355
40. Yang Z, Harrison CM, Chuang GC, Ballinger SW. The role of tobacco smoke induced mitochondrial damage in vascular dysfunction and atherosclerosis. Mutat Res. 2007;621(1-2):61–
74. Epub 2007/04/13. eng.
41. Petersen KF, Befroy D, Dufour S, Dziura J, Ariyan C, Rothman DL, et al. Mitochondrial dysfunction in the elderly: possible role in insulin resistance. Science. 2003;300(5622):1140–2.
42. Kim JT, Lee HK. Childhood obesity and endocrine disrupting chemicals. Ann Pediatr
Endocrinol Metab. 2017;22(4):219.
43. Mauvais-Jarvis F. Sex differences in metabolic homeostasis, diabetes, and obesity. Biol Sex
Differ. 2015;6(1):14.
44. Fénichel P, Chevalier N. Environmental endocrine disruptors: new diabetogens? C R Biol.
2017;340(9-10):446–52.
45. Bonomini F, Rodella LF, Rezzani R. Metabolic syndrome, aging and involvement of oxidative
stress. Aging Dis. 2015;6(2):109.
46. Wei J, Zhou T, Hu Z, Li Y, Yuan H, Zhao K, et al. Effects of triclocarban on oxidative stress and
innate immune response in zebrafish embryos. Chemosphere. 2018;210:93–101.
47. Rehman K, Fatima F, Akash MSH. Biochemical investigation of association of arsenic exposure with risk factors of diabetes mellitus in Pakistani population and its validation in animal
model. Environ Monit Assess. 2019;191(8):511. Epub 2019/07/28. eng.
48. Rehman K, Fatima F, Waheed I, Akash MSH. Prevalence of exposure of heavy metals and their
impact on health consequences. J Cell Biochem. 2018;119(1):157–84. Epub 2017/06/24. eng.
49. Akash MS, Rehman K, Chen S. Role of inflammatory mechanisms in pathogenesis of type 2
diabetes mellitus. J Cell Biochem. 2013;114(3):525–31. Epub 2012/09/20. eng.
50. Rehman K, Akash MS. Mechanisms of inflammatory responses and development of insulin
resistance: how are they interlinked? J Biomed Sci. 2016;23(1):87. Epub 2016/12/04. eng.
51. Rehman K, Akash MSH. Mechanism of generation of oxidative stress and pathophysiology
of type 2 diabetes mellitus: how are they interlinked? J Cell Biochem. 2017;118(11):3577–85.
Epub 2017/05/02. eng.
52. Peropadre A, Freire PF, Martín JMP, Herrero Ó, Hazen MJ. Endoplasmic reticulum stress
as a novel cellular response to di (2-ethylhexyl) phthalate exposure. Toxicol in Vitro.
2015;30(1):281–7.
53. Rocha M, Diaz-Morales N, Rovira-Llopis S, Escribano-Lopez I, Bañuls C, Hernandez-Mijares
A, et al. Mitochondrial dysfunction and endoplasmic reticulum stress in diabetes. Curr Pharm
Des. 2016;22(18):2640–9.
54. Maiese K. New insights for oxidative stress and diabetes mellitus. Oxidative Med Cell Longev.
2015;2015:1.
20 Tobacco Smoking as an EDC in Metabolic Disorders
40. Yang Z, Harrison CM, Chuang GC, Ballinger SW. The role of tobacco smoke induced mitochondrial damage in vascular dysfunction and atherosclerosis. Mutat Res. 2007;621(1-2):61–
74. Epub 2007/04/13. eng.
41. Petersen KF, Befroy D, Dufour S, Dziura J, Ariyan C, Rothman DL, et al. Mitochondrial dysfunction in the elderly: possible role in insulin resistance. Science. 2003;300(5622):1140–2.
42. Kim JT, Lee HK. Childhood obesity and endocrine disrupting chemicals. Ann Pediatr
Endocrinol Metab. 2017;22(4):219.
43. Mauvais-Jarvis F. Sex differences in metabolic homeostasis, diabetes, and obesity. Biol Sex
Differ. 2015;6(1):14.
44. Fénichel P, Chevalier N. Environmental endocrine disruptors: new diabetogens? C R Biol.
2017;340(9-10):446–52.
45. Bonomini F, Rodella LF, Rezzani R. Metabolic syndrome, aging and involvement of oxidative
stress. Aging Dis. 2015;6(2):109.
46. Wei J, Zhou T, Hu Z, Li Y, Yuan H, Zhao K, et al. Effects of triclocarban on oxidative stress and
innate immune response in zebrafish embryos. Chemosphere. 2018;210:93–101.
47. Rehman K, Fatima F, Akash MSH. Biochemical investigation of association of arsenic exposure with risk factors of diabetes mellitus in Pakistani population and its validation in animal
model. Environ Monit Assess. 2019;191(8):511. Epub 2019/07/28. eng.
48. Rehman K, Fatima F, Waheed I, Akash MSH. Prevalence of exposure of heavy metals and their
impact on health consequences. J Cell Biochem. 2018;119(1):157–84. Epub 2017/06/24. eng.
49. Akash MS, Rehman K, Chen S. Role of inflammatory mechanisms in pathogenesis of type 2
diabetes mellitus. J Cell Biochem. 2013;114(3):525–31. Epub 2012/09/20. eng.
50. Rehman K, Akash MS. Mechanisms of inflammatory responses and development of insulin
resistance: how are they interlinked? J Biomed Sci. 2016;23(1):87. Epub 2016/12/04. eng.
51. Rehman K, Akash MSH. Mechanism of generation of oxidative stress and pathophysiology
of type 2 diabetes mellitus: how are they interlinked? J Cell Biochem. 2017;118(11):3577–85.
Epub 2017/05/02. eng.
52. Peropadre A, Freire PF, Martín JMP, Herrero Ó, Hazen MJ. Endoplasmic reticulum stress
as a novel cellular response to di (2-ethylhexyl) phthalate exposure. Toxicol in Vitro.
2015;30(1):281–7.
53. Rocha M, Diaz-Morales N, Rovira-Llopis S, Escribano-Lopez I, Bañuls C, Hernandez-Mijares
A, et al. Mitochondrial dysfunction and endoplasmic reticulum stress in diabetes. Curr Pharm
Des. 2016;22(18):2640–9.
54. Maiese K. New insights for oxidative stress and diabetes mellitus. Oxidative Med Cell Longev.
2015;2015:1.
20 Tobacco Smoking as an EDC in Metabolic Disorders
