Publication Cover
Archives of Physiology and Biochemistry
The Journal of Metabolic Diseases
Volume 129, 2023 - Issue 1
56
Views
1
CrossRef citations to date
0
Altmetric
Original Articles

Co Q10 improves vascular reactivity in male diabetic rats by enhancing insulin sensitivity and antioxidant effect

ORCID Icon, &
Pages 108-115 | Received 07 Apr 2020, Accepted 15 Jul 2020, Published online: 28 Jul 2020

References

  • Akbarzadeh, A., et al., 2007. Induction of diabetes by streptozotocin in rats. Indian journal of clinical biochemistry: IJCB, 22 (2), 60–64.
  • Albus, U., 2012. Guide for the care and use of laboratory animals (8th edn). London, England: SAGE Publications Sage UK.
  • Amin, M.M., et al., 2014. Novel CoQ10 antidiabetic mechanisms underlie its positive effect: modulation of insulin and adiponectine receptors, Tyrosine kinase, PI3K, glucose transporters, sRAGE and visfatin in insulin resistant/diabetic rats. PloS One, 9 (2), e89169.
  • Asmat, U., Abad, K., and Ismail, K., 2016. Diabetes mellitus and oxidative stress-A concise review. Saudi pharmaceutical journal, 24 (5), 547–553.
  • Association, A. D. 2014. Diagnosis and classification of diabetes mellitus. Diabetes care, 37, S81–S90.
  • Aulbach, F., et al., 1999. Insulin stimulates the L-type Ca2+ current in rat cardiac myocytes. Cardiovascular research, 42 (1), 113–120.
  • Baradaran, A., Nasri, H., and Rafieian-Kopaei, M., 2014. Oxidative stress and hypertension: possibility of hypertension therapy with antioxidants. Journal of research in medical sciences: the official journal of Isfahan University of Medical Sciences, 19, 358.
  • Bhagavan, H.N., and Chopra, R.K., 2007. Plasma coenzyme Q10 response to oral ingestion of coenzyme Q10 formulations. Mitochondrion, 7, S78–S88.
  • Chen, H.H., et al., 2019. Antihypertensive potential of coenzyme Q10 via free radical scavenging and enhanced Akt‐nNOS signaling in the nucleus tractus solitarii in rats. Molecular nutrition & food research, 63, 1801042.
  • Coldiron, A.D., Sanders, R.A., and Watkins, J.B., 2002. Effects of combined quercetin and coenzyme Q10 treatment on oxidative stress in normal and diabetic rats. Journal of biochemical and molecular toxicology, 16 (4), 197–202.
  • Cryer, P.E., Davis, S.N., and Shamoon, H., 2003. Hypoglycemia in diabetes. Diabetes care, 26 (6), 1902–1912.
  • Davel, A.P., Rossoni, L.V., and Vassallo, D.V., 2000. Effects of ouabain on the pressor response to phenylephrine and on the sodium pump activity in diabetic rats. European journal of pharmacology, 406 (3), 419–427.
  • Draper, H., et al., 1993. A comparative evaluation of thiobarbituric acid methods for the determination of malondialdehyde in biological materials. Free radical biology & medicine, 15 (4), 353–363.
  • El-Latif, A., et al., 2014. Effect of different doses of vitamin e on body weight and serum malondialdehyde in streptozotocin-induced diabetic rats. Al-Azhar medical journal, 331, 1–11.
  • El-Sheikh, A.A., et al., 2012. Effect of coenzyme-Q10 on doxorubicin-induced nephrotoxicity in rats. Advances in pharmacological sciences, 2012, 1–8.
  • Falk, E., 2006. Pathogenesis of atherosclerosis. Journal of the American college of cardiology, 47 (8 Suppl), C7–C12.
  • Firoozrai, M., Nourbakhsh, M., and Razzaghy-Azar, M., 2007. Erythrocyte susceptibility to oxidative stress and antioxidant status in patients with type 1 diabetes. Diabetes research and clinical practice, 77 (3), 427–432.
  • Gao, L., et al., 2012. Effects of coenzyme Q10 on vascular endothelial function in humans: a meta-analysis of randomized controlled trials. Atherosclerosis, 221 (2), 311–316.
