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首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Tracing the pathway of compositional changes in bone mineral with age: Preliminary study of bioapatite aging in hypermineralized dolphin's bulla
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Tracing the pathway of compositional changes in bone mineral with age: Preliminary study of bioapatite aging in hypermineralized dolphin's bulla

机译:追踪骨骼矿物成分随年龄变化的途径:高矿化海豚大疱中生物磷灰石衰老的初步研究

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Background Studies of mineral compositional effects during bone aging are complicated by the presence of collagen. Methods Hypermineralized bullae of Atlantic bottlenose dolphins of 3 months, 2.5 years, and 20 years underwent micrometer-scale point analysis by Raman spectroscopy and electron microprobe in addition to bulk analysis for carbon. Results Bulla central areas have a mineral content of ~ 96 wt.% and 9-10 wt.% carbonate in their bioapatite, which is ~ 2 wt.% more than edge areas. Ca/P atomic ratios (~ 1.8) and concentrations of Mg, S, and other minor/trace elements are almost constant in central areas over time. Maturity brings greater over-all homogeneity in mineral content, stoichiometry, and morphology throughout the central and edge areas of the bullae. During aging, edge areas become less porous, whereas the concentration of organics in the edge is reduced. Enhancement of coupled substitutions of CO3 2 - for PO4 3 - and Na for Ca during aging increases carbonate content up to ~ 10 wt.% in the adult bulla. Conclusions 1) Changes in physical properties during aging did not occur simultaneously with changes in chemical properties of the bone mineral. 2) Compositional changes in bone mineral were minor during the neonatal to sub-adult stage, but significant during later maturity. 3) Na and CO3 concentrations co-vary in a 1:1 molar proportion during aging. 4) The mineral's crystallinity did not decrease as CO3 concentration increased during aging. General significance Hypermineralized dolphin's bulla, due to extreme depletion in collagen, is an ideal material for investigating mineralogical changes in bioapatite during bone aging.
机译:骨老化过程中矿物质成分影响的背景研究因胶原蛋白的存在而变得复杂。方法分别对3个月以下,2。5年和20年以下的大西洋宽吻海豚的超矿化大疱进行拉曼光谱和电子显微探针的微米级点分析,以及对碳的大量分析。结果Bulla中心区域的生物磷灰石中的矿物质含量约为96 wt。%,碳酸盐含量为9-10 wt。%,比边缘区域高约2 wt。%。在中心区域,Ca / P原子比(〜1.8)和Mg,S及其他微量/痕量元素的浓度随时间几乎恒定。成熟度在整个大疱中心和边缘区域的矿物质含量,化学计量和形态方面带来更大的整体一致性。在老化期间,边缘区域的多孔性降低,而边缘中有机物的浓度降低。在成年大疱中,在衰老过程中,CO3 2-代替PO4 3-和Na代替Ca的耦合取代作用会增加碳酸盐含量,最高可达〜10 wt%。结论1)老化过程中的物理特性变化与骨矿物质的化学特性变化并没有同时发生。 2)骨矿物质的成分变化在新生儿至亚成人阶段较小,但在以后的成熟阶段则明显。 3)在老化过程中,Na和CO3的浓度以1:1的摩尔比变化。 4)随着老化过程中CO3浓度的增加,矿物的结晶度并未降低。一般意义由于胶原蛋白的极度消耗,超矿化的海豚大疱是研究骨骼老化过程中生物磷灰石矿物学变化的理想材料。

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