首页> 美国卫生研究院文献>PLoS Clinical Trials >Zinc oxide nanoparticles as a substitute for zinc oxide or colistin sulfate: Effects on growth, serum enzymes, zinc deposition, intestinal morphology and epithelial barrier in weaned piglets
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Zinc oxide nanoparticles as a substitute for zinc oxide or colistin sulfate: Effects on growth, serum enzymes, zinc deposition, intestinal morphology and epithelial barrier in weaned piglets

机译:氧化锌纳米颗粒替代氧化锌或硫酸粘菌素:对断奶仔猪生长,血清酶,锌沉积,肠道形态和上皮屏障的影响

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摘要

The objective of this study was to evaluate effects of zinc oxide nanoparticles (nano-ZnOs) as a substitute for colistin sulfate (CS) and/or zinc oxide (ZnO) on growth performance, serum enzymes, zinc deposition, intestinal morphology and epithelial barrier in weaned piglets. A total of 216 crossbred Duroc×(Landrace×Yorkshire) piglets weaned at 23 days were randomly assigned into 3 groups, which were fed with basal diets supplemented with 20 mg/kg CS (CS group), 20mg/kg CS+3000 mg/kg ZnO (CS+ZnO group), and 1200 mg/kg nano-ZnOs (nano-ZnO group) for 14 days. Results indicated that compared to CS group, supplementation of 1200 mg/kg nano-ZnOs (about 30 nm) significantly increased final body weight and average daily gain, and 3000 mg/kg ZnO plus colistin sulfate significantly increased average daily gain and decreased diarrhea rate in weaned piglets. There was no significant difference in growth performance and diarrhea rate between nano-ZnO and CS+ZnO groups. Supplementation of nano-ZnOs did not affect serum enzymes (glutamic oxalacetic transaminase, glutamic-pyruvic transaminase, and lactate dehydrogenase), but significantly increased plasma and tissue zinc concentrations (liver, tibia), improved intestinal morphology (increased duodenal and ileal villus length, crypt depth, and villus surface), enhanced mRNA expression of ZO-1 in ileal mucosa, and significantly decreased diamine oxidase activity in plasma, total aerobic bacterial population in MLN as compared to CS group. Effects of nano-ZnOs on serum enzymes, intestinal morphology, and mRNA expressions of tight junction were similar to those of high dietary ZnO plus colistin sulfate, while nano-ZnOs significantly reduced zinc concentrations of liver, tibia, and feces, and decreased total aerobic bacterial population in MLN as compared to CS+ZnO group. These results suggested that nano-ZnOs (1200 mg/kg) might be used as a substitute for colistin sulfate and high dietary ZnO in weaned piglets.
机译:这项研究的目的是评估氧化锌纳米颗粒(nano-ZnOs)替代硫酸粘菌素(CS)和/或氧化锌(ZnO)对生长性能,血清酶,锌沉积,肠道形态和上皮屏障的影响在断奶的仔猪中。将第23天断奶的216只杂交杜洛克×(Landrace×Yorkshire)仔猪随机分为3组,分别饲喂补充20 mg / kg CS,20mg / kg CS + 3000 mg / kg的基础日粮。 kg ZnO(CS + ZnO组)和1200 mg / kg纳米ZnO(nano-ZnO组)持续14天。结果表明,与CS组相比,补充1200 mg / kg纳米ZnO(约30 nm)显着增加了最终体重和平均日增重,而3000 mg / kg ZnO和硫酸粘菌素硫酸盐显着提高了平均日增重和腹泻率在断奶的仔猪中。纳米ZnO和CS + ZnO组之间的生长性能和腹泻率没有显着差异。补充纳米ZnO不会影响血清酶(谷氨酸草酰转氨酶,谷氨酸-丙酮酸转氨酶和乳酸脱氢酶),但会显着增加血浆和组织中的锌浓度(肝脏,胫骨),改善肠道形态(增加十二指肠和回肠绒毛长度,隐窝深度和绒毛表面),回肠粘膜中ZO-1的mRNA表达增强,与CS组相比,血浆,MLN总需氧菌种群中二胺氧化酶活性显着降低。纳米ZnO对血清酶,肠道形态和紧密连接的mRNA表达的影响与高饮食ZnO加硫酸粘菌素相似,而纳米ZnO显着降低肝脏,胫骨和粪便中的锌浓度,并降低总需氧量与CS + ZnO组相比,MLN中的细菌数量多。这些结果表明,可以在断奶仔猪中使用1200 mg / kg的纳米ZnO替代硫酸粘菌素和高日粮ZnO。

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