  • Husain, K., et al., 2015. Inflammation, oxidative stress and renin angiotensin system in atherosclerosis. World journal of biological chemistry, 6 (3), 209–217.
  • Ishizaki, N., et al., 2009. Improvement in glucose tolerance as a result of enhanced insulin sensitivity during electroacupuncture in spontaneously diabetic Goto-Kakizaki rats. Metabolism: clinical and experimental, 58 (10), 1372–1378.
  • Judzewitsch, R.G., et al., 1982. Chronic chlorpropamide therapy of noninsulin-dependent diabetes augments basal and stimulated insulin secretion by increasing islet sensitivity to glucose. The journal of clinical endocrinology and metabolism, 55 (2), 321–328.
  • Kashihara, N., et al., 2010. Oxidative stress in diabetic nephropathy. Current medicinal chemistry, 17 (34), 4256–4269.
  • Kobayashi, T., and Kamata, K., 1999. Effect of insulin treatment on smooth muscle contractility and endothelium-dependent relaxation in rat aortae from established STZ-induced diabetes. British journal of pharmacology, 127 (4), 835–842.
  • Koracevic, D., et al., 2001. Method for the measurement of antioxidant activity in human fluids. Journal of clinical pathology, 54 (5), 356–361.
  • Laakso, M., et al., 1990. Decreased effect of insulin to stimulate skeletal muscle blood flow in obese man. A novel mechanism for insulin resistance. Journal of clinical investigation, 85 (6), 1844–1852.
  • Liu, H.-Y., et al., 2009. Insulin is a stronger inducer of insulin resistance than hyperglycemia in mice with type 1 diabetes mellitus (T1DM). The journal of biological chemistry, 284 (40), 27090–27100.
  • Luo, K., et al., 2019. Therapeutic potential of coenzyme Q10 in mitochondrial dysfunction during tacrolimus-induced beta cell injury. Nephrology dialysis transplantation, 34, gfz103.
  • Maheshwari, R., et al., 2017. Effect of concomitant administration of coenzyme Q10 with sitagliptin on experimentally induced diabetic nephropathy in rats. Renal failure, 39 (1), 130–139.
  • Mather, K.J., Steinberg, H.O., and Baron, A.D., 2013. Insulin resistance in the vasculature. The journal of clinical investigation, 123 (3), 1003–1004.
  • Mcgee, P., et al., 2014. Insulin secretion measured by stimulated C-peptide in long-established Type 1 diabetes in the Diabetes Control and Complications Trial (DCCT)/ Epidemiology of Diabetes Interventions and Complications (EDIC) cohort: a pilot study. Diabetic medicine: a journal of the british diabetic association, 31 (10), 1264–1268.
  • Modi, K. P., et al., 2006. Beneficial effect of coenzyme Q10 in streptozotocin-induced type I diabetic rats. Iranian journal of pharmacology and therapeutics, 5 (1), 61–65.
  • Montezano, A.C., and Touyz, R.M., 2012. Oxidative stress, Noxs, and hypertension: experimental evidence and clinical controversies. Annals of medicine, 44 (sup1), S2–S16.
  • Okamoto, M.M., et al., 2011. Intensive insulin treatment induces insulin resistance in diabetic rats by impairing glucose metabolism-related mechanisms in muscle and liver. The journal of endocrinology, 211 (1), 55–64.
  • Paneni, F., et al., 2013. Diabetes and vascular disease: pathophysiology, clinical consequences, and medical therapy: part I. European heart journal, 34 (31), 2436–2443.
  • Parasuraman, S., and Raveendran, R., 2012. Measurement of invasive blood pressure in rats. Journal of pharmacology & pharmacotherapeutics, 3 (2), 172–177.
  • Perlstein, T.S., et al., 2012. Effect of angiotensin receptor blockade on insulin sensitivity and endothelial function in abdominally obese hypertensive patients with impaired fasting glucose. Clinical science (London, England: 1979)), 122 (4), 193–202.
