Cite

Aebi H. (1984). Catalase in vitro. Methods Enzymol105: 121–126.Search in Google Scholar

Andres RL, Day MC. (2000). Perinatal complications associated with maternal tobacco use. Semin Neonatol5: 231–241.Search in Google Scholar

Balfour DJ. (2002). The neurobiology of tobacco dependence: a commentary. Respiration69(1): 7–11.Search in Google Scholar

Bast A, Wolf G, Oberbaumer I, Walther R. (2002). Oxidative and nitrosative stress induces peroxiredoxins in pancreatic beta cells. Diabetologia45: 867–876.Search in Google Scholar

Beauchamp C, Fridovich I. (1971). Superoxide dismutase: Improved assays and an assay applicable to acrylamide gels. Anal Biochem44: 276–287.Search in Google Scholar

Bhagwat SV, Vijayasarathy C, Raza H, Mullick J. Avadhani NC. (1998). Preferential effects of nicotine and 4-(N-methyl-N-nitrosamino)-1-(3-pyridyl)-1-butanone on mitochondrial glutathione S-transferase A4-4 induction and increased oxidative stress in the rat brain. Biochem Pharmacol56: 831–839.Search in Google Scholar

Brownlee ML. (2001). Biochemistry and molecular cell biology of diabetic complications. Nature414(6865): 813–820.Search in Google Scholar

Bruin JE, Gerstein HC, Morrison KM, Holloway AC. (2008a). Increased pancreatic beta-cell apoptosis following fetal and neonatal exposure to nicotine is mediated via the mitochondria. Toxicol Sci103: 362–370.10.1093/toxsci/kfn01218203686Search in Google Scholar

Bruin JE, Petre MA, Lehman MA, Raha S, Gerstein HC, Morrison KM, Holloway AC. (2008b). Maternal nicotine exposure increases oxidative stress in the offspring. Free Radical Bio Med44: 1919–1925.10.1016/j.freeradbiomed.2008.02.01018343235Search in Google Scholar

Chanda S, Islam MN, Pramanik P, Mitra C. (1996). High-lipid diet is a possible predisposing factor in the development of hypogonadal osteoporosis. Jpn J Physiol46: 383–388.Search in Google Scholar

Chattopadhyay K, Chattopadhyay BD. (2008). Effect of nicotine on lipid profile, peroxidation & antioxidant enzymes in female rats with restricted dietary protein. Indian J Med Res127: 571–576.Search in Google Scholar

Drews G, Krippeit-Drews P, Dufer M. (2010). Oxidative stress and β-cell dys-function. Pflügers Arch 460: 703–718.Search in Google Scholar

Ellman GL. (1959). Tissue sulfhydryl groups. Arch Biochem Biophys 82(1): 70–77.Search in Google Scholar

Gul M, Kutay FZ, Temocin S, Hanninen O. (2000). Cellular and clinical implications of glutathione. Indian J Exp Biol38: 625–634.Search in Google Scholar

Gvozdjakova A, Kucharska J, Gvozdjak J. (1992). Effect of smoking on the oxidative processes of cardiomyocytes. Cardiology81: 81–84.Search in Google Scholar

Helen A, Krishnakumar K, Vijayammal PL, Augusti KT. (2000). Antioxidant effect of onion oil (Allium cepa Linn.) on the damages induced by nicotine in rats as compared to alpha-tocopherol. Toxicol Lett116: 61–68.Search in Google Scholar

Huang RC, Burke V, Newnham JP, Stanley FJ, Kendall GE, Landau LI, Oddy WH, Blake KV, Palmer LJ, Beilin LJ. (2007). Perinatal and childhood origins of cardiovascular disease. Int J Obes (Lond)31: 236–244.Search in Google Scholar

Huang Q, Bu S, Yu Y, Guo Z, Ghatnekar G, Bu M, Yang L, Lu B, Zhengkang F, Liu S, Wang F. (2007). Diazoxide prevents diabetes through inhibiting pancreatic β-cells from apoptosis via Bcl-2/Bax rate and p38-β mitogen-activated protein kinase. Endocrinology148(1): 81–91.Search in Google Scholar

Jiang J, Liu B, Sitas F, Li J, Zeng X, Han W. (2010). Smoking attributable deaths and potential years of life lost from a large, representative study in China. Tobacco Control19(1): 7–12.Search in Google Scholar

Karlsson S, Ahrén B. (1998). Insulin and glucagon secretion by ganglionic nicotinic activation in adrenal ectomized mice. Eur J Pharmacol342: 291–295.Search in Google Scholar

