FAO AGRIS - International System for Agricultural Science and Technology

Zinc glycinate alleviates LPS-induced inflammation and intestinal barrier disruption in chicken embryos by regulating zinc homeostasis and TLR4/NF-κB pathway.

Xiao, Chuanpi | Comer, Luke | Pan, Xue | Everaert, Nadia | Schroyen, Martine | Song, Zhigang


Bibliographic information
Publisher
Elsevier BV
Other Subjects
Nf-kappa b; Saline solution/toxicity; Toxicology and mutagenesis; Lipopolysaccharides/toxicity; Agriculture & agronomie; Toll-like receptor 4/metabolism; Immune challenge; In ovo feeding; Saline solution; Zinc/toxicity; Sciences du vivant; Chicken embryos; Inflammation/veterinary; Glycine/analogs & derivatives; Nf-kappa b/genetics; Inflammation/chemically induced; Chickens/metabolism; Nf-kappa b/metabolism; Chick embryo; Toll-like receptor 4; General medicine; Agriculture & agronomy; Zinc glycinate; Environmental and occupational health
Language
English
License
open access, http://purl.org/coar/access_right/c_abf2, info:eu-repo/semantics/openAccess
ISBN
0-851851850
ISSN
38350216
Type
Journal Article; Journal Part; Journal Article; Journal Part; Journal Article; Journal Part; Journal Article; Journal Part
Source
Ecotoxicology and Environmental Safety, 272, 116111 (2024-03-01)

2024-04-24
2026-02-03
Dublin Core