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首页> 外文期刊>General and comparative endocrinology >High metabolic activity of tissue-nonspecific alkaline phosphatase not only in young but also in adult bone as demonstrated using a new histochemical detection protocol
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High metabolic activity of tissue-nonspecific alkaline phosphatase not only in young but also in adult bone as demonstrated using a new histochemical detection protocol

机译:通过使用新的组织化学检测方案证明,组织 - 非特异性碱性磷酸酶的高代谢活性不仅在成年骨中

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Tissue-nonspecific alkaline phosphatase (TNAP) is playing a key role in bone calcification, as has been demonstrated in different mammalian species including human and rodents. However, to investigate age-related changes during life history, histochemical demonstration of TNAP is severely hampered, particularly in the elderly, by technical difficulties associated with sectioning calcified tissue. Sufficient fixation must precede decalcification since poorly fixed bone tissue is exposed to the deleterious effects of decalcification reagents. In order to find a method that would allow cryosectioning of bone without loss of TNAP activity, we assessed the efficacy of different fixation reagents regarding the effects on structural integrity and TNAP activity using liver and osseous tissue from younger and older horses. The results of this study reveal that glyoxal-based fixatives sufficiently preserved bone tissue for successful cryosectioning without compromising TNAP activity. The method described combines the demonstration of TNAP activity with optimal preservation of tissue morphology in osseous tissue of younger and even of older mammals. As a model species, we selected horse bones in light of potentially higher similarities to ageing history and lifelong locomotion in humans as compared to other, mostly smaller, experimental model species with a much shorter life span and artificial locomotive activity when kept in cages. This may serve as a basis for future studies addressing the impact of different life traits in iconic, domestic and companion animals, which are often patients in veterinary medicine, as well as for basic research on human physiology and pathologies of the musculoskeletal system. (C) 2017 Elsevier Inc. All rights reserved.
机译:组织非特异性碱性磷酸酶(TNAP)在骨钙化中发挥着关键作用,如在包括人和啮齿动物的不同哺乳动物物种中所示。然而,为了调查生命历史中与年龄相关的变化,通过与截面钙化组织相关的技术困难,TNAP的组织化学证明严重阻碍,特别是在老年人中。足够的固定必须先于脱钙,因为固定骨组织不良暴露于脱钙试剂的有害作用。为了发现一种允许骨丧失骨不会丧失TNAP活性的方法,我们评估了不同固定试剂关于使用来自年轻和较老马的肝脏和骨骼组织对结构完整性和TNAP活性的影响的疗效。该研究的结果表明,基于乙醛的固定剂足够地保存了骨组织,以便在不影响TNAP活性的情况下成功低温。该方法结合了TNAP活性的演示,并在较年轻的哺乳动物的骨组织中最佳保存组织形态。作为一种模型物种,我们选择的马骨头与人类的老化历史和终身运动相比,与其他,大多数更小的实验模型物种相比,在笼子里保持更短的寿命和人工机车活动。这可以作为解决兽医,家庭和伴侣动物在兽医中的不同寿命的影响的未来研究的基础,这通常是兽医患者的患者,以及对肌肉骨骼系统的人类生理学和病理学的基础研究。 (c)2017年Elsevier Inc.保留所有权利。

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