Effect of zinc nanoparticles on embryo and chicken growth, and the content of zinc in tissues and faeces

被引:5
作者
Lukasiewicz, M. [1 ]
Lozicki, A. [2 ]
Casey, N. H. [3 ]
Chwalibog, A. [4 ]
Niemiec, J. [1 ]
Matuszewski, A. [1 ]
Sosnowska, M. [2 ]
Wierzbicki, M. [2 ]
Zielinska, M. [2 ]
Balaban, J. [2 ]
Sawosz, E. [2 ]
机构
[1] Warsaw Univ Life Sci, Dept Poultry Breeding, Warsaw, Poland
[2] Warsaw Univ Life Sci, Dept Anim Nutr & Biotechnol, Warsaw, Poland
[3] Univ Pretoria, Dept Anim & Wildlife Sci, Pretoria, South Africa
[4] Univ Copenhagen, Dept Vet & Anim Sci, Copenhagen, Denmark
基金
芬兰科学院;
关键词
broiler; development; excretion; mineral; nanonutrition; OXIDE NANOPARTICLES; COPPER NANOPARTICLES; BROILER-CHICKENS; IN-OVO; PERFORMANCE; SUPPLEMENTATION; SULFATE; PARAMETERS;
D O I
10.4314/sajas.v50i1.12
中图分类号
S8 [畜牧、 动物医学、狩猎、蚕、蜂];
学科分类号
0905 ;
摘要
The hypothesis was that owing to their high bioavailability, zinc oxide nanoparticles (NanoZnO) can effectively replace (Zn) salts and reduce Zn excretion with faeces. The objective of this study was to investigate the effects of NanoZnO on the development of chicken embryos, the growth of broiler chickens, and Zn excretion with faeces. At day 1 of incubation, 120 eggs were randomly divided between a control group (not injected) and groups injected with a hydrocolloid of NanoZnO in increasing concentrations (50, 100, 500 mg/L). At day 19 of incubation, no differences were observed in the bodyweight, but 100 and 500 mg/L affected liver and heart weights, indicating that high levels of NanoZnO may induce differential organ development. In the subsequent experiment, 308 chickens were randomly divided into six groups. The control diet was supplemented with 55 mg Zn/kg (standard level), the 0 group received no Zn supplement, and groups fed NanoZnO received 25%, 50%, 75%, and 100% of the standard level. The 100% replacement of ZnO with NanoZnO increased the chickens' bodyweight compared with the standard level of ZnO, but to the same level as the diet without ZnO supplementation. Furthermore, NanoZnO did not reduce the content of Zn in faeces, which was only significantly lower in the group without ZnO supplementation in comparison with other groups. The results indicate that the replacement of ZnO with NanoZnO had no negative effects on chicken growth. Compared with ZnO, NanoZnO did not reduce Zn excretion with faeces.
引用
收藏
页码:109 / 119
页数:11
相关论文
共 32 条
[11]   Role of Nanoparticles in Animal and Poultry Nutrition: Modes of Action and Applications in Formulating Feed Additives and Food Processing [J].
Gopi, Marappan ;
Pearlin, Beulah ;
Kumar, Ramasamy Dhinesh ;
Shanmathy, Muthuvel ;
Prabakar, Govindasamy .
INTERNATIONAL JOURNAL OF PHARMACOLOGY, 2017, 13 (07) :724-731
[12]  
Hassan A.M., 2018, International Journal of Environment, Agriculture and Biotechnology, V3, P239074, DOI [10.22161/ijeab/3.2.6, DOI 10.22161/IJEAB/3.2.6]
[13]   Effect of in ovo supplementation of nano forms of zinc, copper, and selenium on post-hatch performance of broiler chicken [J].
Joshua, P. Patric ;
Valli, C. ;
Balakrishnan, V. .
VETERINARY WORLD, 2016, 9 (03) :287-294
[14]  
Khah MM, 2015, INDIAN J ANIM SCI, V85, P287
[15]   APPLICATION OF THE CHICKEN-EMBRYO IN TESTING FOR EMBRYOTOXICITY - THIURAMS [J].
KORHONEN, A ;
HEMMINKI, K ;
VAINIO, H .
SCANDINAVIAN JOURNAL OF WORK ENVIRONMENT & HEALTH, 1982, 8 (01) :63-69
[16]  
Lina T., 2009, CHIN AGR SCI B, V2, P318
[17]   Survival and development of embryos of Gallus gallus domesticus treated with inorganic bromide [J].
Lucht, H. L. ;
Casey, N. H. ;
Sawosz, E. .
SOUTH AFRICAN JOURNAL OF ANIMAL SCIENCE, 2018, 48 (03) :583-589
[18]  
Mishra Akash, 2014, Indian Journal of Animal Nutrition, V31, P384
[19]   Comparative effects of zinc-nano complexes, zinc-sulphate and zinc-methionine on performance in broiler chickens [J].
Mohammadi, V. ;
Ghazanfari, S. ;
Mohammadi-Sangcheshmeh, A. ;
Nazaran, M. H. .
BRITISH POULTRY SCIENCE, 2015, 56 (04) :486-493
[20]   Effect of copper nanoparticles administered in ovo on the activity of proliferating cells and on the resistance of femoral bones in broiler chickens [J].
Mroczek-Sosnowska, Natalia ;
Lukasiewicz, Monika ;
Adamek, Dobrochna ;
Kamaszewski, Maciej ;
Niemiec, Jan ;
Wnuk-Gnich, Agnieszka ;
Scott, Abdullah ;
Chwalibog, Andre ;
Sawosz, Ewa .
ARCHIVES OF ANIMAL NUTRITION, 2017, 71 (04) :327-332