Regulation of pancreatic beta-cell mass

被引:308
作者
Bouwens, L [1 ]
Rooman, I [1 ]
机构
[1] Vrije Univ Brussels, Cell Differentiat Unit, B-1090 Brussels, Belgium
关键词
D O I
10.1152/physrev.00025.2004
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Beta-cell mass regulation represents a critical issue for understanding diabetes, a disease characterized by a near-absolute ( type 1) or relative ( type 2) deficiency in the number of pancreatic beta cells. The number of islet beta cells present at birth is mainly generated by the proliferation and differentiation of pancreatic progenitor cells, a process called neogenesis. Shortly after birth, beta-cell neogenesis stops and a small proportion of cycling beta cells can still expand the cell number to compensate for increased insulin demands, albeit at a slow rate. The low capacity for self-replication in the adult is too limited to result in a significant regeneration following extensive tissue injury. Likewise, chronically increased metabolic demands can lead to beta-cell failure to compensate. Neogenesis from progenitor cells inside or outside islets represents a more potent mechanism leading to robust expansion of the beta-cell mass, but it may require external stimuli. For therapeutic purposes, advantage could be taken from the surprising differentiation plasticity of adult pancreatic cells and possibly also from stem cells. Recent studies have demonstrated that it is feasible to regenerate and expand the beta-cell mass by the application of hormones and growth factors like glucagon-like peptide-1, gastrin, epidermal growth factor, and others. Treatment with these external stimuli can restore a functional beta-cell mass in diabetic animals, but further studies are required before it can be applied to humans.
引用
收藏
页码:1255 / 1270
页数:16
相关论文
共 172 条
  • [51] β cell expression of IGF-I leads to recovery from type 1 diabetes
    George, M
    Ayuso, E
    Casellas, A
    Costa, C
    Devedjian, JC
    Bosch, F
    [J]. JOURNAL OF CLINICAL INVESTIGATION, 2002, 109 (09) : 1153 - 1163
  • [52] β cell replication is the primary mechanism for maintaining postnatal β cell mass
    Georgia, S
    Bhushan, A
    [J]. JOURNAL OF CLINICAL INVESTIGATION, 2004, 114 (07) : 963 - 968
  • [53] Epithelial-to-mesenchymal transition generates proliferative human islet precursor cells
    Gershengorn, MC
    Hardikar, AA
    Wei, CJ
    Geras-Raaka, E
    Marcus-Samuels, B
    Raaka, BM
    [J]. SCIENCE, 2004, 306 (5705) : 2261 - 2264
  • [54] GU DL, 1993, DEVELOPMENT, V118, P33
  • [55] Gu GQ, 2002, DEVELOPMENT, V129, P2447
  • [56] Guz Y, 2001, ENDOCRINOLOGY, V142, P4956, DOI 10.1210/en.142.11.4956
  • [57] GROWTH FACTOR/MATRIX-INDUCED PROLIFERATION OF HUMAN ADULT BETA-CELLS
    HAYEK, A
    BEATTIE, GM
    CIRULLI, V
    LOPEZ, AD
    RICORDI, C
    RUBIN, JS
    [J]. DIABETES, 1995, 44 (12) : 1458 - 1460
  • [58] FUNCTIONAL MATURATION AND PROLIFERATION OF FETAL PANCREATIC BETA-CELLS
    HELLERSTROM, C
    SWENNE, I
    [J]. DIABETES, 1991, 40 : 89 - 93
  • [59] Recapitulation of embryonic neuroendocrine differentiation in adult human pancreatic duct cells expressing neurogenin 3
    Heremans, Y
    Van De Casteele, M
    Veld, PI
    Gradwohl, G
    Serup, P
    Madsen, O
    Pipeleers, D
    Heimberg, H
    [J]. JOURNAL OF CELL BIOLOGY, 2002, 159 (02) : 303 - 311
  • [60] Increased and persistent circulating insulin-like growth factor II in neonatal transgenic mice suppresses developmental apoptosis in the pancreatic islets
    Hill, DJ
    Strutt, B
    Arany, E
    Zaina, S
    Coukell, S
    Graham, CF
    [J]. ENDOCRINOLOGY, 2000, 141 (03) : 1151 - 1157