Age-related changes in IGFBP-4 and IGFBP-5 levels in human serum and bone: Implications for bone loss with aging

S. Mohan, J.R. Farley, D.J. Baylink
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引用次数: 94

Abstract

Osteoporosis develops because of an age-dependent imbalance between the rates of bone formation and bone resorption (i.e. bone formation rate is inadequate compared with bone resorption rate to maintain bone volume). With regard to the mechanism for the deficiency in bone formation, we propose that age-associated changes in the IGF system components contribute to an age-related decrease in the skeletal capacity for osteoblast cell proliferation. As a means of testing this hypothesis, we have measured serum levels of IGFBP-4 and IGFBP-5 since our studies have shown that the mitogenic actions of IGFs in bone cells are modulated by inhibitory IGFBP-4 and stimulatory IGFBP-5. By using newly developed and validated radioimmunoassays for measurement of IGFBP-4 and IGFBP-5, we found that the circulating level of IGFBP-4 increases with age while that of IGFBP-5 declines with age. In subjects from 23–87 years, serum IGFBP-4 concentrations showed a significant positive correlation with serum PTH while serum IGFBP-5 concentrations showed a significant positive correlation with IGF-I. These age-related changes in the serum levels of IGF system components are consistent with our previous findings of age-related decreases in the femoral cortical contents of IGF-I, IGF-II and IGFBP-5. Although the biological implications of the sequestration of IGFs in bone unknown, we have hypothesized that the level of the IGFs in bone is a reflection of their integrated local secretion by osteoblasts. Based on our data, we now propose a model in which (a) underproduction of the stimulatory components and overproduction of an inhibitory component of the IGF system occur as a consequence of aging, and (b) these changes lead to an age-related decrease in the local (autocrine/paracrine) as well as the hormonal (endocrine) actions of the IGFs, which in aggregate could contribute to the decrease in osteoblast proliferation and the deficiency in bone formation. In conclusion, although our findings provide indirect evidence that age associated changes in IGF system components could lead to a deficit in bone formation, further studies are needed to demonstrate a cause and effect relationship between changes in bone cell production of IGF system components and the age-related uncoupling of bone formation from resorption.

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人血清和骨骼中IGFBP-4和IGFBP-5水平的年龄相关变化:衰老导致骨质流失的意义
骨质疏松症的发生是由于骨形成率和骨吸收率之间的年龄依赖性失衡(即骨形成率与骨吸收率相比不足以维持骨体积)。关于骨形成缺陷的机制,我们提出与年龄相关的IGF系统成分的变化导致了与年龄相关的骨骼成骨细胞增殖能力的下降。作为检验这一假设的一种手段,我们测量了血清中IGFBP-4和IGFBP-5的水平,因为我们的研究表明,IGFs在骨细胞中的有丝分裂作用是由抑制性IGFBP-4和刺激性IGFBP-5调节的。通过使用新开发和验证的放射免疫法测量IGFBP-4和IGFBP-5,我们发现IGFBP-4的循环水平随着年龄的增长而增加,而IGFBP-5的水平随着年龄的增长而下降。在23-87岁的受试者中,血清IGFBP-4浓度与血清PTH呈显著正相关,血清IGFBP-5浓度与IGF-I呈显著正相关。这些与年龄相关的血清IGF系统成分水平的变化与我们之前发现的IGF- i、IGF- ii和IGFBP-5含量与年龄相关的减少是一致的。尽管igf在骨中隔离的生物学意义尚不清楚,但我们假设骨中igf的水平反映了成骨细胞在局部的综合分泌。基于我们的数据,我们现在提出了一个模型,其中(a) IGF系统的刺激成分生产不足和抑制成分生产过剩是衰老的结果,(b)这些变化导致IGF的局部(自分泌/旁分泌)以及激素(内分泌)作用的年龄相关减少,这些变化总体上可能导致成骨细胞增殖减少和骨形成不足。总之,尽管我们的研究结果提供了间接证据,表明与年龄相关的IGF系统成分的变化可能导致骨形成的缺陷,但需要进一步的研究来证明IGF系统成分的骨细胞生成的变化与年龄相关的骨形成与吸收分离之间的因果关系。
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Author index Contents Subject word index Editorial Board Biochemical and mitogenic properties of the heparin-binding growth factor HARP
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