  • Pop-Busui, R., et al., 2002. Dissection of metabolic, vascular, and nerve conduction interrelationships in experimental diabetic neuropathy by cyclooxygenase inhibition and acetyl-L-carnitine administration. Diabetes, 51 (8), 2619–2628.
  • Rajendran, P., et al., 2013. The vascular endothelium and human diseases. International Journal of biological sciences, 9 (10), 1057–1069.
  • Rask-Madsen, C., and King, G.L., 2007. Mechanisms of disease: endothelial dysfunction in insulin resistance and diabetes. Nature clinical practice. endocrinology & metabolism, 3 (1), 46–56.
  • Röder, P.V., et al., 2016. Pancreatic regulation of glucose homeostasis. Experimental & molecular medicine, 48, e219–e219.
  • Saleh, D.O., et al., 2013. Streptozotocin-induced vascular and biochemical changes in rats: Effects of rosiglitazone vs. metformin. Bulletin of faculty of pharmacy, Cairo university, 51, 131–138.
  • Selvin, E., et al., 2010. Glycated hemoglobin, diabetes, and cardiovascular risk in nondiabetic adults. The New England journal of medicine, 362 (9), 800–811.
  • Sivitz, W.I., and Yorek, M.A., 2010. Mitochondrial dysfunction in diabetes: from molecular mechanisms to functional significance and therapeutic opportunities. Antioxidants & redox signaling, 12 (4), 537–577.
  • Tijssen, P., 1985. Practice and theory of enzyme immunoassays. Amsterdam, Netherlands: Elsevier.
  • Trivelli, L.A., Ranney, H.M., and Lai, H.-T., 1971. Hemoglobin components in patients with diabetes mellitus. The New England journal of medicine, 284 (7), 353–357.
  • Tsai, K.-L., et al., 2012. A novel mechanism of coenzyme Q10 protects against human endothelial cells from oxidative stress-induced injury by modulating NO-related pathways. The journal of nutritional biochemistry, 23 (5), 458–468.
  • Ventura-Sobrevilla, J., et al., 2011. Effect of varying dose and administration of streptozotocin on blood sugar in male CD1 mice. Proceedings of the western pharmacology society, 54, 5–9.
  • Wada, A., et al., 2005. New twist on neuronal insulin receptor signaling in health, disease, and therapeutics. Journal of pharmacological sciences, 99 (2), 128–143.
  • Wang, W., et al., 2011. Oxidized low‐density lipoprotein inhibits nitric oxide‐mediated coronary arteriolar dilation by up‐regulating endothelial arginase I. Microcirculation (New York, N.Y.: 1994), 18 (1), 36–45.
  • Wt, W.M.A.C., 1987. Carbohydrates. In: N. W. Tietz, ed. Fundamentals of clinical chemistry. 3rd ed. Philadelphia: Saunders, 422–447.
  • Xu, P., et al., 2014. Distribution of C-peptide and its determinants in North American children at risk for type 1 diabetes. Diabetes care, 37 (7), 1959–1965.
  • Yoo, J.-Y., and Yum, K.-S., 2018. Effect of coenzyme Q10 on insulin resistance in Korean patients with prediabetes: a pilot single-center, randomized, double-blind, placebo-controlled study. BioMed research international, 2018, 1–6.
  • Zabielski, P., et al., 2014. Impact of insulin deprivation and treatment on sphingolipid distribution in different muscle subcellular compartments of streptozotocin-diabetic C57Bl/6 mice. American journal of physiology, endocrinology and metabolism), 306 (5), E529–E542.
  • Zahedi, H., et al., 2014. Effects of CoQ10 supplementation on lipid profiles and glycemic control in patients with Type 2 diabetes: a randomized, double blind, placebo-controlled trial. Journal of diabetes and metabolic disorders, 13, 81.
  • Zobalı, F., et al., 2002. Effects of vitamin A and insulin on the antioxidative state of diabetic rat heart: a comparison study with combination treatment. Cell biochemistry and function, 20 (2), 75–80.
  • Zourek, M., et al., 2008. The relationship between glycemia, insulin and oxidative stress in hereditary hypertriglyceridemic rat. Physiological research, 57 (4), 531–538.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.