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丙烯酰胺诱导的小鼠股骨微观结构变化。

Acrylamide-induced changes in femoral bone microstructure of mice.

作者信息

Sarocka A, Babosova R, Kovacova V, Omelka R, Semla M, Kapusta E, Goc Z, Formicki G, Martiniakova M

机构信息

Department of Zoology and Anthropology, Faculty of Natural Sciences, Constantine the Philosopher University in Nitra, Nitra, Slovak Republic.

出版信息

Physiol Res. 2017 Dec 20;66(6):1067-1071. doi: 10.33549/physiolres.933515. Epub 2017 Sep 22.

Abstract

Acrylamide (AA) is one of the most common toxins in foods. Its effect on bone microstructure has not been investigated. The aim of our study was to analyze the impact of acute exposure to AA on femoral bone microstructure in mice. Adult animals were treated perorally with 2 doses of AA (E1 group, 1 mg/kg b.w.) in a 24-h period and with 3 doses of AA (E2 group, 1 mg/kg b.w.) in a 48-h period. Mice exposed to AA had smaller sizes of primary osteon's vascular canals. Secondary osteons were significantly smaller in mice from E2 group; however their increased number (from 38 % to 77 %) was identified in both E1 and E2 groups. In these groups, a higher number of resorption lacunae (from 100 % to 122 %) was also found. The values for bone volume, trabecular number were increased and that for trabecular separation was decreased in mice administered AA. Significantly higher value of bone surface was observed in mice from E1 group whereas trabecular thickness was increased in E2 group. The effect of AA on microstructure of compact and trabecular bone tissues is different. In our study, one dose of AA was used and acute effects of AA were investigated. Therefore, further studies are needed to study mechanisms by which AA acts on bone.

摘要

丙烯酰胺(AA)是食品中最常见的毒素之一。其对骨微结构的影响尚未得到研究。我们研究的目的是分析急性暴露于AA对小鼠股骨骨微结构的影响。成年动物在24小时内口服2剂AA(E1组,1毫克/千克体重),在48小时内口服3剂AA(E2组,1毫克/千克体重)。暴露于AA的小鼠初级骨单位血管通道尺寸较小。E2组小鼠的次级骨单位明显更小;然而,在E1组和E2组中均发现其数量增加(从38%增至77%)。在这些组中,还发现吸收陷窝数量更多(从100%增至122%)。给予AA的小鼠骨体积、小梁数量的值增加,小梁间距的值降低。在E1组小鼠中观察到骨表面的值显著更高,而E2组中小梁厚度增加。AA对密质骨和松质骨组织微结构的影响不同。在我们的研究中,使用了一剂AA并研究了AA的急性效应。因此,需要进一步研究AA作用于骨骼的机制。

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