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人胫骨中 TGF-β2 和 IGF-I 的松质骨特性和基质含量:一项初步研究。

Cancellous bone properties and matrix content of TGF-beta2 and IGF-I in human tibia: a pilot study.

机构信息

Department of Orthopaedics and Rehabilitation, Section of Biomechanics, Bone and Joint Center, Henry Ford Hospital, 2799 West Grand Boulevard, E&R 2015, Detroit, MI 48202, USA.

出版信息

Clin Orthop Relat Res. 2009 Dec;467(12):3079-86. doi: 10.1007/s11999-009-0896-5. Epub 2009 May 27.

Abstract

Transforming and insulin-like growth factors are important in regulating bone mass. Thus, one would anticipate correlations between matrix concentrations of growth factors and functional properties of bone. We therefore investigated the relationships of (1) TGF-beta2 and (2) IGF-I matrix concentrations with the trabecular microstructure, stress distribution, and mechanical properties of tibial cancellous bone from six male human cadavers. Trabecular stress amplification (VMExp/sigma(app)) and variability (VMCOV) were calculated using microcomputed tomography (muCT)-based finite element simulations. Bone volume fraction (BV/TV), surface/volume ratio (BS/BV), trabecular thickness (Tb.Th), number (Tb.N) and separation (Tb.Sp), connectivity (Eu.N), and anisotropy (DA) were measured using 3-D morphometry. Bone stiffness and strength were measured by mechanical testing. Matrix concentrations of TGF-beta2 and IGF-I were measured by ELISA. We found higher matrix concentrations of TGF-beta2 were associated with higher Tb.Sp and VMExp/sigma(app) for pooled data and within subjects. Similarly, a higher matrix concentration of IGF-I was associated with lower stiffness, strength, BV/TV and Tb.Th and with higher BS/BV, Tb.Sp, VMExp/sigma(app) and VMCOV for pooled data and within subjects. IGF-I and Tb.N were negatively associated within subjects. It appears variations of the stress distribution in cancellous bone correlate with the variation of the concentrations of TGF-beta2 and IGF-I in bone matrix: increased local matrix concentrations of growth factors are associated with poor biomechanical and architectural properties of tibial cancellous bone.

摘要

转化生长因子-β2 和胰岛素样生长因子-I 在调节骨量方面很重要。因此,人们预计生长因子基质浓度与骨的功能特性之间存在相关性。我们因此研究了(1)TGF-β2 和(2)IGF-I 基质浓度与 6 名男性人类尸体胫骨松质骨小梁微观结构、应力分布和机械性能之间的关系。使用基于微计算机断层扫描(μCT)的有限元模拟计算小梁的应力放大(VMExp/sigma(app))和变异性(VMCOV)。使用 3D 形态计量学测量骨体积分数(BV/TV)、表面积/体积比(BS/BV)、小梁厚度(Tb.Th)、数量(Tb.N)和分离度(Tb.Sp)、连通性(Eu.N)和各向异性(DA)。通过机械测试测量骨刚度和强度。通过 ELISA 测量 TGF-β2 和 IGF-I 的基质浓度。我们发现,对于 pooled 数据和 within subjects,较高的 TGF-β2 基质浓度与较高的 Tb.Sp 和 VMExp/sigma(app)相关。类似地,较高的 IGF-I 基质浓度与较低的刚度、强度、BV/TV 和 Tb.Th 以及较高的 BS/BV、Tb.Sp、VMExp/sigma(app)和 VMCOV 相关,对于 pooled 数据和 within subjects。IGF-I 和 Tb.N 之间呈负相关。似乎松质骨中应力分布的变化与骨基质中 TGF-β2 和 IGF-I 浓度的变化相关:生长因子局部基质浓度的增加与胫骨松质骨较差的生物力学和结构特性相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d496/2772931/1a6bc7f73779/11999_2009_896_Fig1_HTML.jpg

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