School of Veterinary Medicine and Animal Science, São Paulo State University (UNESP), Botucatu 18618-681, SP, Brazil.
Institute of Biosciences, São Paulo State University (UNESP), Botucatu 18618-693, SP, Brazil.
Molecules. 2023 Dec 18;28(24):8155. doi: 10.3390/molecules28248155.
The aim of the present study was to evaluate the differential expression of plasma proteins in broiler chickens supplemented with different sources (sulfates and hydroxychlorides) and levels of copper (15 and 150 mg kg) and manganese (80 and 120 mg kg). For this, plasma samples from 40 broiler chickens were used, divided into four experimental groups: S15-80 (15 ppm CuSO and 80 ppm MnSO), S150-120 (150 ppm CuSO and 120 ppm MnSO), H15-80 (15 ppm Cu(OH)Cl and 80 ppm Mn(OH)Cl), and H150-120 (150 ppm Cu(OH)Cl and 120 ppm Mn(OH)Cl). From plasma samples obtained from each bird from the same treatment, four pools were made considering 10 birds per group. Plasma proteome fractionation was performed by 2D-PAGE. Concentrations of the studied minerals were also evaluated in both plasma and protein pellet samples. A higher concentration of Cu and Mn was observed in the plasma and protein pellets of groups that received higher mineral supplementation levels compared to those receiving lower levels. Mn concentrations were higher in plasma and protein pellets of the hydroxychloride-supplemented groups than the sulfate-supplemented groups. Analysis of the gels revealed a total of 40 differentially expressed spots among the four treatments. Supplementation with different sources of minerals, particularly at higher levels, resulted in changes in protein regulation, suggesting a potential imbalance in homeostasis.
本研究旨在评估在补充不同来源(硫酸盐和羟氯酸盐)和不同水平铜(15 和 150mg/kg)和锰(80 和 120mg/kg)的肉鸡血浆蛋白的差异表达。为此,使用了 40 只肉鸡的血浆样品,将其分为四个实验组:S15-80(15ppmCuSO 和 80ppmMnSO)、S150-120(150ppmCuSO 和 120ppmMnSO)、H15-80(15ppmCu(OH)Cl 和 80ppmMn(OH)Cl)和 H150-120(150ppmCu(OH)Cl 和 120ppmMn(OH)Cl)。从同一处理组中每只鸡获得的血浆样品中,考虑到每组 10 只鸡,共制作了四个池。通过 2D-PAGE 进行血浆蛋白质组分离。还评估了研究矿物在血浆和蛋白质颗粒样品中的浓度。与接受较低水平补充的组相比,接受较高水平补充的组的血浆和蛋白质颗粒中的 Cu 和 Mn 浓度更高。补充羟氯酸盐的组的血浆和蛋白质颗粒中的 Mn 浓度高于补充硫酸盐的组。凝胶分析共显示出四种处理方法之间存在 40 个差异表达点。不同来源的矿物质补充,特别是在较高水平下,会导致蛋白质调节发生变化,这表明内稳态可能存在潜在失衡。