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Aberrant regulation of bone trace elements in motheaten and osteopetrosis mutant mice.

机译:异常的调节motheaten和osteopetrosis突变小鼠中的骨微量元素。

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Increasing numbers of genetic diseases involving bone development and models for these diseases have been identified recently. Analysis of these bone diseases have revealed that regulated action of multiple growth factors and subsequent signal transduction are essential for normal bone formation. In this paper, two murine mutant mice viable motheaten and osteopetrosis are analyzed. Mice with the recessive 'viable motheaten' mutation express a severe immunodeficiency syndrome and bone defects. Mutations at the motheaten locus were shown to be the result of aberrant splicing of the gene encoding hematopoietic cell phosphatase (Hcph). Mice homozygous for the osteopetrosis mutation develop congenital osteopetrosis due to a severe deficiency of osteoclasts. It has been recognized that bone trace element composition analysis helps to define bone-related physiological conditions. We have analyzed bone trace element composition in viable motheaten and osteopetrosis mutant animal models in this study. In order to gain insights into the effects of particular genetic defects on bone trace element composition, inductively coupled plasma atomic emissions spectrometry (ICP-AES) analysis was performed. Marked changes in bone trace element levels were found in limb bones of viable motheaten and osteopetrosis mutant mice. An assessment of these trace element spectrum in the two mutant models with respect to each genetic defects are discussed in this paper.
机译:最近已经发现越来越多的涉及骨骼发育的遗传疾病和这些疾病的模型。对这些骨骼疾病的分析表明,多种生长因子的调控作用和随后的信号转导对于正常骨骼形成至关重要。在本文中,分析了两只鼠突变体小鼠的存活的动骨和骨质疏松症。隐性“存活的motheaten”突变的小鼠表现出严重的免疫缺陷综合症和骨缺损。提示在motheaten基因座处的突变是编码造血细胞磷酸酶(Hcph)的基因异常剪接的结果。由于破骨细胞的严重缺乏,纯净骨质突变的小鼠发展为先天性骨质疏松症。已经认识到,骨微量元素组成分析有助于确定骨相关的生理状况。在这项研究中,我们已经分析了可行的motheaten和osteopetrosis突变动物模型中的骨微量元素组成。为了深入了解特定遗传缺陷对骨微量元素组成的影响,进行了电感耦合等离子体原子发射光谱法(ICP-AES)分析。在存活的motheaten和osteopetrosis突变小鼠的四肢骨骼中发现了骨微量元素水平的显着变化。本文讨论了在两个突变体模型中针对每种遗传缺陷对这些微量元素谱的评估。

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