Endocrine pancreas development in growth-retarded human fetuses

被引:64
作者
Béringue, F [1 ]
Blondeau, B [1 ]
Castellotti, MC [1 ]
Bréant, B [1 ]
Czernichow, P [1 ]
Polak, M [1 ]
机构
[1] Robert Debre Teaching Hosp, INSERM, U457, Pediat Endocrinol & Diabet Unit, Paris, France
关键词
D O I
10.2337/diabetes.51.2.385
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Glucose intolerance in adults born with intrauterine growth retardation (IUGR) may involve peripheral insulin resistance and/or abnormal endocrine pancreas development during fetal life. We quantified insulincontaining cells in deceased human fetuses with IUGR (<10th percentile, n = 21) or normal growth (control fetuses, n = 15). Paraffin-embedded pancreatic tissues from fetuses older than 32 weeks were obtained from two fetopathology departments. Mean gestational age was 36 weeks in both groups. Tissues with lysis and those fetuses with defects, aneuploidy, or genetic abnormalities were excluded. For each subject, six pancreatic sections spaced evenly throughout the organ were immunostained with anti-insulin antibody. Total tissue and insulin-positive areas were measured by computer-assisted quantitative morphometry. Results were expressed in percentages. To evaluate islet morphogenesis, the percentages of beta-cells inside and outside islets were determined. Islet density was similar in the two groups (P = 0.86). The percentage of pancreatic area occupied by beta-cells (beta-cell fraction) was not correlated with gestational age (r = 0.06 and P = 0.97 in IUGR fetuses; r = 0.12 and P = 0.67 in control fetuses) or body weight (r = 0.16 and P = 0.47 in IUGR fetuses; r = 0.24 and P = 0.39 in control fetuses). Mean beta-cell fraction was 2.53% in the IUGR fetuses and 2.86% in the control fetuses (P = 0.47). The percentage of beta-cells located within islets was identical in the two groups (mean 35%). Our data militate against a primary developmental pancreatic abnormality in human IUGR, leaving peripheral insulin resistance as the most likely mechanism of glucose intolerance in adults born with IUGR.
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页码:385 / 391
页数:7
相关论文
共 28 条
[1]   The long-term outcome of retarded fetal growth [J].
Barker, DJP .
CLINICAL OBSTETRICS AND GYNECOLOGY, 1997, 40 (04) :853-863
[2]   Proliferation and differentiation in the human fetal endocrine pancreas [J].
Bouwens, L ;
Lu, WG ;
DeKrijger, R .
DIABETOLOGIA, 1997, 40 (04) :398-404
[3]   Extra-insular beta cells associated with ductules are frequent in adult human pancreas [J].
Bouwens, L ;
Pipeleers, DG .
DIABETOLOGIA, 1998, 41 (06) :629-633
[4]  
CABANNE P, 1980, ANATOMIE PATHOLOGIQU, P9
[5]   ASSOCIATION OF LOW-BIRTH-WEIGHT WITH BETA-CELL FUNCTION IN THE ADULT 1ST DEGREE RELATIVES OF NON-INSULIN-DEPENDENT DIABETIC SUBJECTS [J].
COOK, JTE ;
LEVY, JC ;
PAGE, RCL ;
SHAW, JAG ;
HATTERSLEY, AT ;
TURNER, RC .
BRITISH MEDICAL JOURNAL, 1993, 306 (6873) :302-306
[6]   ISLET FUNCTION IN OFFSPRING OF MOTHERS ON LOW-PROTEIN DIET DURING GESTATION [J].
DAHRI, S ;
SNOECK, A ;
REUSENSBILLEN, B ;
REMACLE, C ;
HOET, JJ .
DIABETES, 1991, 40 :115-120
[7]   Fetal growth and the physiological control of glucose tolerance in adults: a minimal model analysis [J].
Flanagan, DE ;
Moore, VM ;
Godsland, IF ;
Cockington, RA ;
Robinson, JS ;
Phillips, DIW .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2000, 278 (04) :E700-E706
[8]   Beta-cell mass and proliferation following late fetal and early postnatal malnutrition in the rat [J].
Garofano, A ;
Czernichow, P ;
Bréant, B .
DIABETOLOGIA, 1998, 41 (09) :1114-1120
[9]   Effect of ageing on beta-cell mass and function in rats malnourished during the perinatal period [J].
Garofano, A ;
Czernichow, P ;
Bréant, B .
DIABETOLOGIA, 1999, 42 (06) :711-718
[10]   In utero undernutrition impairs rat beta-cell development [J].
Garofano, A ;
Czernichow, P ;
Breant, B .
DIABETOLOGIA, 1997, 40 (10) :1231-1234