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首页> 外文期刊>Biological trace element research >Dosage Effect of Zinc Glycine Chelate on Zinc Metabolism and Gene Expression of Zinc Transporter in Intestinal Segments on Rat
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Dosage Effect of Zinc Glycine Chelate on Zinc Metabolism and Gene Expression of Zinc Transporter in Intestinal Segments on Rat

机译:甘氨酸锌螯合物对大鼠肠段锌代谢和锌转运蛋白基因表达的影响

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摘要

Zinc plays an essential role in various fundamental biological processes. The focus of this research was to investigate the dosage effect of zinc glycine chelate (Zn-Gly) on zinc metabolism and the gene expression of zinc transporters in intestinal segments. A total of 30 4-week-old SD rats were randomized into five treatment groups. The basal diets for each group were supplemented with gradient levels of Zn (0, 30, 60, 90, and 180 mg/kg) from Zn-Gly. After 1-week experiment, the results showed that serum and hepatic zinc concentration were elevated linearly with supplemental Zn levels from 0 to 180 mg Zn/kg. Serum Cu-Zn SOD activities resulted in a significant (P < 0.01) quadratic response and reached the peak when fed 60 mg Zn/kg. There were linear responses to the addition of Zn-Gly from 0 to 180 mg Zn/kg on Cu-Zn SOD and AKP activities in the liver. In the duodenum, MT1 mRNA was upregulated with the increasing dietary Zn-Gly levels and reached the peak of 180 mg Zn/kg (P < 0.05). Zip4 mRNA expression was downregulated with the increasing zinc levels (P < 0.05) in both duodenum and jejunum. In the jejunum, Zip5 mRNA expression in 60 mg Zn/kg was higher compared with other groups (P < 0.05). ZnT1 mRNA in duodenum was numerically increased with the rising levels of zinc content and was significantly higher (P < 0.05) with 180 mg Zn/kg. In the duodenum, adding 60 or 90 mg Zn/kg increased PepT1 expression, but in the jejunum, 60 mg Zn/kg did not differ from 0 added Zn. In summary, there is a dose-dependent effect of dietary Zn-Gly on serum and hepatic zinc levels and the activities of Cu-Zn SOD and AKP on rats. Dietary Zn-Gly has a certain effect on MT1, Zip4, Zip5, and ZnT1 expression, which expressed differently in intestinal segments with different levels of Zn-Gly load. Besides, Zn-Gly also could regulate PepT1 expression in intestinal segments.
机译:锌在各种基本生物学过程中起着至关重要的作用。这项研究的重点是研究甘氨酸锌螯合剂(Zn-Gly)对锌代谢的剂量作用以及肠段中锌转运蛋白的基因表达。总共30只4周龄SD大鼠被随机分为五个治疗组。每组的基础饮食都补充了来自Zn-Gly的Zn梯度水平(0、30、60、90和180 mg / kg)。经过1周的实验,结果表明,血清和肝中锌的浓度随Zn的补充含量从0到180 mg Zn / kg线性增加。血清铜锌超氧化物歧化酶活性导致显着(P <0.01)二次响应,并以60 mg锌/ kg的剂量达到峰值。 Zn-Gly的添加量从0到180 mg Zn / kg对肝脏中的Cu-Zn SOD和AKP活性具有线性响应。在十二指肠中,MT1 mRNA随饮食中Zn-Gly水平的升高而上调,并达到180 mg Zn / kg的峰值(P <0.05)。十二指肠和空肠中锌水平的升高均会下调Zip4 mRNA的表达(P <0.05)。在空肠中,Zip5 mRNA在60 mg Zn / kg中的表达高于其他组(P <0.05)。十二指肠中的ZnT1 mRNA随着锌含量的增加而在数值上增加,并且在180 mg Zn / kg时显着更高(P <0.05)。在十二指肠中,添加60或90 mg Zn / kg会增加PepT1的表达,但在空肠中,添加60 Zn / kg的锌与添加0的Zn没有区别。总之,饮食中锌-甘氨酸对大鼠血清和肝锌水平以及铜锌超氧化物歧化酶和AKP的活性具有剂量依赖性。饮食中的Zn-Gly对MT1,Zip4,Zip5和ZnT1的表达有一定的影响,在不同的Zn-Gly含量的肠段中,它们的表达不同。此外,Zn-Gly还可以调节小肠段PepT1的表达。

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