2017, Number 05-06
<< Back
Medicina & Laboratorio 2017; 23 (05-06)
Association of adiponectin and tumor necrosis factor-alpha (TNF-α) levels with albuminuria in patients with type 2 diabetes mellitus
Sierra-Castrillo J, Gómez-Rave LJ
Language: Spanish
References: 53
Page: 257-270
PDF size: 509.27 Kb.
ABSTRACT
Type 2 Diabetes mellitus is a metabolic chronic disease, which if it is not properly controlled
produces a progressive kidney damage causing diabetic nephropathy. It is also highly associated with
a chronic inflammatory state, related to adipocytokines (IL-6, TNF-α, leptin, adiponectin) secretion
which are involved in metabolic homeostasis and crucial in both regulating the atherogenic process
as in insulin resistance.
Objective: To relate the behavior of adiponectin and TNF-α levels with albuminuria
in patients with type 2 diabetes mellitus.
Materials and methods: The research was based on a
descriptive cross-sectional model with a study population composed by patients admitted to University
Hospital Erasmo Meoz (Cucuta, Colombia). According to previously established selection criteria, two
analysis groups were conformed; patients diagnosed with type 2 diabetes mellitus and albuminuria
›30 mg/L (n = 24), and a control group without the above conditions (n = 20).
Results: The results
revealed that there is a positive and statistically significant correlation between TNF-α concentration
and albuminuria (p ‹0.03). It was observed that between TNF-α and adiponectin levels there are no
apparently correlation (p› 0.05).
Conclusions: although there are no significant differences between
adiponectin and TNF-α levels, TNF-α could be exploited as an early markers for kidney damage or help
designing of progression estimators of injury in patients with diabetes type 2.
REFERENCES
Goncalves Reis CE, Dullius J. Glycemic acute changes in type 2 diabetics caused by low and high glycemic index diets. Nutr Hosp 2011; 26: 546-552.
Khardori R. Type 2 Diabetes Mellitus Clinical Presentation. 2017. Medscape. Disponible: http://emedicine.medscape. com/article/117853-clinical. Consultado: jun 2017.
Torres-Viloria A, Zacarías-Castillo R. Nefropatía diabética. Rev Hosp Gral Dr M Gea González 2002; 5: 24-32.
Kashihara N, Haruna Y, Kondeti VK, Kanwar YS. Oxidative stress in diabetic nephropathy. Curr Med Chem 2010; 17: 4256-4269.
Riemer J, Bulleid N, Herrmann JM. Disulfide formation in the ER and mitochondria: two solutions to a common process. Science 2009; 324: 1284-1287.
Battilana CA. El riñón en la hipertensión arterial esencial. Rev Perú Cardiol 1997; XXIII: 26-31.
Glassock RJ. Is the presence of microalbuminuria a relevant marker of kidney disease? Curr Hypertens Rep 2010; 12: 364-368.
Tagle R, González F, Acevedo M. Microalbuminuria y excreción urinaria de albúmina en la práctica clínica. Rev Méd Chile 2012; 140: 797-805.
King GL. The role of inflammatory cytokines in diabetes and its complications. J Periodontol 2008; 79: 1527-1534.
Navarro-González JF, Mora-Fernandez C. The role of inflammatory cytokines in diabetic nephropathy. J Am Soc Nephrol 2008; 19: 433-442.
Gordon S. Alternative activation of macrophages. Nat Rev Immunol 2003; 3: 23-35.
Lumeng CN, Bodzin JL, Saltiel AR. Obesity induces a phenotypic switch in adipose tissue macrophage polarization. J Clin Invest 2007; 117: 175-184.
Cao H. Adipocytokines in obesity and metabolic disease. J Endocrinol 2014; 220: T47-59.
Ye J, McGuinness OP. Inflammation during obesity is not all bad: evidence from animal and human studies. Am J Physiol Endocrinol Metab 2013; 304: E466-477.
Zhang X, Zhang G, Zhang H, Karin M, Bai H, Cai D. Hypothalamic IKKbeta/NF-kappaB and ER stress link overnutrition to energy imbalance and obesity. Cell 2008; 135: 61-73.
Sharma A, Bartell SM, Baile CA, Chen B, Podolsky RH, McIndoe RA, et al. Hepatic gene expression profiling reveals key pathways involved in leptin-mediated weight loss in ob/ob mice. PLoS One 2010; 5: e12147.
