22(6):340–
351
Simpson KL, Hayes KP (1998) Drinking water disinfection by-products: an Australian perspective.
Water Res 32(5):1522–1528
Singh A, Patel AK, Deka JP, Das A, Kumar A, Kumar M (2019) Prediction of arsenic vulnerable
zones in groundwater environment of rapidly urbanizing setup, Guwahati, India. Geochemistry
125590. https://doi.org/10.1016/j.chemer.2019.125590
Singh A., A.K. Patel, and Manish Kumar* (2020). “Mitigating the risk of Arsenic and Fluoride
contamination of groundwater through a Multi-Model framework of statistical assessment and
natural remediation techniques”, In Manish Kumar, Daniel Snow, and Ryo Honda Editors: Emerging Issues in the Water Environment during Anthropocene: A South East Asian Perspective (ISBN
978–93-81891-41-4), Publisher Springer Nature
Smedley PL, Kinniburgh DG (2002) A review of the source, behaviour and distribution of arsenic
in natural waters. Appl Geochem 17(5):517–568
Srivastava RK, Lohani M, Bhushan Pant A, Rahman Q (2010) Cyto-genotoxicity of amphibole
asbestos fibers in cultured human lung epithelial cell line: role of surface iron. Toxicol Ind Health
26(9):575–582
