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REFERENCES 1. Cozzolino M, Galassi A, Pivari F, et al (2017). Cardiovascular Burden in End-Stage Renal Disease. Ronco C (ed). In: Expanded Hemodialysis-Innovative Clinical Approach in Dialysis. Contrib Nephrol. Basel, Karger. 191: 44-57. DOI: 10.1159/000479250. 2. Descamps-Latscha B, Drüeke T, Witko-Sarsat V (2001). Dialysis-induced oxidative stress: biological aspects, clinical consequences, and therapy. Semin Dial. 14(3): 793-9. DOI: 10.1046/j.1525-139X.200100052.x. 3. Liakopoulos V, Roumeliotis S, Gorny X, et al. (2017). Oxidative Stress in Hemodialysis

References [1] Rombel-Bryzek A, Rajfur M, Zhuk O. The impact of copper ions on oxidative stress in garden cress Lepidium sativum. Ecol Chem Eng S. 2017;24:627-636. DOI: 10.1515/eces-2017-0041. [2] Zinicovscaia I, Rudi L, Valuta A, Cepot L, Vergel K, Frontasyeva MV, et al. Biochemical changes in Nostoc linckia associated with selenium nanoparticles biosynthesis. Ecol Chem Eng S. 2016;23:559-569. DOI: 10.1515/eces-2016-0039. [3] Benavides MP, Gallego SM, Tomaro ML. Cadmium toxicity in plants. Braz J Plant Physiol. 2005;17:21-34. DOI: 10.1590/S1677

, Cahalan MK, Stock MC, Ortega R, eds. Clinical anesthesia. 7th ed. Philadelphia: Lippincott Williams and Wilkins, 2013: 130-55. 6. Desborough JP. The stress response to trauma and surgery. Br J Anaesth 2000; 85: 109-17. 7. Kennedy G, Spence VA, McLaren M, Hill A, Under-wood C, Belch JJ. Oxidative stress levels are raised in chronic fatigue syndrome and are associated with clinical symptoms. Free Radic Biol Med 2005; 39: 584-9. 8. Verit FF, Erel O, Sav M, Celik N, Cadirci D. Oxidative stress is associated with clinical severity of nausea and vomiting of pregnancy. Am J

analysis of malondialdehyde in human body fluids. Free Radic Biol Med   20 : 251-256. Jha R, Rizvi SI. (2009). Age-dependent decline in erythrocyte acetylcholines-terase activity: correlation with oxidative stress. Biomed Pap Med Fac Univ Palacky Olomouc Czech Repub   153 : 195-198. Kale MN, Rathore S, Bhatnagar JD. (1999). Lipid peroxidative damage on pyretroid exposure and alterations in antioxidant status in rat erythrocytes: a possible involvement of reactive oxygen species. Toxicol Lett   105 : 197-205. López O, Hernández AF, Rodrigo L, Gil F, Pena G, Serrano JL

REFERENCES 1. Hoffman B.L., Shorge O.J, Bradshaw D.K., Halvorson M.L., Schaffer I.J., Corton M.M. (2016.) Williams Gyneclogy (3th ed), New York, USA: Mc Graw Hill Education. 2. The Rotterdam ESHRE/ASRM-sponsored PCOS consensus workshop group. Revised 2003 consensus on diagnostic criteria and long-term health risks related to polycystic ovary syndrome (PCOS). Human Reproduction.2004; 19(1): 41–47. 3. Al-Gugory KH, Fowler PA, Garrel C. The role of cellular reactive oxygen species, oxidative stress and antioxidants in pregnancy outcome. Int J Biochem. 2010; 42: 1634

., Bremner, J. D., Moghaddam, B., Southwick, S. M., Charney, D. S., Krystal, J. H. (1999). Glutamate and post-traumatic stress disorder: Towards a psychobiology of dissociation. Semin. Clin. Neuropsychiatry , 4 (4), 274-281. Cortese, B. M., Phan, K. L. (2005). The role of glutamate in anxiety and related disorders. CNS Spectr. , 10 (10), 820-830. Del Rio, D., Stewart, A. J., Pellegrini, N. (2005). A review of recent studies on malonaldehyde as toxic molecule and biological marker of oxidative stress. Nutr. Metab. Cardiovasc. Dis. , 15 (4), 316-328. Esterbauer, H

The presence of a strong defence system prevents damage caused by reactive oxygen species (ROS), including free radical compounds, produced in an organism. The rate of formation of ROS and that of their destruction or termination must be kept in balance for cell survival. If this redox balance is disrupted, the increased levels of peroxides and free radicals causes harmful oxidative stress through damage to cellular components, including proteins, nucleic acids, carbohydrates, and lipids [ 1 ]. Oxidative stress is related to a wide variety of diseases, including

References [1] Pasternak T, Potters G, Caubergs R, Jansen MAK, Complementary interactions between oxidative stress and auxins control plant growth responses at plant, organ and cellular level. J Exp Bot. 2005;56:1991-2001. DOI: 10.1093/jxb/eri196. [2] Raldugina GN, Krasavina MS, Lunkova NF, Burmistrova NA. Resistance of plants to Cu stress: transgenesis. In: Ahmad P, editor. Plant Metal Interaction. Emerging Remediation Techniques. Elsevier. 2016:69-114. DOI: 10.1016/B978-0-12-803158-2.00004-7. [3] Stohs SJ, Bagchi D. Oxidative mechanisms in the toxicity of metal

REFERENCES 1. Gitto E, Pellegrino S, D’Arrigo S, et al. Oxidative stress in resuscitation and in ventilation of newborns. Eur Respir J . 2009;34:1461-1469. 2. Haynes RL, Folkerth RD, Keefe RJ, et al. Nitrosative and oxidative injury to premyelinating oligodendrocytes in periventricular leukomalacia. J Neuropathol Exp Neurol . 2003;62:441-450. 3. Shobeiri F, Ranjbar A, Alizadeh FG, Nazari M. Salivary, plasma and cord blood oxidative stress biomarkers in mother and neonate: a combined analgesia concern. Journal of Postgraduate Medical Institute (Peshawar

References 1. Knight, J.A. (2000). Review: Free Radicals, Antioxidants, and the Immune System. Ann Clin Lab Sci; 30 (2): 145-158. 2. Abuja, P.M., Albertini, R. (2001). Methods for monitoring oxidative stress, lipid peroxidation and oxidation resistance of lipoproteins. Clin Chim Acta 306: 1-17. 3. Brambilla, G., Civitareale, C., Ballerini, A., et al. (2002). Response to oxidative stress as a welfare parameter in swine. Redox Rep 7: 159-163. 4. Botsoglou, N.A., Fletouris, D.J., Papageorgiou, G.E., Vassilopoulus, V.N., Mantis, A.J., Trakatellis, A.G. (1994). Rapid