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Bone density, strength, and formation in adult cathepsin K (-/-) mice.

机译:成年组织蛋白酶K(-/-)小鼠的骨密度,强度和形成。

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Cathepsin K (CatK) is a cysteine protease expressed predominantly in osteoclasts, that plays a prominent role in degrading Type I collagen. Growing CatK null mice have osteopetrosis associated with a reduced ability to degrade bone matrix. Bone strength and histomorphometric endpoints in young adult CatK null mice aged more than 10 weeks have not been studied. The purpose of this paper is to describe bone mass, strength, resorption, and formation in young adult CatK null mice. In male and female wild-type (WT), heterozygous, and homozygous CatK null mice (total N=50) aged 19 weeks, in-life double fluorochrome labeling was performed. Right femurs and lumbar vertebral bodies 1-3 (LV) were evaluated by dual-energy X-ray absorptiometry (DXA) for bone mineral content (BMC) and bone mineral density (BMD). The trabecular region of the femur and the cortical region of the tibia were evaluated by histomorphometry. The left femur and sixth lumbar vertebral body were tested biomechanically. CatK (-/-) mice show higher BMD at the central and distal femur. Central femur ultimate load was positively influenced by genotype, and was positively correlated with both cortical area and BMC. Lumbar vertebral body ultimate load was also positively correlated to BMC. Genotype did not influence the relationship of ultimate load to BMC in either the central femur or vertebral body. CatK (-/-) mice had less lamellar cortical bone than WT mice. Higher bone volume, trabecular thickness, and trabecular number were observed at the distal femur in CatK (-/-) mice. Smaller marrow cavities were also present at the central femur of CatK (-/-) mice. CatK (-/-) mice exhibited greater trabecular mineralizing surface, associated with normal volume-based formation of trabecular bone. Adult CatK (-/-) mice have higher bone mass in both cortical and cancellous regions than WT mice. Though no direct measures of bone resorption rate were made, the higher cortical bone quantity is associated with a smaller marrow cavity and increased retention of non-lamellar bone, signs of decreased endocortical resorption. The relationship of bone strength to BMC does not differ with genotype, indicating the presence of bone tissue of normal quality in the absence of CatK.
机译:组织蛋白酶K(CatK)是主要在破骨细胞中表达的半胱氨酸蛋白酶,在降解I型胶原蛋白中起着重要作用。生长中的CatK null小鼠的骨质疏松症与降低的骨基质降解能力有关。尚未对年龄超过10周的成年CatK无效成年小鼠的骨强度和组织形态学终点进行研究。本文的目的是描述年轻成年CatK null小鼠的骨量,强度,吸收和形成。在19周龄的雄性和雌性野生型(WT),杂合和纯合CatK null小鼠(总N = 50)中,进行了生命中的双重荧光标记。通过双能X线骨密度仪(DXA)评估右股骨和腰椎体1-3(LV)的骨矿物质含量(BMC)和骨矿物质密度(BMD)。通过组织形态学评价股骨的小梁区域和胫骨的皮质区域。对左股骨和第六个腰椎椎体进行了生物力学测试。 CatK(-/-)小鼠在股骨中部和远端显示较高的BMD。股骨中央最大负荷受基因型正相关,与皮层面积和BMC均呈正相关。腰椎椎体的最终负荷也与BMC呈正相关。基因型不影响股骨中央或椎体中最终负荷与BMC的关系。 CatK(-/-)小鼠的片状皮质骨少于WT小鼠。在CatK(-/-)小鼠的股骨远端观察到更高的骨体积,小梁厚度和小梁数目。 CatK(-/-)小鼠的股骨中央也有较小的骨髓腔。 CatK(-/-)小鼠表现出更大的小梁矿化表面,与正常的基于体积的小梁骨形成有关。成年的CatK(-/-)小鼠在皮质和松质区域的骨量均比WT小鼠高。尽管没有直接测量骨吸收率,但较高的皮质骨量与较小的骨髓腔和增加的非片状骨保留有关,这是皮质内吸收减少的迹象。骨强度与BMC的关系随基因型无异,表明在不存在CatK的情况下存在正常质量的骨组织。

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