Kelly G. (2002). The Interaction of Cigarette Smoking and Antioxidants. Part II: Alpha-Tocopherol. Altern Med Rev7(6): 500–511.Search in Google Scholar

Kharb S, Singh GP. (2000). Effect of smoking on lipid profile, lipid peroxidation and antioxidant status in normal subjects and in patients during and after acute myocardial infarction. Clin Chim Acta302: 213–219.Search in Google Scholar

Kovacic P, Cooksy A. (2005). Iminium metabolism for nicotine toxicity and addiction: oxidative stress and electron transfer. Med Hypotheses64: 104–111.Search in Google Scholar

Lamprecht SA, Lipkin M. (2003). Chemoprevention of colon cancer by calcium, vitamin D and folate: molecular mechanisms. Nat Rev Cancer3: 601–614.Search in Google Scholar

Lowry OH, Rosebrough NJ, Farr AL, Randall RJ. (1951). Protein measurement with the Folin phenol reagent. J Biol Chem193(1): 265–275.Search in Google Scholar

Mabley JG, Pacher P, Southan GJ, Salzman AL, Szabó C. (2002). Nicotine reduces the incidence of type I diabetes in mice. J Pharmacol Exp Ther300(3): 876–881.Search in Google Scholar

Mandrup-Poulsen T. (2003). Apoptotic signal transduction pathways in diabetes. Biochem Pharmacol66: 1433–1440.Search in Google Scholar

Mansoor MA, Kristensen O, Hervig T, Drabløs PA, Stakkestad JA, Woie L, Hetland O, Osland A. (1997). Low concentrations of folate in serum and erythrocytes of smokers: methionine loading decreases folate concentrations in serum of smokers and nonsmokers. Clin Chem (Washington, DC)43: 2192–2194.Search in Google Scholar

McPhail I, Boston U, Hurt RD, Miller VM. (1998). Mechanisms of cardiovascular effects of nicotine. Curr Top Pharmacol4: 265–280.Search in Google Scholar

Moens AL, Champion HC, Claeys MJ, Tavazzi B, Kaminski PM, Wolin MS, Borgonjon DJ, Van Nassauw L, Haile A, Zviman M, Bedja D, Wuyts FL, Elsaesser RS, Cos P, Gabrielson KL, Lazzarino G, Paolocci N, Timmermans JP, Vrints CJ, Kass DA. (2008). High-dose folic acid pretreatment blunts cardiac dysfunction during ischemia coupled to maintenance of high-energy phosphates and reduces postreperfusion injury. Circulation 117: 1810–1819.Search in Google Scholar

Montgomery SM, Ekbom A. (2002). Smoking during pregnancy and diabetes mellitus in a British longitudinal birth cohort. BMJ324: 26–27.Search in Google Scholar

Mukherjee S, Das D, Mukherjee M, Das AS, Mitra C. (2006). Synergistic effect of folic acid and vitamin B12 in ameliorating arsenic-induced oxidative damage in pancreatic tissue of rat. J Nutr Biochem17: 319–327.Search in Google Scholar

Muzawar SA, Patil VW. (2011). Folic acid and vitamins B12 levels and their correlation in cigarette smoker with hyperhomocysteinemia. Al Ameen J of Med Sci, 4(2): 169 – 174.Search in Google Scholar

Pagan K, Hou J, Goldenberg RL Cliver SP, Tamura T. (2001). Effect of smoking on serum concentrations of total homocysteine and B vitamins in mid-pregnancy. Clin Chim Acta306: 103–109.Search in Google Scholar

Rains JL, Jain SK. (2011). Oxidative stress, insulin signaling, and diabetes. Free Radic Biol Med50(5): 567–575.Search in Google Scholar

Raso GM, Meli R, Gualillo O, Pacilio M, Carlo RD. (1999). Prolactin induction of nitric oxide synthase in rat C6 Glioma cells. J Neurochem73: 2272–2277.Search in Google Scholar

Reis RP, Azinheira J, Reis HP, Pina JE, Correia J M, Luis AS. (2000). Influence of smoking on homocysteinemia at baseline and after methionine load. Rev Port Cardioll19: 471–474.Search in Google Scholar

Robertson R, Zhou H, Zhang T, Harmon J. (2007). Chronic oxidative stress as a mechanism for glucose toxicity of the beta cell in type 2 diabetes. Cell Biochem Biophys48: 139–146.Search in Google Scholar

