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Ovarian hormone depletion affects cortical bone quality differently on different skeletal envelopes

机译:卵巢激素耗尽在不同的骨骼包络上影响皮质骨质质量

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The physical properties of bone tissue are determined by the organic and mineral matrix, and are one aspect of bone quality. As such, the properties of mineral and matrix are a major contributor to bone strength, independent of bone mass. Cortical bone quality may differ regionally on the three skeletal envelopes that compose it. Each of these envelopes may be affected differently by ovarian hormone depletion. Identifying how these regions vary in their tissue adaptive response to ovarian hormones can inform our understanding of how tissue quality contributes to overall bone strength in postmenopausal women. We analyzed humeri from monkeys that were either SHAM-operated or ovariectomized. Raman microspectroscopic analysis was performed as a function of tissue age based on the presence of multiple fluorescent double labels, to determine whether bone compositional properties (mineral/matrix ratio, tissue water, glycosaminoglycan, lipid, and pyridinoline contents, and mineral maturity/crystallinity) are similar between periosteal, osteonal, and endosteal surfaces, as well as to determine the effects of ovarian hormone depletion on them. The results indicate that mineral and organic matrix characteristics, and kinetics of mineral and organic matrix modifications as a function of tissue age are different at periosteal vs. osteonal and endosteal surfaces. Ovarian hormone depletion affects the three cortical surfaces (periosteal, osteonal, endosteal) differently. While ovarian hormone depletion does not significantly affect the quality of either the osteoid or the most recently mineralized tissue, it significantly affects the rate of subsequent mineral accumulation, as well as the kinetics of organic matrix modifications, culminating in significant differences within interstitial bone. These results highlight the complexity of the cortical bone compartments, add to existing knowledge on the effects of ovarian hormone depletion on local cortical bone properties, and may contribute to a better understanding of the location specific action of drugs used in the management of postmenopausal osteoporosis. (C) 2016 Elsevier Inc. All rights reserved.
机译:骨组织的物理性质由有机和矿物基质确定,是骨质的一个方面。因此,矿物质和基质的性质是骨骼强度的主要因素,与骨质量无关。皮质骨质质量可能在构成它的三个骨架信封上区别区别。这些包络中的每一个可能因卵巢激素耗尽而受到不同的影响。鉴定这些地区如何在其组织适应性对卵巢激素的适应性反应中的各种方式可以通知我们对后期女性的组织质量如何导致总体骨骼强度的理解。我们分析了从假手术或卵巢切除的猴子的Humeri。基于多个荧光双标签的存在,根据组织时期的功能进行拉曼微穴位分析,以确定骨组成特性是否(矿物/基质比,组织水,糖胺,脂质和吡啶啉含量,以及矿物成熟度/结晶)在骨膜,骨和内皮表面之间类似,以及确定卵巢激素耗尽对它们的影响。结果表明,作为组织时代的函数的矿物质和有机基质改性和矿物质和有机基质修饰的动力学在骨膜膜与骨膜与骨质和内皮表面不同。卵巢激素耗尽会影响三种皮质表面(骨膜,骨,内皮内)不同。虽然卵巢激素耗尽不会显着影响骨质骨质或最近矿化组织的质量,但它显着影响随后的矿物积累的速率,以及有机基质修饰的动力学,最终在间质骨内显着差异。这些结果突出了皮质骨隔室的复杂性,增加了关于卵巢激素耗尽对局部皮质骨骼性质的影响的现有知识,并且可能有助于更好地理解药物骨质疏松症管理中使用的药物的特定作用。 (c)2016年Elsevier Inc.保留所有权利。

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