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Archives of Physiology and Biochemistry
The Journal of Metabolic Diseases
Volume 128, 2022 - Issue 5
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Original Articles

Melatonin attenuates diabetes-induced oxidative stress in spleen and suppression of splenocyte proliferation in laboratory mice

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Pages 1401-1412 | Received 14 Feb 2020, Accepted 19 May 2020, Published online: 05 Jun 2020

References

  • Ahmad, R. and Haldar, C., 2010. Melatonin and androgen receptor expression interplay modulates cell-mediated immunity in tropical rodent Funambulus pennanti: an in-vivo and in-vitro study. Scandinavian journal of immunology, 71 (6), 420–430.
  • Bailey, S.A., Zidell, R.H., and Perry, R.W., 2004. Relationships between organ weight and body/brain weight in the rat: what is the best analytical endpoint? Toxicologic pathology, 32 (4), 448–466.
  • Calvo, J.R., et al., 1995. Immunomodulatory role of melatonin: specific binding sites in human and rodent lymphoid cells. Journal of pineal research, 18 (3), 119–126.
  • Carrillovico, A., et al., 2006. The modulatory role of melatonin on immune responsiveness. Current opinion in investigational drugs, 7, 423–431.
  • Cesta, M.F., 2006. Normal structure, function, and histology of mucosa-associated lymphoid tissue. Toxicologic pathology, 34 (5), 599–608.
  • Chelikani, P., Fita, I., and Loewen, P.C., 2004. Diversity of structures and properties among catalases. Cellular and molecular life sciences, 61 (2), 192–208.
  • Das, J. and Sil, P.C., 2012. Taurine ameliorates alloxan-induced diabetic renal injury, oxidative stress-related signaling pathways and apoptosis in rats. Amino acids, 43 (4), 1509–1523.
  • Das, K., Samanta, L., and Chainy, G.B.N., 2000. A modified spectrophotometric assay of superoxide dismutase using nitrate formation by superoxide radicals. Indian journal of biochemistry and biophysics, 37, 201–204.
  • Drazen, D.L. and Nelson, R.J., 2001. Melatonin receptor subtype MT2 (Mel 1b) and not MT1 (Mel 1a) is associated with melatonin-induced enhancement of cell-mediated and humoral immunity. Neuroendocrinology, 74 (3), 178–184.
  • Ebaid, H., et al., 2015. Effect of STZ-induced diabetes on spleen of rats: improvement by camel whey proteins. Pakistan journal of zoology, 47 (4), 1109–1116.
  • Ellman, G.L., 1959. Tissue sulfhydryl groups. Archives of biochemistry and biophysics, 82 (1), 70–77.
  • Esterbauer, H., Schaur, R.J., and Zollner, H., 1991. Chemistry and biochemistry of 4-hydroxynonenal, malonaldehyde and related aldehydes. Free radical biology & medicine, 11 (1), 81–128.
  • Geerlings, S.E. and Hoepelman, A.I.M., 1999. Immune dysfunction in patients with diabetes mellitus (DM)). FEMS immunology and medical microbiology, 26 (3–4), 259–265.
  • Guerrero, J.M. and Reiter, R.J., 1992. A brief survey of pineal gland-immune system interrelationships. Endocrine research, 18 (2), 91–113.
  • Guerrero, J.M. and Reiter, R.J., 2002. Melatonin-immune system relationships. Current topics in medicinal chemistry, 2 (2), 167–179.
  • Gupta, Y.K., Veerendra Kumar, M.H., and Srivastava, A.K., 2003. Effects of Centella asiatica on pentylenetetrazole- induced kindling, cognition and oxidative stress in rats. Pharmacology biochemistry and behavior, 74 (3), 579–585.
  • Hadwan, M.H., 2016. New method for assessment of serum catalase activity. Indian journal of science technology, 9, 80499.
  • Hajam, Y.A. and Rai, S., 2019. Melatonin and insulin modulates the cellular biochemistry, histoarchitecture and receptor expression during hepatic injury in diabetic rats. Life sciences, 239, 117046.
  • Hajam, Y.A., et al., 2017. Repossession of brain complications in a streptozotocin induced diabetic rat by exogenous melatonin administration. International journal of zoological research, 13 (2), 64–73.
  • Hajam, Y.A., et al., 2020. Combined administration of exogenous melatonin and insulin ameliorates streptozotocin induced toxic alteration on hematological parameters in diabetic male Wistar rats. Toxicology reports, 7, 353–359.
  • Haldar, C., Rai, S., and Singh, R., 2004. Melatonin blocks dexamethasone-induced immunosuppression in a seasonally breeding rodent Indian palm squirrel, Funambulus pennanti. Steroids, 69 (6), 367–377.
  • Hayyan, M., Hashim, M.A., and Alnashef, I., 2016. Superoxide ion: generation and chemical implications. Chemical reviews, 116 (5), 3029–3085.
  • Ighodaro, O.M. and Akinloye, O.A., 2018. First line defence antioxidants-superoxide dismutase (SOD), catalase (CAT) and glutathione peroxidase (GPX): their fundamental role in the entire antioxidant defence grid. Alexandria journal of medicine, 54 (4), 287–293.
