Department of Hard Tissue Engineering, Graduate School of Tokyo Medical and Dental University, Tokyo, Japan.
Calcif Tissue Int. 2010 Feb;86(2):172-83. doi: 10.1007/s00223-009-9331-x.
Cement lines represent mineralized, extracellular matrix interfacial boundaries at which bone resorption by osteoclasts is followed by bone deposition by osteoblasts. To determine the contribution of cement lines to bone quality, the osteopetrotic c-Src mouse model-where cement lines accumulate and persist as a result of defective osteoclastic resorption-was used to investigate age-related changes in structural and mechanical properties of bone having long-lasting cement lines. Cement lines of osteopetrotic bones in c-Src knockout mice progressively mineralized with age up to the level that the entire matrix of cement lines was lost by EDTA decalcification. While it was anticipated that suppressed and abnormal remodeling, together with the accumulation of cement line interfaces, would lead to defective bone quality with advancing age of the mutant mice, unexpectedly, three-point bending tests of the long bones of 1-year-old c-Src-deficient mice indicated significantly elevated strength relative to age-matched wild-type bones despite the presence of numerous de novo microcracks. Among these microcracks in the c-Src bones, there was no sign of preferential propagation or arrest of microcracks along the cement lines in either fractured or nonfractured bones of old c-Src mice. These data indicate that cement lines are not the site of a potential internal failure of bone strength in aged c-Src osteopetrotic mice and that abundant and long-lasting cement lines in these osteopetrotic bones appear to have no negative impacts on the mechanical properties of this low-turnover bone despite their progressive hypermineralization (and thus potential brittleness) with age.
水泥线代表矿化的细胞外基质界面边界,在这个界面上,破骨细胞进行骨吸收,随后成骨细胞进行骨沉积。为了确定水泥线对骨质量的贡献,使用了骨质减少的 c-Src 小鼠模型——由于破骨细胞吸收缺陷,水泥线会积累并持续存在——来研究具有持久水泥线的骨的结构和机械性能随年龄的变化。c-Src 基因敲除小鼠的骨质减少骨中的水泥线随着年龄的增长逐渐矿化,直到 EDTA 脱钙使整个水泥线基质丢失。虽然预期抑制和异常重塑,以及水泥线界面的积累,会导致突变小鼠随着年龄的增长而出现骨质量缺陷,但出乎意料的是,1 岁 c-Src 缺陷小鼠长骨的三点弯曲试验表明,与同龄野生型骨相比,强度显著提高,尽管存在大量新形成的微裂纹。在 c-Src 骨中的这些微裂纹中,在老年 c-Src 骨质减少小鼠的骨折或未骨折骨中,没有微裂纹沿着水泥线优先传播或停止的迹象。这些数据表明,水泥线不是老年 c-Src 骨质减少小鼠骨强度潜在内部失效的部位,并且这些骨质减少骨中丰富且持久的水泥线似乎对这种低转换骨的机械性能没有负面影响,尽管它们随着年龄的增长而逐渐超矿化(因此潜在变脆)。