Prevalence of exocrine pancreatic insufficiency in women with obesity syndrome: assessment by pancreatic fecal elastase 1

J Teichmann, J F Riemann, U Lange, J Teichmann, J F Riemann, U Lange

Abstract

Background. Previous research on the combined association of 25-hydroxyvitamin D [25(OH)D] and exocrine pancreas insufficiency may have been limited by restricted age variability and a lack of representation of both body weight and body mass index. There are still too few conclusive reports about conspicuous vitamin D metabolism according to pancreatic fecal elastase 1 (FE1) in obese patients. Methods. Between May 2004 and July 2008, we investigated in 125 female patients with obesity syndrome at an average age of approximately 52.9 years as well as in age-matched 80 healthy female controls the prevalence of pancreas insufficiency. Serum levels of PTH, total calcium, and D(3) vitamins calcitriol and calcifediol, as well as the concentration of fecal elastase 1 (FE1) were determined in patients and controls. Results. In 75 female nondiabetic patients with obesity syndrome (BMI 35 ≤ 40 kg/m(2)), calcifediol was markedly decreased (25.0 ± 4.9 ng/mL) compared to controls (50.2 ± 14.7 nmol/L; P < 0.01). FE1 level was significantly decreased in obese subjects compared to controls ( P < 0.01). Calcifediol was significantly lower in patients with morbid obesity (for calcifediol, P < 0.05). Conclusion. In obese females, pancreatic FE1 in feces confirms the extent of vitamin D supply, and thus shows a vitamin D(3) deficiency, depending on the loss of stool content. There seems to be a connection between the loss of exocrine function and the increasing body mass index. Pancreas insufficiency, as detected by low FE1 concentrations, is frequent in obese patients. However, the BMI is an additional factor for lowered fecal excretion of FE1.

References

    1. Holick MF. Vitamin D Status: measurement, interpretation, and clinical application. Annals of Epidemiology. 2009;19(2):73–78.
    1. Parikh SJ, Edelman M, Uwaifo GI, et al. The relationship between obesity and serum 1,25-dihydroxy vitamin D concentrations in healthy adults. Journal of Clinical Endocrinology and Metabolism. 2004;89(3):1196–1199.
    1. Teichmann J, Mann ST, Stracke H, et al. Parathormone levels and vitamin D metabolism in female patients with various grades of fecal elastase 1 deficiency. European Journal of Medical Research. 2008;13(12):563–567.
    1. Mann STW, Stracke H, Lange U, Klör HU, Teichmann J. Vitamin D3 in patients with various grades of chronic pancreatitis, according to morphological and functional criteria of the pancreas. Digestive Diseases and Sciences. 2003;48(3):533–538.
    1. Löser C, Möllgaard A, Fölsch UR. Faecal elastase 1: a novel, highly sensitive, and specific tubeless pancreatic function test. Gut. 1996;39(4):580–586.
    1. Bozkurt T, Braun U, Leferink S, Gilly G, Lux G. Comparison of pancreatic morphology and exocrine functional impairment in patients with chronic pancreatitis. Gut. 1994;35(8):1132–1136.
    1. Dominguez-Munoz JE, Hieronymus C, Sauerbruch T, Malfertheiner P. Fecal elastase test: evaluation of a new noninvasive pancreatic function test. American Journal of Gastroenterology. 1995;90(10):1834–1837.
    1. Glasbrenner B, Schön A, Klatt S, Beckh K, Adler G. Clinical evaluation of the faecal elastase test in the diagnosis and staging of chronic pancreatitis. European Journal of Gastroenterology and Hepatology. 1996;8(11):1117–1120.
    1. Dutta SK, Bustin MP, Russell RM, Costa BS. Deficiency of fat-soluble vitamins in treated patients with pancreatic insufficiency. Annals of Internal Medicine. 1982;97(4):549–552.
    1. Dibble JB, Sheridan P, Losowsky MS. A survey of vitamin D deficiency in gastrointestinal and liver disorders. Quarterly Journal of Medicine. 1984;53(209):119–134.
    1. Nakamura T, Takebe K, Imamura K, et al. Fat-soluble vitamins in patients with chronic pancreatitis (pancreatic insufficiency) Acta Gastro-Enterologica Belgica. 1996;59(1):10–14.
    1. Moran CE, Sosa EG, Martinez SM, et al. Bone mineral density in patients with pancreatic insufficiency and steatorrhea. American Journal of Gastroenterology. 1997;92(5):867–871.
    1. Haaber AB, Rosenfalck AM, Hansen B, Hilsted J, Larsen S. Bone mineral metabolism, bone mineral density, and body composition in patients with chronic pancreatitis and pancreatic exocrine insufficiency. International Journal of Pancreatology. 2000;27(1):21–27.
    1. Hardt PD, Krauss A, Bretz L, et al. Pancreatic exocrine function in patients with type 1 and type 2 diabetes mellitus. Acta Diabetologica. 2000;37(3):105–110.
    1. Arnlöv J, Sundström J, Ingelsson E, Lind L. The impact of body mass index and the metabolic syndrome on the risk of diabetes in middle-aged men. Diabetes Care. 2011;34(1):61–65.
    1. Dufner J, Jensen U, Schumacher E. Statistik mit SAS. 1st edition. Stuttgart: Teubner; 1992.
    1. Sachs L. Angewandte Statistik. 7th edition. Berlin, Germany: Springer; 1997.
    1. Hahn JU, Kerner W, Maisonneuve P, Lowenfels AB, Lankisch PG. Low fecal elastase 1 levels do not indicate exocrine pancreatic insufficiency in type-1 diabetes mellitus. Pancreas. 2008;36(3):274–278.
    1. Nunes AC, Pontes JM, Rosa A, Gomes L, Carvalheiro M, Freitas D. Screening for pancreatic exocrine insufficiency in patients with diabetes mellitus. American Journal of Gastroenterology. 2003;98(12):2672–2675.
    1. Twersky Y, Bank S. Nutritional deficiencies in chronic pancreatitis. Gastroenterology Clinics of North America. 1989;18(3):543–565.
    1. DiMagno EP, Go VL, Summerskill WH. Relations between pancreatic enzyme ouputs and malabsorption in severe pancreatic insufficiency. New England Journal of Medicine. 1973;288(16):813–815.
    1. Krawatt EL, Maner EB, Davies M. Absorption of vitamin D and 25-OH vitamin D in patients with intestinal malabsorption. In: Norman AW, Schaefer K, Herrath DV, editors. Basic Research and its Clinical Application. 1st edition. Berlin, Germany: Gruyter; 1979. pp. 975–978.
    1. Sziegoleit A, Linder D. Studies on the sterol-binding capacity of human pancreatic elastase 1. Gastroenterology. 1991;100(3):768–774.
    1. Hannan FM, Fairney A, Johnston DG. Vitamin D deficiency masking primary hyperparathyroidism. Annals of Clinical Biochemistry. 2004;41(5):405–407.
    1. Hjelmesæth J, Hofsø D, Aasheim ET, et al. Parathyroid hormone, but not vitamin D, is associated with the metabolic syndrome in morbidly obese women and men: a cross-sectional study. Cardiovascular Diabetology. 2009;8, article 7
    1. Rueda S, Fernández-Fernández C, Romero F, Martínez de OJ, Vidal J. Vitamin D, PTH, and the metabolic syndrome in severely obese subjects. Obesity Surgery. 2008;18(2):151–154.
    1. Pitroda AP, Harris SS, Dawson-Hughes B. The association of adiposity with parathyroid hormone in healthy older adults. Endocrine. 2009;36(2):218–223.

Source: PubMed

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