  • Jaworek, J., et al., 2017. Effects of melatonin and its analogues on pancreatic inflammation, enzyme secretion, and tumorigenesis. International journal of molecular sciences, 18 (5), 1014.
  • Kayama, Y., et al., 2015. Diabetic cardiovascular disease induced by oxidative stress. International journal of molecular sciences, 16 (10), 25234–25263.
  • King, A.J.F., 2012. The use of animal models in diabetes research. British journal of pharmacology, 166 (3), 877–894.
  • Kwak, M.K., et al., 2002. Enhanced expression of the transcription factor Nrf2 by cancer chemopreventive agents: role of antioxidant response element-like sequences in the nrf2 promoter. Molecular and cellular biology, 22 (9), 2883–2892.
  • Liguori, I., et al., 2018. Oxidative stress, aging, and diseases. Clinical interventions in aging, 13, 757–772.
  • Liu, F. and Ng, T.B., 2000. Effect of pineal indoles on activities of the antioxidant defense enzymes superoxide dismutase, catalase, and glutathione reductase, and levels of reduced and oxidized glutathione in rat tissues. Biochemistry and cell biology = Biochimie et biologie cellulaire, 78 (4), 447–453.
  • Lo, C.C., et al., 2017. Effects of melatonin on glucose homeostasis, antioxidant ability, and adipokine secretion in ICR mice with NA/STZ-induced hyperglycemia. Nutrients, 9 (11), 1187.
  • Lobo, V., et al., 2010. Free radicals, antioxidants and functional foods: impact on human health. Pharmacognosy reviews, 4 (8), 118–126.
  • Loboda, A., et al., 2016. Role of Nrf2/HO-1 system in development, oxidative stress response and diseases: an evolutionarily conserved mechanism. Cellular and molecular life sciences, 73 (17), 3221–3247.
  • Mabley, J.G., et al., 2003. Inosine protects against the development of diabetes in multiple-low-dose streptozotocin and nonobese diabetic mouse models of type 1 diabetes. Molecular medicine, 9 (3–4), 96–104.
  • Maestroni, G.J.M., 1993. The immunoneuroendocrine role of melatonin. Journal of pineal research, 14 (1), 1–10.
  • Mishra, A.P., et al., 2018. Wdr13 and streptozotocin-induced diabetes. Nutrition and diabetes, 8, 57. doi: 10.1038/s41387-018-0065-6
  • Ohkawa, H., Ohishi, N., and Yagi, K., 1979. Assay for lipid peroxides in animal tissues by thiobarbituric acid reaction. Analytical biochemistry, 95 (2), 351–358.
  • Ostrea, E.M., et al., 1985. Red cell membrane lipid peroxidation and hemolysis secondary to phototherapy. Acta paediatrica Scandinavica, 74 (3), 378–381.
  • Ozturk, G., et al., 2000. The effect of melatonin on liver superoxide dismutase activity, serum nitrate and thyroid hormone levels. The Japanese journal of physiology, 50 (1), 149–153.
  • Pang, C.S. and Pang, S.F., 1992. High affinity specific binding of 2-[125I]iodomelatonin by spleen membrane preparations of chicken. Journal of pineal research, 12 (4), 167–173.
  • Patlevič, P., et al., 2016. Reactive oxygen species and antioxidant defense in human gastrointestinal diseases. Integrative medicine research, 5 (4), 250–258.
  • Paul, S., et al., 2018. Melatonin chelates iron and binds directly with phenylhydrazine to provide protection against phenylhydrazine induced oxidative damage in red blood cells along with its antioxidant mechanisms: an in vitro study. Melatonin research, 1 (1), 1–20.
  • Sakowicz-Burkiewicz, M., et al., 2006. Diabetes-induced decrease of adenosine kinase expression impairs the proliferation potential of diabetic rat T lymphocytes. Immunology, 118 (3), 402–412.
  • Singh, S.S., Deb, A., and Sutradhar, S., 2017. Dexamethasone modulates melatonin MT2 receptor expression in splenic tissue and humoral immune response in mice. Biological rhythm research, 48 (3), 425–435.
  • Sinha, A.K., 1972. Colorimetric assay of catalase. Analytical biochemistry, 47 (2), 389–394.
  • Srinivasan, V., et al., 2009. Melatonin and melatonergic drugs on sleep: possible mechanisms of action. The international journal of neuroscience, 119 (6), 821–846.
  • Su, L.J., et al., 2019. Reactive oxygen species-induced lipid peroxidation in apoptosis, autophagy, and ferroptosis. Oxidative medicine and cellular longevity, 2019, 1–13.
  • Tan, D.X., et al., 2000. Significance of melatonin in antioxidative defense system: reactions and products. Biological signals and receptors, 9 (3–4), 137–159.
  • Toniolo, A., et al., 2019. The diabetes pandemic and associated infections: suggestions for clinical microbiology. Reviews in medical microbiology: a journal of the Pathological Society of Great Britain and Ireland, 30 (1), 1–17.
  • Ullah, A., Khan, A., and Khan, I., 2016. Diabetes mellitus and oxidative stress-A concise review. Saudi pharmaceutical journal, 24 (5), 547–553.
  • Van Geijlswijk, I.M., Korzilius, H.P., and Smits, M.G., 2010. The use of exogenous melatonin in delayed sleep phase disorder: a meta-analysis. Sleep, 33 (12), 1605–1614.

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