Literature DB >> 16215165

Is insulin an anabolic agent in bone? Dissecting the diabetic bone for clues.

Kathryn M Thrailkill1, Charles K Lumpkin, R Clay Bunn, Stephen F Kemp, John L Fowlkes.   

Abstract

Diabetic osteoporosis is increasingly recognized as a significant comorbidity of type 1 diabetes mellitus. In contrast, type 2 diabetes mellitus is more commonly associated with modest increases in bone mineral density for age. Despite this dichotomy, clinical, in vivo, and in vitro data uniformly support the concept that new bone formation as well as bone microarchitectural integrity are altered in the diabetic state, leading to an increased risk for fragility fracture and inadequate bone regeneration following injury. In this review, we examine the contribution that insulin, as a potential anabolic agent in bone, may make to the pathophysiology of diabetic bone disease. Specifically, we have assimilated human and animal data examining the effects of endogenous insulin production, exogenous insulin administration, insulin sensitivity, and insulin signaling on bone. In so doing, we present evidence that insulin, acting as an anabolic agent in bone, can preserve and increase bone density and bone strength, presumably through direct and/or indirect effects on bone formation.

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Year:  2005        PMID: 16215165      PMCID: PMC2387001          DOI: 10.1152/ajpendo.00159.2005

Source DB:  PubMed          Journal:  Am J Physiol Endocrinol Metab        ISSN: 0193-1849            Impact factor:   4.310


  139 in total

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Journal:  Diabetes       Date:  1977-11       Impact factor: 9.461

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Journal:  J Clin Endocrinol Metab       Date:  1977-10       Impact factor: 5.958

3.  Diminished bone formation in experimental diabetes. Relationship to osteoid maturation and mineralization.

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Journal:  Diabetes       Date:  1984-09       Impact factor: 9.461

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Journal:  Proc Soc Exp Biol Med       Date:  1984-05

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Authors:  A A Like; A A Rossini
Journal:  Science       Date:  1976-07-30       Impact factor: 47.728

6.  Multiple hormonal mechanisms for the control of collagen synthesis in an osteoblast-like cell line, MMB-1.

Authors:  D M Rosen; R A Luben
Journal:  Endocrinology       Date:  1983-03       Impact factor: 4.736

7.  Development of bone mineral loss in insulin-treated diabetes: a 1 1/2 years follow-up study in sixty patients.

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Journal:  Eur J Clin Invest       Date:  1981-02       Impact factor: 4.686

8.  Effect of hormones and growth factors on alkaline phosphatase activity and collagen synthesis in cultured rat calvariae.

Authors:  E Canalis
Journal:  Metabolism       Date:  1983-01       Impact factor: 8.694

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Authors:  P K Dixit; R A Ekstrom
Journal:  Calcif Tissue Int       Date:  1980       Impact factor: 4.333

10.  The effect of streptozotocin-induced chronic diabetes mellitus on bone and mineral homeostasis in the rat.

Authors:  R Shires; S L Teitelbaum; M A Bergfeld; M D Fallon; E Slatopolsky; L V Avioli
Journal:  J Lab Clin Med       Date:  1981-02
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  141 in total

1.  Tissue-specific expression of Sprouty1 in mice protects against high-fat diet-induced fat accumulation, bone loss and metabolic dysfunction.

Authors:  Sumithra Urs; Terry Henderson; Phuong Le; Clifford J Rosen; Lucy Liaw
Journal:  Br J Nutr       Date:  2011-12-06       Impact factor: 3.718

Review 2.  Type 2 diabetes and bone fractures.

Authors:  Kendall F Moseley
Journal:  Curr Opin Endocrinol Diabetes Obes       Date:  2012-04       Impact factor: 3.243

3.  Stimulation of glucose transport in osteoblastic cells by parathyroid hormone and insulin-like growth factor I.

Authors:  E Zoidis; C Ghirlanda-Keller; C Schmid
Journal:  Mol Cell Biochem       Date:  2010-11-13       Impact factor: 3.396

4.  Psychometric properties of Osteoporosis Knowledge Tool and self-management behaviours among Malaysian type 2 diabetic patients.

Authors:  Shaymaa Abdalwahed Abdulameer; Syed Azhar Syed Sulaiman; Mohamed Azmi Ahmad Hassali; Karuppiah Subramaniam; Mohanad Naji Sahib
Journal:  J Community Health       Date:  2013-02

5.  The effects of low-level laser irradiation on bone tissue in diabetic rats.

Authors:  Tatiane Lopes Patrocínio-Silva; André Moreira Fogaça de Souza; Raul Loppi Goulart; Carolina Fuirini Pegorari; Jussan Rodrigues Oliveira; Kelly Fernandes; Angela Magri; Rosa Maria Rodrigues Pereira; Daniel Ribeiro Araki; Márcia Regina Nagaoka; Nivaldo Antônio Parizotto; Ana Cláudia Muniz Rennó
Journal:  Lasers Med Sci       Date:  2013-08-29       Impact factor: 3.161

6.  Increasing duration of type 1 diabetes perturbs the strength-structure relationship and increases brittleness of bone.

Authors:  Jeffry S Nyman; Jesse L Even; Chan-Hee Jo; Erik G Herbert; Matthew R Murry; Gael E Cockrell; Elizabeth C Wahl; R Clay Bunn; Charles K Lumpkin; John L Fowlkes; Kathryn M Thrailkill
Journal:  Bone       Date:  2010-12-23       Impact factor: 4.398

7.  Determinants of undercarboxylated and carboxylated osteocalcin concentrations in type 1 diabetes.

Authors:  K M Thrailkill; C-H Jo; G E Cockrell; C S Moreau; C K Lumpkin; J L Fowlkes
Journal:  Osteoporos Int       Date:  2011-11-09       Impact factor: 4.507

8.  Effect of Insulin Resistance on BMD and Fracture Risk in Older Adults.

Authors:  Nicola Napoli; Caterina Conte; Claudio Pedone; Elsa S Strotmeyer; Kamil E Barbour; Dennis M Black; Elizabeth J Samelson; Ann V Schwartz
Journal:  J Clin Endocrinol Metab       Date:  2019-08-01       Impact factor: 5.958

Review 9.  Depression and osteoporosis: epidemiology and potential mediating pathways.

Authors:  B Mezuk; W W Eaton; S H Golden
Journal:  Osteoporos Int       Date:  2007-09-01       Impact factor: 4.507

10.  Significant association between body composition phenotypes and the osteocalcin genomic region in normative human population.

Authors:  Michael Korostishevsky; Ida Malkin; Svetlana Trofimov; Yufang Pei; Hong-Wen Deng; Gregory Livshits
Journal:  Bone       Date:  2012-07-24       Impact factor: 4.398

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