Sahin K, Onderci M, Sahin N, Gursu MF, Kucuk O. (2003). Dietary Vitamin C and Folic Acid Supplementation Ameliorates the Detrimental Effects of Heat Stress in Japanese Quail. J Nutr133(6): 1882–1886.Search in Google Scholar

Sakuraba H, Mizukami H, Yagihashi N, Wada R, Hanyu C, Yagihashi S. (2007). Reduced beta-cell mass and expression of oxidative stress-related DNA damage in the islet of Japanese Type II diabetic patients. Diabetologia45: 85–96.Search in Google Scholar

Sano A, Funabashi T, Kawaguchi M, Shinohara K, Kimura F. (1999). Intravenous injections of nicotine decrease the pulsatile secretion of LH by inhibiting the gonadotropin-releasing hormone (GnRH) pulse generator activity in female rats. Psychoneuroendocrinology (Oxford)24: 397–407.Search in Google Scholar

Sargeant LA, Khaw KT, Bingham S, Day NE, Luben RN, Oakes S, Welch A, Wareham NJ. (2001). Cigarette smoking and glycaemia: the EPIC-Norfolk Study. Int J Epidemiol30: 547–554.Search in Google Scholar

Sheikh-Ali M, Chehade JM, Mooradian AD. (2011). The antioxidant paradox in diabetes mellitus. Am J Ther18(3): 266–278.Search in Google Scholar

Singh SP, Kalra R, Puttfarchen P, Kozak A, Tesfaigzi J, Sopori ML. (2000). Acute and chronic nicotine exposures modulate the immune system through different pathways. Toxicol Appl Pharmacol164: 65–72.Search in Google Scholar

Solak ZA, Kabaroglu C, Cok G, Parildar Z, Bayindir U, Ozmen D. (2005). Effect of different levels of cigarette smoking on lipid peroxidation, glutathione enzymes and paraoxonase 1 activity in healthy people. Clin Exp Med5: 99–105.Search in Google Scholar

Stark G. (2005). Functional consequences of oxidative membrane damage. J Membr Biol205: 1–16.Search in Google Scholar

Suleyman H, Gumustekin K, Taysi S, Keles S, Oztasan, N, Aktas O, Altinkaynak K, Timur H, Akcay F, Akar S, Dane S, Gul M. (2002). Beneficial effects of Hippophae rhamnoides L. on nicotine induced oxidative stress in rat blood compared with vitamin E. Biol. Pharm. Bull. 25(9): 1133–1136.Search in Google Scholar

Toklu H, Sehirli Ö, Sahin H, Çetinel S, Yesen BC, Sener G. (2010). Resveratrol supplementation protects against chronic nicotine-induced oxidative damage and organ dysfunction in the rat urogenital system. Marmara Pharmaceutical J14: 29–40.Search in Google Scholar

Willi C, Bodenmann P, Ghali WA, Faris PD, Cornuz J. (2007). Active smoking and the risk of type 2 diabetes: a systematic review and meta-analysis. JAMA298: 2654–2664.Search in Google Scholar

Wills ED. (1987). Evaluation of lipid peroxidation in lipids and biological membranes in Biochemical Toxicology: a practical approach (Snell K, Mullock B eds) pp. 138 – 140, IRL Press, Oxford(England).Search in Google Scholar

Xie X, Liu Q, Wu J, Wakui M. (2009). Impact of cigarette smoking in type 2 diabetes development. APS30: 784–787.Search in Google Scholar

Yildiz D, Liu YS, Ercal N, Amstrong DW. (1999). Comparison of pure nicotine-and smokeless tobacco extract–induced toxicities and oxidative stress. Arch Environ Contam Toxicol (New York)37: 434–439.Search in Google Scholar

Yoshikawa H, Hellstrom-Lindahl E, Grill V. (2005). Evidence for functional nicotinic receptors on pancreatic beta cells. Metabolism54: 247–254.Search in Google Scholar

Zaghloul MS, Nader MA, El-Kashef H, Gamiel NM. (2013). Benificial effect of lipoic acid on nicotine-induced vascular endothelial damage in rabbits. Oxid Antioxid Med Sci2(3): 175–180.Search in Google Scholar

Zhang S, Day I, Ye S. (2001). Nicotine induced changes in gene expression by human coronary artery endothelial cells. Atherosclerosis154: 277–283.Search in Google Scholar

Zhao F, Wang Q. (2012). The protective effect of peroxiredoxin II on oxidative stress induced apoptosis in pancreatic β-cells. Cell & Bioscience2: 22.Search in Google Scholar

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