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阿仑膦酸盐治疗对成骨不全症生长小鼠和野生型小鼠骨骼的不同影响。

Differential effects of alendronate treatment on bone from growing osteogenesis imperfecta and wild-type mouse.

作者信息

Misof Barbara M, Roschger Paul, Baldini Todd, Raggio Cathleen L, Zraick Vivien, Root Leon, Boskey Adele L, Klaushofer Klaus, Fratzl Peter, Camacho Nancy P

机构信息

Ludwig Boltzmann Institute of Osteology at the Hanusch Hospital of WGKK and AUVA Trauma Centre Meidling, 4th Med. Department Hanusch Hospital, Kundratstr, 37, A-1120 Vienna, Austria.

出版信息

Bone. 2005 Jan;36(1):150-8. doi: 10.1016/j.bone.2004.10.006.

Abstract

Bisphosphonates have been reported to decrease the number of fractures in children with osteogenesis imperfecta (OI). The current study sought to further explore bisphosphonate-associated bone changes in OI by investigating the effects of alendronate (ALN) treatment on bone mechanical and material properties in osteogenesis imperfecta (oim/oim) and wild-type (+/+) mice treated with 26-73 microg kg(-1) day(-1) of ALN for 8 weeks via subcutaneously implanted pumps. Femoral three-point bend tests to evaluate cortical bone were combined with geometric and material density analysis. Cortical and trabecular architecture of metaphyseal bone were histomorphometrically evaluated and material density assessed by quantitative backscattered electron imaging (qBEI). For the cortical oim/oim bone, which revealed principally inferior biomechanical properties compared to +/+ bone, ALN neither improved cortical strength or any other mechanical property, nor affected cortical width (Ct.Wi.) or material density. In contrast, for the +/+ mice, bone strength was enhanced (+22%, P < 0.05) though coupled with increased brittleness (+28%, P < 0.05). This mechanical improvement was associated with an increase in Ct.Wi. (+17.3%, P = 0.02) and a reduction in heterogeneity of cortical mineralization (Ca(Width), -4%, P = 0.04). In the metaphysis, ALN raised cancellous bone volume (BV/TV) significantly in oim/oim as well as in +/+ mice (+97%, P = 0.008 and +200%, P < 0.0001, respectively). This occurred without any change in either material density or trabecular thickness (Tb.Th.) in the oim/oim mice, while in the +/+ mice, material density increased slightly but significantly (+3%, P = 0.004), and Tb.Th. increased by 77% (P < 0.0001). Taken together, these results illustrate the differential effects of ALN on oim/oim vs. +/+ bone, as well as on specific skeletal sites, i.e., cortical vs. trabecular bone. ALN augmented the mechanical, geometrical, and material properties of +/+ cortical and trabecular bone, while the only observable improvement to the oim/oim bone was increased cancellous bone volume. This suggests that in this mouse model of OI, the previously demonstrated bisphosphonate-associated reduction in fractures is primarily attributable to increased metaphyseal bone mass.

摘要

据报道,双膦酸盐可减少成骨不全症(OI)患儿的骨折数量。本研究旨在通过研究阿仑膦酸钠(ALN)治疗对成骨不全症(oim/oim)小鼠和野生型(+/+)小鼠骨骼力学和材料特性的影响,进一步探索双膦酸盐在OI中引起的骨骼变化。通过皮下植入泵,以26 - 73微克/千克/天的剂量给oim/oim和+/+小鼠注射ALN,持续8周。采用股骨三点弯曲试验评估皮质骨,并结合几何和材料密度分析。通过组织形态计量学评估干骺端骨的皮质和小梁结构,并通过定量背散射电子成像(qBEI)评估材料密度。对于皮质oim/oim骨,与+/+骨相比,其生物力学性能主要较差,ALN既未改善皮质强度或任何其他力学性能,也未影响皮质宽度(Ct.Wi.)或材料密度。相比之下,对于+/+小鼠,骨强度增强(+22%,P < 0.05),但脆性增加(+28%,P < 0.05)。这种力学性能的改善与Ct.Wi.增加(+17.3%,P = 0.02)和皮质矿化异质性降低(Ca(Width),-4%,P = 0.04)有关。在干骺端,ALN显著增加了oim/oim小鼠和+/+小鼠的松质骨体积(BV/TV)(分别为+97%,P = 0.008和+200%,P < 0.0001)。在oim/oim小鼠中,这一过程中材料密度和小梁厚度(Tb.Th.)均无变化,而在+/+小鼠中,材料密度略有但显著增加(+3%,P = 0.004),Tb.Th.增加了77%(P < 0.0001)。综上所述,这些结果说明了ALN对oim/oim骨与+/+骨以及对特定骨骼部位(即皮质骨与小梁骨)的不同影响。ALN增强了+/+皮质骨和小梁骨的力学、几何和材料性能,而对oim/oim骨唯一可观察到的改善是松质骨体积增加。这表明在这个OI小鼠模型中,先前证明的双膦酸盐相关的骨折减少主要归因于干骺端骨量增加。

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