Yamauchi T, Nio Y, Maki T, Kobayashi M, Takazawa T, Iwabu M, et al. Targeted disruption of AdipoR1 and AdipoR2 causes abrogation of adiponectin binding and metabolic actions. Nat Med 2007; 13: 332-339.
Takemura Y, Ouchi N, Shibata R, Aprahamian T, Kirber MT, Summer RS, et al. Adiponectin modulates inflammatory reactions via calreticulin receptor-dependent clearance of early apoptotic bodies. J Clin Invest 2007; 117: 375-386.
Okamoto Y, Kihara S, Ouchi N, Nishida M, Arita Y, Kumada M, et al. Adiponectin reduces atherosclerosis in apolipoprotein E-deficient mice. Circulation 2002; 106: 2767-2770.
Ouchi N, Kihara S, Arita Y, Maeda K, Kuriyama H, Okamoto Y, et al. Novel modulator for endothelial adhesion molecules: adipocyte-derived plasma protein adiponectin. Circulation 1999; 100: 2473-2476.
Kobayashi H, Ouchi N, Kihara S, Walsh K, Kumada M, Abe Y, et al. Selective suppression of endothelial cell apoptosis by the high molecular weight form of adiponectin. Circ Res 2004; 94: e27-31.
Nguyen MT, Satoh H, Favelyukis S, Babendure JL, Imamura T, Sbodio JI, et al. JNK and tumor necrosis factor-alpha mediate free fatty acid-induced insulin resistance in 3T3-L1 adipocytes. J Biol Chem 2005; 280: 35361-35371.
Wang S, Soni KG, Semache M, Casavant S, Fortier M, Pan L, et al. Lipolysis and the integrated physiology of lipid energy metabolism. Mol Genet Metab 2008; 95: 117-126.
Kim JH, Bachmann RA, Chen J. Interleukin-6 and insulin resistance. Vitam Horm 2009; 80: 613-633.
Gaede P, Lund-Andersen H, Parving HH, Pedersen O. Effect of a multifactorial intervention on mortality in type 2 diabetes. N Engl J Med 2008; 358: 580-591.
Lin J, Hu FB, Curhan G. Serum adiponectin and renal dysfunction in men with type 2 diabetes. Diabetes Care 2007; 30: 239-244.
Parchwani DN, Upadhyah AA. Diabetic Nephropathy: Progression and Pathophysiology. Int J Med Sci Public Health 2012; 1: 59-70.
Fernandez-Veledo S, Vila-Bedmar R, Nieto-Vazquez I, Lorenzo M. c-Jun N-terminal kinase 1/2 activation by tumor necrosis factor-alpha induces insulin resistance in human visceral but not subcutaneous adipocytes: reversal by liver X receptor agonists. J Clin Endocrinol Metab 2009; 94: 3583-3593.
Gupta D, Varma S, Khandelwal RL. Long-term effects of tumor necrosis factor-alpha treatment on insulin signaling pathway in HepG2 cells and HepG2 cells overexpressing constitutively active Akt/PKB. J Cell Biochem 2007; 100: 593-607.
Weil EJ, Lemley KV, Mason CC, Yee B, Jones LI, Blouch K, et al. Podocyte detachment and reduced glomerular capillary endothelial fenestration promote kidney disease in type 2 diabetic nephropathy. Kidney Int 2012; 82: 1010- 1017.
Berhane AM, Weil EJ, Knowler WC, Nelson RG, Hanson RL. Albuminuria and estimated glomerular filtration rate as predictors of diabetic end-stage renal disease and death. Clin J Am Soc Nephrol 2011; 6: 2444-2451.
Porrini E, Ruggenenti P, Mogensen CE, Barlovic DP, Praga M, Cruzado JM, et al. Non-proteinuric pathways in loss of renal function in patients with type 2 diabetes. Lancet Diabetes Endocrinol 2015; 3: 382-391.
U.S. Department of Health and Human Services, Public Health Service, National Institutes of Health, National Heart Lung and Blood Institute, National Cholesterol Education Program. ATP III Guidelines At-A-Glance Quick Desk Reference. 2001. Disponible: https://www.nhlbi. nih.gov/files/docs/guidelines/atglance.pdf. Consultado: jun 2017.
Sheen YJ, Sheu WH. Risks of rapid decline renal function in patients with type 2 diabetes. World J Diabetes 2014; 5: 835-846.
