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Comparison of the effect of dietary copper nanoparticles and one copper (II) salt on the copper biodistribution and gastrointestinal and hepatic morphology and function in a rat model

机译:膳食铜纳米颗粒和一种铜盐对大鼠模型中铜的生物分布以及胃肠道,肝脏形态和功能的影响比较

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摘要

The aim of the study was to investigate the effect of two forms (CuCO3 (CuS); and Cu nanoparticles (CuNP)) and dosages (standard 6.5 mg/kg (H), half of the standard (L)) of additional dietary Cu administered to growing rats on gastrointestinal and hepatic function and morphology. Copper in the form of CuNP vs CuS caused lower Cu faecal/urinal excretion and increased Cu accumulation in the brain tissue. Hepatic high-grade hydropic degeneration and necrotic lesions were observed only in the CuNP-H animals. In the lower gut, the dietary application of CuNP stifled bacterial enzymatic activity of caecal gut microbiota and resulted in lower SCFA production. That diminishing effect of CuNP on caecal microbiota activity was accompanied by a relative increase in the secretion of glycoside hydrolases by bacterial cells. The results showed that in comparison to Cu from CuCO3, Cu nanoparticles to a greater extent were absorbed from the intestine, accumulated in brain tissue, exerted antimicrobial effect in the caecum, and at higher dietary dose caused damages in the liver of rats.
机译:这项研究的目的是研究两种膳食铜(CuCO3(CuS);和Cu纳米颗粒(CuNP))和剂量(标准6.5 mg / kg(H),标准(L)的一半)的影响。给予成长中大鼠的胃肠道,肝功能和形态。 CuNP vs CuS形式的铜引起较低的粪便/尿液排泄,并增加了脑组织中的Cu积累。仅在CuNP-H动物中观察到肝高级水样变性和坏死病变。在下部肠道中,CuNP的饮食应用抑制了盲肠肠道菌群的细菌酶活性,并导致SCFA产量降低。 CuNP对盲肠微生物群活性的减弱作用伴随着细菌细胞糖苷水解酶分泌的相对增加。结果表明,与来自CuCO3的Cu相比,Cu纳米颗粒从肠道吸收的程度更大,在脑组织中积累,在盲肠中发挥抗菌作用,而高剂量饮食对大鼠肝脏造成损害。

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