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固定诱导的骨质减少在小鼠中具有应变特异性。

Immobilization induced osteopenia is strain specific in mice.

作者信息

Lodberg Andreas, Vegger Jens Bay, Jensen Michael Vinkel, Larsen Christian Mirian, Thomsen Jesper Skovhus, Brüel Annemarie

机构信息

Department of Biomedicine, Aarhus University, Aarhus, Denmark.

出版信息

Bone Rep. 2015 Apr 17;2:59-67. doi: 10.1016/j.bonr.2015.04.001. eCollection 2015 Jun.

Abstract

Immobilization causes rapid and massive bone loss. By comparing Botulinum Toxin A (BTX)-induced bone loss in mouse strains with different genetic backgrounds we investigated whether the genetic background had an influence on the severity of the osteopenia. Secondly, we investigated whether BTX had systemic effects on bone. Female mice from four inbred mouse strains (BALB/cJ, C57BL/6 J, DBA/2 J, and C3H/HeN) were injected unilaterally with BTX (n = 10/group) or unilaterally with saline (n = 10/group). Mice were euthanized after 21 days, and the bone properties evaluated using μCT, DXA, bone histomorphometry, and mechanical testing. BTX resulted in substantially lower trabecular bone volume fraction (BV/TV) and trabecular thickness in all mouse strains. The deterioration of BV/TV was significantly greater in C57BL/6 J (- 57%) and DBA/2 J (- 60%) than in BALB/cJ (- 45%) and C3H/HeN (- 34%) mice. The loss of femoral neck fracture strength was significantly greater in C57BL/6 J (- 47%) and DBA/2 J (- 45%) than in C3H (- 25%) mice and likewise the loss of mid-femoral fracture strength was greater in C57BL/6 J (- 17%), DBA/2 J (- 12%), and BALB/cJ (- 9%) than in C3H/HeN (- 1%) mice, which were unaffected. Using high resolution μCT we found no evidence of a systemic effect on any of the microstructural parameters of the contralateral limb. Likewise, there was no evidence of a systemic effect on the bone strength in any mouse strain. We did, however, find a small systemic effect on aBMD in DBA/2 J and C3H/HeN mice. The present study shows that BTX-induced immobilization causes the greatest loss of cortical and trabecular bone in C57BL/6 J and DBA/2 J mice. A smaller loss of bone microstructure and fracture strength was seen in BALB/cJ mice, while the bone microstructure and fracture strength of C3H/HeN mice were markedly less affected. This indicates that BTX-induced loss of bone is mouse strain dependent. We found only minimal systemic effects of BTX.

摘要

制动会导致快速且大量的骨质流失。通过比较肉毒杆菌毒素A(BTX)在不同遗传背景小鼠品系中诱导的骨质流失情况,我们研究了遗传背景是否会对骨质减少的严重程度产生影响。其次,我们研究了BTX是否对骨骼有全身影响。来自四个近交系小鼠品系(BALB/cJ、C57BL/6J、DBA/2J和C3H/HeN)的雌性小鼠单侧注射BTX(每组n = 10)或单侧注射生理盐水(每组n = 10)。21天后对小鼠实施安乐死,并使用μCT、双能X线吸收法(DXA)、骨组织形态计量学和力学测试来评估骨骼特性。BTX导致所有小鼠品系的小梁骨体积分数(BV/TV)和小梁厚度显著降低。C57BL/6J(-57%)和DBA/2J(-60%)小鼠的BV/TV恶化程度明显大于BALB/cJ(-45%)和C3H/HeN(-34%)小鼠。C57BL/6J(-47%)和DBA/2J(-45%)小鼠的股骨颈骨折强度损失明显大于C系小鼠(-25%),同样,C57BL/6J(-17%)、DBA/2J(-12%)和BALB/cJ(-9%)小鼠的股骨中段骨折强度损失大于未受影响的C3H/HeN小鼠(-1%)。使用高分辨率μCT,我们没有发现对侧肢体任何微观结构参数有全身影响的证据。同样,也没有证据表明对任何小鼠品系的骨骼强度有全身影响。然而,我们确实发现BTX对DBA/2J和C3H/HeN小鼠的骨密度有轻微的全身影响。本研究表明,BTX诱导的制动在C57BL/6J和DBA/2J小鼠中导致皮质骨和小梁骨的损失最大。BALB/cJ小鼠的骨微观结构和骨折强度损失较小,而C3H/HeN小鼠的骨微观结构和骨折强度受影响明显较小。这表明BTX诱导的骨质流失具有小鼠品系依赖性。我们仅发现BTX具有极小的全身影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b37f/5365160/40e8846bee9c/gr1.jpg

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