Effects of dietary zinc oxide levels on the metabolism of zinc and copper in weaned pigs

Author:

Dalto Danyel Bueno1,Audet Isabelle1,Roy Caroline1,Novais Aliny Kétilim1,Deschêne Karine1,Goulet Katherine2,Matte J Jacques1,Lapointe Jérôme1

Affiliation:

1. Sherbrooke Research and Development Centre, Agriculture and Agri-Food Canada , Sherbrooke, Quebec , Canada J1M 0C8

2. Département de biologie, Université de Sherbrooke , Sherbrooke, Québec , Canada J1K 2R1

Abstract

AbstractThis study compared different dietary zinc oxide (ZnO) levels on zinc (Zn) and copper (Cu) metabolism in weaned pigs. One hundred twenty weaned piglets (7.96 ± 1.17 kg; 21 d of age) were used in a completely randomized 3 × 4 factorial design composed with three levels of dietary ZnO at 100 (100Zn), 1,000 (1,000Zn), or 3,000 mg/kg (3,000Zn) and four ages at slaughter at 21 (day 21), 23 (day 23), 35 (day 35), and 42 d (day 42). Dietary Cu levels were constant at 130 mg/kg. Serum, jejunum, liver, and kidney levels of Zn and Cu as well as mRNA abundance of genes related to Zn and Cu metabolism were analyzed. Zinc levels were greatest in 3,000Zn piglets from day 35 in all tissues (P ≤ 0.01). In 3,000Zn piglets, mRNA expression of ZIP4 was reduced in jejunum whereas ZnT1 and MT3 were stimulated in jejunum and liver and MT1 in kidney (P ≤ 0.04) from day 35. Copper levels were greatest in jejunum (P = 0.06) and kidney (P ≤ 0.01; days 35 and 42 only) and lowest in liver and serum (P ≤ 0.01) of 3,000Zn piglets. In conclusion, the treatment containing 3,000 mg ZnO/kg triggered Zn homeostatic mechanisms in weaned pigs and impaired Cu metabolism through high enterocyte and kidney Cu sequestration.

Funder

Swine Innovation Porc

Centre de Recherche en Sciences Animales de Deschambault

Agri-Marché, and Agriculture and Agri-Food Canada

Publisher

Oxford University Press (OUP)

Subject

Genetics,Animal Science and Zoology,General Medicine,Food Science

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