期刊文献+

Insulin exerts direct, IGF-1 independent actions in growth plate chondrocytes 被引量:1

Insulin exerts direct, IGF-1 independent actions in growth plate chondrocytes
下载PDF
导出
摘要 Insufficient insulin production or action in diabetic states is associated with growth retardation and impaired bone healing, while the underling mechanisms are unknown. In this study, we sought to define the role of insulin signaling in the growth plate. Insulin treatment of embryonic metatarsal bones from wild-type mice increased chondrocyte proliferation. Mice lacking insulin receptor (IR) selectively in chondrocytes (CartIR-/-) had no discernable differences in total femoral length compared to control littermates. However, CartIR-/- mice exhibited an increase in chondrocyte numbers in the growth plate than that of the controls. Chondrocytes lacking IR had elevated insulin-like growth factor (IGF)-IR mRNA and protein levels. Subsequently, IGF-1 induced phosphorylafion of Akt and ERK was enhanced, while this action was eliminated when the cells were treated with IGF-1R inhibitor Picropodophyllin. Deletion of the IR impaired chondrogenic differentiation, and the effect could not be restored by treatment of insulin, but partially rescued by IGF-1 treatment. Intriguingly, the size of hypertrophic chondrocytes was smaller in CartIR-/- mice when compared with that of the control littermates, which was associated with upregnlation of tuberous sclerosis complex 2 (TSC2). These results suggest that deletion of the IR in chondrocytes sensitizes IGF-1R signaling and action, IR and IGF-1R coordinate to regulate the proliferation, differentiation and hypertrophy of growth plate chondrocytes. Insufficient insulin production or action in diabetic states is associated with growth retardation and impaired bone healing, while the underling mechanisms are unknown. In this study, we sought to define the role of insulin signaling in the growth plate. Insulin treatment of embryonic metatarsal bones from wild-type mice increased chondrocyte proliferation. Mice lacking insulin receptor (IR) selectively in chondrocytes (CartIR-/-) had no discernable differences in total femoral length compared to control littermates. However, CartIR-/- mice exhibited an increase in chondrocyte numbers in the growth plate than that of the controls. Chondrocytes lacking IR had elevated insulin-like growth factor (IGF)-IR mRNA and protein levels. Subsequently, IGF-1 induced phosphorylafion of Akt and ERK was enhanced, while this action was eliminated when the cells were treated with IGF-1R inhibitor Picropodophyllin. Deletion of the IR impaired chondrogenic differentiation, and the effect could not be restored by treatment of insulin, but partially rescued by IGF-1 treatment. Intriguingly, the size of hypertrophic chondrocytes was smaller in CartIR-/- mice when compared with that of the control littermates, which was associated with upregnlation of tuberous sclerosis complex 2 (TSC2). These results suggest that deletion of the IR in chondrocytes sensitizes IGF-1R signaling and action, IR and IGF-1R coordinate to regulate the proliferation, differentiation and hypertrophy of growth plate chondrocytes.
出处 《Bone Research》 SCIE CAS 2014年第2期121-130,共10页 骨研究(英文版)
基金 supported by the Hong Kong Research Grant Council General Research Fund (RGC GRF 475311) National Natural Science Foundation of China (NSFC81171717, 81130034) Shenzhen Strategic Development Fund (GJHS20120702105445379) the Chinese University of Hong Kong Direct Grant 2041545 to CW
  • 相关文献

参考文献4

  • 1Chanika Phornphutkul,Ke-Ying Wu,Philip A. Gruppuso.The role of insulin in chondrogenesis[J].Molecular and Cellular Endocrinology.2006(1)
  • 2Keertik Fulzele,Thomas L. Clemens.Novel functions for insulin in bone[J].Bone.2011(2)
  • 3Ken Inoki,Tianqing Zhu,Kun-Liang Guan.TSC2 Mediates Cellular Energy Response to Control Cell Growth and Survival[J].Cell.2003(5)
  • 4Ruth B?hni,Juan Riesgo-Escovar,Sean Oldham,Walter Brogiolo,Hugo Stocker,Bernard F Andruss,Kathy Beckingham,Ernst Hafen.Autonomous Control of Cell and Organ Size by CHICO, a Drosophila Homolog of Vertebrate IRS1–4[J].Cell.1999(7)

同被引文献1

引证文献1

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部