Interaction between the polyol pathway and non-enzymatic glycation on mesangial cell gene expression

被引:21
作者
Dan, QH
Wong, RLC
Yin, SN
Chung, SK
Chung, SSM
Lam, KSL
机构
[1] Univ Hong Kong, Dept Med, Hong Kong, Hong Kong, Peoples R China
[2] Univ Hong Kong, Inst Mol Biol, Hong Kong, Hong Kong, Peoples R China
来源
NEPHRON EXPERIMENTAL NEPHROLOGY | 2004年 / 98卷 / 03期
关键词
aldose reductase gene; advanced glycation end-products; diabetic nephropathy; diabetic glomerulopathy; transgenic mouse; TGF-beta(1); type IV collagen;
D O I
10.1159/000080684
中图分类号
R5 [内科学]; R69 [泌尿科学(泌尿生殖系疾病)];
学科分类号
1002 ; 100201 ;
摘要
Background/Aims: Both activation of the polyol pathway and enhanced non-enzymatic glycation have been implicated in the pathogenesis of diabetic glomerulopathy. We investigated the interaction between these two pathways using normal mesangial cells (MCs) and transgenic (TG) MCs with elevated aldose reductase (AR) activity. Methods: TG mice with expression of the human AR (hAR) gene in kidney MCs were established. Mouse glomeruli and primary cultures of MCs from hAR TG and wild-type (WT) mice were studied regarding the changes in AR activity, transforming growth factor-beta(1) (TGF-beta(1)) and type IV collagen mRNA and protein levels, in response to BSA modified by advanced glycation endproducts (AGE-BSA). Results: Ex vivo addition of AGE-BSA increased AR activity, TGF-beta(1) and type IV collagen mRNA levels in both WT and TG glomeruli, with greater rise in TG glomeruli. These increments were attenuated by zopolrestat, an AR inhibitor. In cultured MCs, AGE-BSA enhanced AR activity, TGF-beta(1) and type IV collagen mRNA and protein levels both in WT and TG MCs, again with greater increases in TG MCs. The AGE-induced enhancement in TGF-beta(1) and type IV collagen expression were suppressed by either zopolrestat or transfection with an AR antisense oligonucleotide. Conclusion: These data suggest that the activation of the polyol pathway by AGEs, more marked in genetic conditions with increased AR activity, may contribute to the pathogenesis of diabetic glomerulopathy, through enhancing mesangial cell expression of TGF-beta(1) and type IV collagen. Copyright (C) 2004 S. Karger AG, Basel.
引用
收藏
页码:E89 / E99
页数:11
相关论文
共 31 条
  • [1] Inhibition of IGF-I-induced Erk 1 and 2 activation and mitogenesis in mesangial cells by bradykinin
    Alric, C
    Pecher, C
    Cellier, E
    Schanstra, JP
    Poirier, B
    Chevalier, J
    Bascands, JL
    Girolami, JP
    [J]. KIDNEY INTERNATIONAL, 2002, 62 (02) : 412 - 421
  • [2] LILLY LECTURE 1993 - GLYCATION AND DIABETIC COMPLICATIONS
    BROWNLEE, M
    [J]. DIABETES, 1994, 43 (06) : 836 - 841
  • [3] CHUNG S, 1989, J BIOL CHEM, V264, P14775
  • [4] DUNLOP M, 2000, KIDNEY INT S, V58, P3
  • [5] DIABETIC NEPHROPATHY - STRATEGIES IN PREVENTION AND MANAGEMENT
    FRIEDMAN, EA
    [J]. KIDNEY INTERNATIONAL, 1982, 21 (05) : 780 - 791
  • [6] Aldose reductase expression is induced by hyperglycemia in diabetic nephropathy
    Hodgkinson, AD
    Sondergaard, KL
    Yang, BM
    Cross, DF
    Millward, BA
    Demaine, AG
    [J]. KIDNEY INTERNATIONAL, 2001, 60 (01) : 211 - 218
  • [7] Advanced glycation end products modulate transcriptional regulation in mesangial cells
    Iehara, N
    Takeoka, H
    Yamada, Y
    Kita, T
    Doi, T
    [J]. KIDNEY INTERNATIONAL, 1996, 50 (04) : 1166 - 1172
  • [8] An aldose reductase inhibitor prevents glucose-induced increase in transforming growth factor-β and protein kinase C activity in cultured human mesangial cells
    Ishii, H
    Tada, H
    Isogai, S
    [J]. DIABETOLOGIA, 1998, 41 (03) : 362 - 364
  • [9] Advanced glycation end products-induced gene expression of scavenger receptors in cultured human monocyte-derived macrophages
    Iwashima, Y
    Eto, M
    Hata, A
    Kaku, K
    Horiuchi, S
    Ushikubi, F
    Sano, H
    [J]. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2000, 277 (02) : 368 - 380
  • [10] Kapor-Drezgic J, 1999, J AM SOC NEPHROL, V10, P1193