Nogueira Cortez D, Afonso Reis I, Silva Souza DA, Lopes Macedo MM, de Carvalho Torres H. Complications and the time of diagnosis of diabetes mellitus in primary care. Acta Paul Enferm 2015; 28: 250-255.
Yano Y, Hoshide S, Ishikawa J, Hashimoto T, Eguchi K, Shimada K, et al. Differential impacts of adiponectin on low-grade albuminuria between obese and nonobese persons without diabetes. J Clin Hypertens (Greenwich) 2007; 9: 775-782.
Kato K, Osawa H, Ochi M, Kusunoki Y, Ebisui O, Ohno K, et al. Serum total and high molecular weight adiponectin levels are correlated with the severity of diabetic retinopathy and nephropathy. Clin Endocrinol (Oxf) 2008; 68: 442-449.
von Eynatten M, Liu D, Hock C, Oikonomou D, Baumann M, Allolio B, et al. Urinary adiponectin excretion: a novel marker for vascular damage in type 2 diabetes. Diabetes 2009; 58: 2093-2099.
Christou GA, Kiortsis DN. The role of adiponectin in renal physiology and development of albuminuria. J Endocrinol 2014; 221: R49-61.
Sweiss N, Sharma K. Adiponectin effects on the kidney. Best Pract Res Clin Endocrinol Metab 2014; 28: 71-79.
Aleidi S, Issa A, Bustanji H, Khalil M, Bustanji Y. Adiponectin serum levels correlate with insulin resistance in type 2 diabetic patients. Saudi Pharm J 2015; 23: 250- 256.
Adamczak M, Rzepka E, Chudek J, Wiecek A. Ageing and plasma adiponectin concentration in apparently healthy males and females. Clin Endocrinol (Oxf) 2005; 62: 114- 118.
Tzanavari T, Giannogonas P, Karalis KP. TNF-alpha and obesity. Curr Dir Autoimmun 2010; 11: 145-156.
Dandona P, Aljada A, Bandyopadhyay A. Inflammation: the link between insulin resistance, obesity and diabetes. Trends Immunol 2004; 25: 4-7.
Hotamisligil GS, Arner P, Caro JF, Atkinson RL, Spiegelman BM. Increased adipose tissue expression of tumor necrosis factor-alpha in human obesity and insulin resistance. The Journal of Clinical Investigation 1995; 95: 2409-2415.
Vinay DS, Kwon BS. The tumour necrosis factor/TNF receptor superfamily: therapeutic targets in autoimmune diseases. Clin Exp Immunol 2011; 164: 145-157.
Nieto-Vazquez I, Fernandez-Veledo S, Kramer DK, Vila- Bedmar R, Garcia-Guerra L, Lorenzo M. Insulin resistance associated to obesity: the link TNF-alpha. Arch Physiol Biochem 2008; 114: 183-194.
Navarro-González JF, Mora-Fernández C, Muros de Fuentes M, Garcia-Perez J. Inflammatory molecules and pathways in the pathogenesis of diabetic nephropathy. Nat Rev Nephrol 2011; 7: 327-340.
Navarro JF, Mora C, Gomez M, Muros M, Lopez-Aguilar C, Garcia J. Influence of renal involvement on peripheral blood mononuclear cell expression behaviour of tumour necrosis factor-alpha and interleukin-6 in type 2 diabetic patients. Nephrol Dial Transplant 2008; 23: 919-926.
Omote K, Gohda T, Murakoshi M, Sasaki Y, Kazuno S, Fujimura T, et al. Role of the TNF pathway in the progression of diabetic nephropathy in KK-A(y) mice. Am J Physiol Renal Physiol 2014; 306: F1335-1347.
Wang Z, Wei M, Wang M, Chen L, Liu H, Ren Y, et al. Inhibition of macrophage migration inhibitory factor reduces diabetic nephropathy in type II diabetes mice. Inflammation 2014; 37: 2020-2029.
Lampropoulou IT, Stangou M, Papagianni A, Didangelos T, Iliadis F, Efstratiadis G. TNF-alpha and microalbuminuria in patients with type 2 diabetes mellitus. J Diabetes Res 2014; 2014: 394206.
Chen YL, Qiao YC, Xu Y, Ling W, Pan YH, Huang YC, et al. Serum TNF-alpha concentrations in type 2 diabetes mellitus patients and diabetic nephropathy patients: A systematic review and meta-analysis. Immunol Lett 2017; 186: 52-58.