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首页> 外文期刊>Journal of applied toxicology >Beneficial impact of zinc supplementation on the collagen in the bone tissue of cadmium‐exposed rats
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Beneficial impact of zinc supplementation on the collagen in the bone tissue of cadmium‐exposed rats

机译:锌补充对镉暴露大鼠骨组织胶原蛋白胶原蛋白的有益影响

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Abstract Cadmium (Cd) is a toxic metal that damages bone tissue by affecting its mineral and organic components. The organic matrix is mainly (90%) composed of collagen, which determines the biomechanical strength of bone. The aim of this study was to evaluate the effect of zinc (Zn) supplementation (30 or 60?mg?l –1 ) under moderate and relatively high exposure to Cd (5 and 50?mg?l –1 ) on collagen in the rat tibia proximal epiphysis and diaphysis (regions abundant in trabecular and cortical bone, respectively). Significant decrease in collagen type I biosynthesis was found in both regions of the tibia in Cd‐treated rats, whereas the supplementation with Zn provided significant protection against this effect. Western blot confirmed the presence of the major type I collagen in the tibia epiphysis and diaphysis, but collagen type II was revealed only in the epiphysis. Acetic acid‐ and pepsin‐soluble collagen concentration in the tibia epiphysis and diaphysis was significantly increased due to the exposure to Cd, whereas the supplementation with Zn protected, partially or totally, from these effects, depending on the used concentration. The supplementation with Zn also provided protection from unfavorable Cd impact on the maturation of the bone collagen, as the ratio of cross‐links to monomers was higher compared to the Cd‐treated group. This report confirms our previous findings on the preventive action of Zn against harmful effects of Cd on bone, but additionally, and to the best of our knowledge for the first time, explains the possible mechanism of the beneficial influence of this bioelement.
机译:摘要镉(CD)是一种毒性金属,通过影响其矿物和有机组分来损坏骨组织。有机基质主要由胶原蛋白组成(90%),其决定了骨骼的生物力学强度。本研究的目的是评估锌(Zn)补充(30或60×mg≤L-1)在中等且相对高的暴露于CD(5和50μg≤L-1)上的胶原蛋白的影响大鼠胫骨近端骨骺和骨骺(分别含有小梁和皮质骨中的区)。在CD处理的大鼠胫骨的两个区域中发现了胶原蛋白类型生物合成的显着降低,而Zn的补充则提供了针对这种效果的显着保护。 Western印迹确认了胫骨骨骺和骨干中主要I型胶原蛋白的存在,但仅在骨骺中揭示了胶原II型。由于暴露于Cd,胫骨骨骺和蛋白酶溶解胶原浓度显着增加,而根据使用的浓度,通过Zn保护,部分或完全来自这些效果的补充。 Zn的补充还提供了对骨胶原蛋白的成熟的不利CD的影响,因为与CD处理基团相比,交联与单体的比例更高。本报告证实了我们以前关于Zn对CD对骨骼的有害影响的调查结果,而且据我们首次知识,并阐述了这种生物的有益影响的可能机制。

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