Role of nonenzymatic glycosylation of type I collagen in diabetic osteopenia

被引:159
作者
Katayama, Y
Akatsu, T
Yamamoto, M
Kugai, N
Nagata, N
机构
[1] Third Dept. of Internal Medicine, National Defense Medical College, Saitama
[2] Third Dept. of Internal Medicine, National Defense Medical College, Tokorozawa-City, Saitama 359
关键词
D O I
10.1002/jbmr.5650110709
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Formation of advanced glycation end products (AGEs) in extracellular matrix (ECM) is implicated in the development of chronic diabetic complications, However, the involvement of AGEs in diabetic bone disease has not been well established, We have examined whether AGEs are increased in the bone collagen of streptozotocin-induced diabetic rats in vivo and whether glycation of type I collagen affects the functions of osteoblastic cells in vitro, During 12 weeks of observation, AGEs in collagen extracted from the tibiae of diabetic rats increased in a time-dependent manner and were significantly higher than controls at every time point, In vitro, the incubation of collagen with glucose-6-phosphate resulted in a time-dependent increase of AGEs, When osteoblastic cells isolated from fetal rat calvaria were cultured on AGE-modified type I collagen, it dose-dependently inhibited phenotypic expressions of osteoblasts, Among osteoblastic parameters, nodule formation was the most sensitive, being inhibited by similar to 70% by the glycation of collagen for only 1 week Alkaline phosphatase activity and osteocalcin secretion were inhibited by 20-30% and 15-70%, respectively, by the glycation of collagen for 1-5 weeks, These results indicate that AGE-modified collagen affects osteoblastic cell differentiation and function in vitro and suggest that similar changes occurring in vivo may contribute to diabetic osteopenia.
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页码:931 / 937
页数:7
相关论文
共 31 条
[1]   GROWTH ON TYPE-I COLLAGEN PROMOTES EXPRESSION OF THE OSTEOBLASTIC PHENOTYPE IN HUMAN OSTEOSARCOMA MG-63 CELLS [J].
ANDRIANARIVO, AG ;
ROBINSON, JA ;
MANN, KG ;
TRACY, RP .
JOURNAL OF CELLULAR PHYSIOLOGY, 1992, 153 (02) :256-265
[2]   MINERALIZED BONE NODULES FORMED INVITRO FROM ENZYMATICALLY RELEASED RAT CALVARIA CELL-POPULATIONS [J].
BELLOWS, CG ;
AUBIN, JE ;
HEERSCHE, JNM ;
ANTOSZ, ME .
CALCIFIED TISSUE INTERNATIONAL, 1986, 38 (03) :143-154
[3]   INFLUENCE OF AGE, SEX, AND INSULIN ON OSTEOBLAST FUNCTION - OSTEOBLAST DYSFUNCTION IN DIABETES-MELLITUS [J].
BOUILLON, R ;
BEX, M ;
VANHERCK, E ;
LAUREYS, J ;
DOOMS, L ;
LESAFFRE, E ;
RAVUSSIN, E .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1995, 80 (04) :1194-1202
[4]   DIABETIC BONE-DISEASE [J].
BOUILLON, R .
CALCIFIED TISSUE INTERNATIONAL, 1991, 49 (03) :155-160
[5]   LILLY LECTURE 1993 - GLYCATION AND DIABETIC COMPLICATIONS [J].
BROWNLEE, M .
DIABETES, 1994, 43 (06) :836-841
[6]   EFFECTS OF NONENZYMATIC GLYCOSYLATION OF MESANGIAL MATRIX ON PROLIFERATION OF MESANGIAL CELLS [J].
CROWLEY, ST ;
BROWNLEE, M ;
EDELSTEIN, D ;
SATRIANO, JA ;
MORI, T ;
SINGHAL, PC ;
SCHLONDORFF, DO .
DIABETES, 1991, 40 (05) :540-547
[7]  
EYER DR, 1980, SCIENCE, V207, P1315
[8]   OVARIECTOMY SELECTIVELY REDUCES THE CONCENTRATION OF TRANSFORMING GROWTH-FACTOR-BETA IN RAT BONE - IMPLICATIONS FOR ESTROGEN DEFICIENCY-ASSOCIATED BONE LOSS [J].
FINKELMAN, RD ;
BELL, NH ;
STRONG, DD ;
DEMERS, LM ;
BAYLINK, DJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1992, 89 (24) :12190-12193
[9]   INHIBITION OF MATRIX-INDUCED BONE DIFFERENTIATION BY ADVANCED GLYCATION END-PRODUCTS IN RATS [J].
FONG, Y ;
EDELSTEIN, D ;
WANG, EA ;
BROWNLEE, M .
DIABETOLOGIA, 1993, 36 (09) :802-807
[10]   METHODS FOR ASSAYING NONENZYMATIC GLYCOSYLATION [J].
FURTH, AJ .
ANALYTICAL BIOCHEMISTRY, 1988, 175 (02) :347-360