首页> 外文期刊>Toxicology and Industrial Health >The effect of tannic acid on bone mechanical and geometric properties, bone density, and trabecular histomorphometry as well as the morphology of articular and growth cartilages in rats co-exposed to cadmium and lead is dose dependent
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The effect of tannic acid on bone mechanical and geometric properties, bone density, and trabecular histomorphometry as well as the morphology of articular and growth cartilages in rats co-exposed to cadmium and lead is dose dependent

机译:单宁酸对骨机械和几何性质,骨密度和小梁组织形态的影响以及与镉共同暴露的大鼠关节和生长软骨的形态是依赖的剂量

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摘要

Cadmium (Cd) and lead (Pb) are toxic elements that accumulate to the largest extent in bones. Rats were used to investigate whether tannic acid (TA; 0.5%, 1.0%, 1.5%. 2.0%, or 2.5%) would have a protective effect on the structure and properties of bones in the case of exposure to Cd and Pb (diet: 7 mg Cd/kg and 50 mg Pb/kg) for 6 weeks. The effects of administration of TA in Cd- and Pb-poisoned rats on bone characteristics and the morphology of articular and growth cartilages were determined. All the rats administered Cd and Pb had an enhanced Cd and Pb concentration in blood plasma and bone and reduced bone Ca content irrespective of the TA administration. Cd and Pb alone reduced the mechanical endurance and histomorphometric parameters of trabecular bone and the thickness of the growth plate and articular cartilage. Tannic acid improved cancellous bone parameters in the rat exposed to Cd and Pb. A diet rich in TA improved articular cartilage constituents in heavy metal-poisoned rats. These results suggest that alimentary TA supplementation can counteract in a dose-dependent manner some of the destructive changes evoked by Cd and Pb possibly by reducing the exposure.
机译:镉(CD)和铅(PB)是肿瘤元素,其积聚在最大程度上。用于研究单宁酸是否(TA; 0.5%,1.0%,1.5%。2.0%或2.5%)对暴露于CD和Pb(饮食)的情况下对骨骼的结构和性质进行保护作用:7毫克Cd / kg和50 mg pb / kg)6周。确定了TA施用TA的影响骨骼特征对骨骼特征和关节和生长软骨形态的影响。施用的CD和Pb的所有大鼠在血浆和骨中具有增强的CD和PB浓度,而且无论TA给药如何,骨CA含量降低。单独的CD和Pb降低了小梁骨的机械耐久性和组织素质和组织形态学参数和生长板的厚度和关节软骨。单宁酸改善暴露于CD和Pb的大鼠中的松质骨参数。富含TA的饮食改善了重金属中毒大鼠的关节软骨成分。这些结果表明,消化的TA补充可以以剂量依赖的方式抵消,其中一些破坏性变化可能通过减少暴露而引起的CD和Pb。

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