Osteo-promoting effects of insulin-like growth factor I (IGF-I) in a mouse model of type 1 diabetes

被引:27
作者
Fowlkes, John L. [1 ]
Nyman, Jeffry S. [2 ,3 ]
Bunn, R. Clay [1 ]
Jot, Chanhee [4 ]
Wahl, Elizabeth C. [5 ]
Liu, Lichu [5 ]
Cockrell, Gael E. [1 ]
Morris, Lindsey M. [1 ]
Lumpkin, Charles K., Jr. [1 ]
Thrailkill, Kathryn M. [1 ]
机构
[1] Univ Arkansas Med Sci, Dept Pediat, Little Rock, AR 72205 USA
[2] Tennessee Valley Healthcare Syst, Dept Vet Affairs, Nashville, TN USA
[3] Vanderbilt Univ, Med Ctr, Dept Orthopaed Surg & Rehabil, Nashville, TN USA
[4] Scott & White Healthcare, Dept Biostat, Temple, TX USA
[5] Arkansas Childrens Hosp, Res Inst, Little Rock, AR 72202 USA
基金
美国国家卫生研究院;
关键词
Distraction osteogenesis; IGF-I; Diabetes; Bone formation; METABOLIC STATE; BONE-FORMATION; FRACTURE; LEPTIN; RISK; RATS;
D O I
10.1016/j.bone.2013.07.017
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Objective: Using a streptozotocin (STZ)-induced mouse model of type 1 diabetes (T1D), we have previously demonstrated that long-term diabetes inhibits regenerative bone formation during tibial distraction osteogenesis (DO) and perturbs skeletal integrity by decreasing cortical thickness, bone mineral density and bone's resistance to fracture. Because long-standing T1D is also associated with a deficiency of insulin-like growth factor I (IGF-I), we examined the effects of systemic IGF-I treatment on skeletal microarchitecture and strength, as well as on bone formation in diabetic mice. Research design and methods: Streptozotocin-induced diabetic or control mice were treated with recombinant human IGF-I (rhIGF-I, 1.5 mg/kg/day as subcutaneous infusion) or vehicle throughout a 14 day DO procedure. Thereafter, trunk blood was assayed for glucose, insulin, rhIGF-I, mouse IGF-I and leptin. Bone formation in distracted tibiae was quantified. Effects on cortical bone strength and trabecular bone architecture were assessed by mu CT analysis and three-point bend testing of contralateral femurs. Results: New bone formation during DO was reduced in diabetic mice but significantly improved with rhIGF-I treatment. The contralateral femurs of diabetic mice demonstrated significant reductions in trabecular thickness, yield strength and peak force of cortical bone, which were improved with rhIGF-I treatment rhIGF-I also reduced intracortical porosity in control mice. However, treatment with rhIGF-I did not normalize serum glucose, or correct concurrent deficiencies of insulin or leptin seen in diabetes. Conclusions: These findings demonstrate that despite persistent hyperglycemia, rhIGF-I promoted new bone formation and improved biomechanical properties of bone in a model of T1D, suggesting that it may be useful as a fracture preventative in this disease. (c) 2013 Elsevier Inc. All rights reserved.
引用
收藏
页码:36 / 40
页数:5
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