Resting metabolic rate in obese diabetic and obese non-diabetic subjects and its relation to glycaemic control

被引:36
作者
Alawad A.O. [1 ]
Merghani T.H. [2 ]
Ballal M.A. [3 ]
机构
[1] Department of Physiology, Faculty of Medicine, University of Al-Neelain, Khartoum
[2] Department of Physiology, Faculty of Medicine, University of Tabuk, Tabuk
[3] Department of Physiology, Faculty of Medicine, University of Science and Technology, Khartoum
关键词
Diabetes Mellitus; Glycated haemoglobin; Indirect calorimetry; Obesity; Oxygen consumption; Resting metabolic rate;
D O I
10.1186/1756-0500-6-382
中图分类号
学科分类号
摘要
Background: Both obesity and type II diabetes mellitus are associated with insulin resistance and abnormal metabolic reactions. This study was conducted to evaluate resting metabolic rate in obese diabetic patients and to assess its relation to glycaemic control. Results: This is a case control study conducted in Gabir AbuEliz centre in Khartoum, Sudan. A random sample of 40 obese diabetic patients (cases) and 40 obese non-diabetic subjects (controls) were interviewed and examined clinically to exclude presence of acute or chronic medical illness. Haemoglobin A1c was measured for each participant using the "NycoCard Haemoglobin A1c test" (Axis -Shield/ Norway). Fasting blood sugar was measured using one touch(R) glucometer (LifeScan Canada Ltd). The PowerLab 8/35 with a gas analyzer (AD Instruments, Castle Hill Australia) was used for measurement of VO2, VCO2 and Respiratory exchange ratio (RER). Resting metabolic rate was calculated using the Weir equation. VO2 (meanSD) ml/min was significantly higher among cases (209.942.7) compared to the controls (192.428.1), (P = 0.034). Similarly, VCO2 (meanSD) ml/min was higher among cases (191.435.0) than controls (178.322.5), (P = 0.05). Resting metabolic rate "RMR" (meanSD) kcal/day was higher in obese diabetic patients (1480.7 274.2) than obese non-diabetic subjects (1362.4 184.8), (P = 0.027). Participants with high glycated haemoglobin had higher RMR than those with normal glycated haemoglobin (P = 0.016). Conclusion: It is concluded that resting metabolic rate is significantly higher in obese diabetic patients compared to obese non-diabetics, especially in those with poor glycaemic control. © 2013 Alawad et al.; licensee BioMed Central Ltd.
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  • [1] De Weir, J.B., New methods for calculating metabolic rate with special reference to protein metabolism (1949) J Physiol, 109, pp. 1-9. , 15394301
  • [2] Mansell, P.I., Macdonald, I.A., Reappraisal of the Weir equation for calculation of metabolic rate (1990) AJP - Regu Physiol, 258 (6), pp. 181347-R1354
  • [3] Diagnosis and classification of diabetes mellitus (2010) Diabetes Care, 33 (SUPPL. 1), pp. 1962-S69. , 20042775
  • [4] Weyer, C., Bogardus, C., Pratley, R.E., Metabolic factors contributing to increased resting metabolic rate and decreased insulin-induced thermogenesis during the development of type 2 diabetes (1999) Diabetes, 48 (8), pp. 1607-1614. , DOI 10.2337/diabetes.48.8.1607
  • [5] Fontvieille, A.M., Lillioja, S., Ferraro, R.T., Schulz, L.O., Rising, R., Ravussin, E., Twenty-four-hour energy expenditure in Pima Indians with type 2 (non-insulindependent) diabetes mellitus (1992) Diabetologia, 35, pp. 753-759. , 1511802
  • [6] Huang, K.C., Kormas, N., Steinbeck, K., Loughnan, G., Caterson, I.D., Resting metabolic rate in severely obese diabetic and nondiabetic subjects (2004) Obesity Research, 53 (11), pp. 1395-1398
  • [7] Martin, K., Wallace, P., Rust, P.F., Garvey, W.T., Estimation of resting energy expenditure considering effects of race and diabetes status (2004) Diabetes Care, 27 (6), pp. 1405-1411. , DOI 10.2337/diacare.27.6.1405
  • [8] Henry, C.J.K., Rees, D.G., New predictive equations for the estimation of basal metabolic rate in tropical people (1991) Eur J Clin Nutr, 45, pp. 177-185. , 1824042
  • [9] Updating the WMA declaration of Helsinki (1999) Wld Med J, 45, pp. 11-13. , Medical Association Medical Ethics Committee W
  • [10] Felig, P., Wahren, J., Hendler, R., Influence of maturity-onset diabetes on splanchnic glucose balance after oral glucose ingestion (1978) Diabetes, 27 (2), pp. 121-126