PANCREATIC-ISLETS OF OBESE HYPERGLYCEMIC MICE (OB/OB)

被引:56
作者
TOMITA, T
DOULL, V
POLLOCK, HG
KRIZSAN, D
机构
[1] Department of Pathology, University of Kansas Medical Center, Kansas City, KS
[2] Department of Biochemistry, University of Kansas Medical Center, Kansas City, KS
[3] Department of Pharmacology, University of Kansas Medical Center, Kansas City, KS
关键词
MORPHOMETRY; OB/OB MICE; PANCREATIC ISLETS; RADIOIMMUNOASSAY;
D O I
10.1097/00006676-199205000-00015
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
The development of the obesity-associated hyperglycemic syndrome in ob/ob mice, genetically determined, was observed over time by a combined functional and structural study of pancreatic islets. Islet areas increased with advancing age in ob/ob mice from 2 times at 1 month to 30 times at 6 months of age the size of lean mouse islets. Islet areas apparently increased more than pancreatic insulin content in ob/ob mice. Glucose and insulin tolerance tests were performed to study in vivo responses to glucose and insulin, respectively, in 1-, 3-, and 6-month-old mice. With ob/ob mice, glucose tolerance tests revealed more elevation of plasma glucose than in lean mice, the lean mice revealing more elevated plasma insulin than the obese mice. In insulin tolerance tests, lean mice presented marked hypoglycemia, whereas ob/ob mice revealed slightly higher plasma glucose at 1 month of age but three to four times higher amounts than that of lean mice at 6 months of age. Thus, increasing insulin resistance in ob/ob mice older than 3 months is associated with progressively increasing islet area, which contains proportionally less insulin than that of lean mouse pancreas. The data suggest that insulin resistance in ob/ob mice progressively develops up to 6 months of age and that marked islet hyperplasia is likely in response to sustained hyperglycemia, leading to hyperinsulinemia and eventual marked obesity.
引用
收藏
页码:367 / 375
页数:9
相关论文
共 26 条
[1]  
Bray G.A., York D.A., Hypothalamic and genetic obesity in experimental animals, Rev Physiol, 59, pp. 719-809, (1979)
[2]  
Beloff-Chain A., Abnormal function of the endocrine pancreas in genetic and experimentally induced obesity in rodents, Animal Models of Obesity, pp. 91-106, (1979)
[3]  
Tomita T., Doull V., Kimmel J.R., Pollock H.G., Pancreatic polypeptide and other hormones in pancreas of obese (Ob/ ob) mice, Diabetologia, 27, pp. 454-459, (1984)
[4]  
Lavine R.L., Voyles N., Perrino D.V., Recent L., Functional abnormalities of islets of Langerhans of obese hyperglycemic mouse, Am J Physiol, 233, pp. E86-E90, (1977)
[5]  
Mahler R.J., Dubuc P.U., Mobley D.W., Ensinck J.W., Glucagon and insulin relationship in the obese hyperglycemic mouse (Ob/ob), Horm Metab Res, 8, pp. 79-80, (1976)
[6]  
Lenzen S., Kloppel G., Insulin secretion and the morphological and metabolic characteristics of pancreatic islets of hyperthyroid ob/ob mice, Endocrinology, 103, pp. 1546-1554, (1978)
[7]  
Findlay J.A., Rookledge K.A., Beloff-Chain A., Leuer J.D., A combined biochemical and histological study on the islets of Langerhans in the genetically obese hyperglycemic mouse and in the lean mouse, including observations in the effects of streptozotocin treatment, J Endocrinol, 56, pp. 571-583, (1973)
[8]  
Baetens D., Malaisse-Lagae F., Perrelet A., Orci L., Endocrine pancreas: Three dimensional reconstruction shows two types of islets of Langerhans, Science, 206, pp. 1323-1325, (1979)
[9]  
Tomita T., Friesen S.R., Kimmel J.R., Doull V.R., Pollock H.G., Pancreatic polypeptide-secreting islet cell tumors, Am J Pathol, 113, pp. 134-142, (1982)
[10]  
Tomita T., Doull V., Fredrickson D., Pollock G., Pancreatic polypeptide and other pancreatic hormones in spontaneously diabetic BB/W rat, Pancreas, 5, pp. 658-661, (1990)