期刊文献+

Bone Remodeling and Energy Metabolism:New Perspectives 被引量:2

Bone Remodeling and Energy Metabolism:New Perspectives
暂未订购
导出
摘要 Bone mineral, adipose tissue and energy metabolism are interconnected by a complex and multilevel series of networks. Calcium and phosphorus are utilized for insulin secretion and synthesis of high energy compounds. Adipose tissue store lipids and cholecalciferol, which, in turn, can influence calcium balance and energy expenditure. Hormones long-thought to solely modulate energy and mineral homeostasis may influence adipocytic function. Osteoblasts are a target of insulin action in bone. Moreover, endocrine mediators, such as osteocalcin, are synthesized in the skeleton but regulate carbohydrate disposal and insulin secretion. Finally, osteoblasts and adipocytes originate from the same mesenchymal progenitor. The mutual crosstalk between osteoblasts and adipocytes within the bone marrow microenvironment plays a crucial role in bone remodeling. In the present review we provide an overview of the reciprocal control between bone and energy metabolism and its clinical implications. Bone mineral, adipose tissue and energy metabolism are interconnected by a complex and multilevel series of networks. Calcium and phosphorus are utilized for insulin secretion and synthesis of high energy compounds. Adipose tissue store lipids and cholecalciferol, which, in turn, can influence calcium balance and energy expenditure. Hormones long-thought to solely modulate energy and mineral homeostasis may influence adipocytic function. Osteoblasts are a target of insulin action in bone. Moreover, endocrine mediators, such as osteocalcin, are synthesized in the skeleton but regulate carbohydrate disposal and insulin secretion. Finally, osteoblasts and adipocytes originate from the same mesenchymal progenitor. The mutual crosstalk between osteoblasts and adipocytes within the bone marrow microenvironment plays a crucial role in bone remodeling. In the present review we provide an overview of the reciprocal control between bone and energy metabolism and its clinical implications.
出处 《Bone Research》 SCIE CAS 2013年第1期72-84,共13页 骨研究(英文版)
关键词 BONE adipose tissue mineral metabolism energy metabolism LEPTIN OSTEOCALCIN bone adipose tissue mineral metabolism energy metabolism leptin osteocalcin
  • 相关文献

参考文献129

  • 1Jackson RA,Roshania RD,Hawa MI,Sim BM DiSilvio L. Impact of glucose ingestion on hepatic and peripheral glucose metabolism in man:an analysis based on simultaneous use of the forearm and double isotope techniques[J].Journal of Clinical Endocrinology and Metabolism,1986.541-549.
  • 2Paula FJ,Pimenta WP,Saad MJ,Paccola GM Piccinato CE Foss MC. Sex-related differences in peripheral glucose metabolism in normal subjects[J].Diabetes & Metabolism,1990.234-239.
  • 3Ferrannini E. Physiology of glucose homeostasis and insulin therapy in type 1 and type 2 diabetes[J].Endocrinology and Metabolism Clinics of North America,2012.25-39.
  • 4Munoz R,Carmody J S,Stylopoulos N,D avis P,Kaplan L M. Isolated duodenal exclusion increases energy expenditure and improves glucose homeostasis in diet-induced obese rats[J].American Journal of Physiology-Regulatory Integrative and Comparative Physiology,2012.R985-R993.
  • 5Digirolamo DJ,Clemens TL,Kousteni S. The skeleton as an endocrine organ[J].Nat Rev Rheumatol,2012.674-683.
  • 6Guntur AR,Rosen CJ. Bone as an endocrine organ[J].Endocrine Practice,2012.758-762.
  • 7Friedman JM. Leptin at 14 y of age:an ongoing story[J].American Journal of Clinical Nutrition,2009.973S-979S.
  • 8Zhang Y,Proenca P,Maffei M,Barone M Leopold L Friedman JM. Positional cloning of the mouse obese gene and its human homologue[J].Nature,1994.425–432.
  • 9Elefteriou F,Takeda S,Ebihara K,Magre J Patano N Kim CA Ogawa Y Liu X Ware SM Craigen WJ Robert JJ Vinson C Nakao K Capeau J Karsenty G. Serum leptin level is a regulator of bone mass[J].Proceedings of the National Academy of Sciences(USA),2004,(9):3258-3263.doi:10.1073/pnas.0308744101.
  • 10Takeda S,Elefteriou F,Levasseur R,Liu X Zhao L Parker KL Armstrong D D ucy P K arsenty G. L eptin regulates b one formation via the sympathetic nervous system[J].Cell,2002.305-317.

同被引文献13

引证文献2

二级引证文献41

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