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Recently, a revolution in nanotechnology has pervaded all fields related to animal science. This book collection focuses on the potential applications of nanotechnology in the field of animal science, particularly livestock production and medication. The studies/reviews published in this book show the preparation protocols and physiochemical and biological properties of the innovated nanoparticles, designated for different purposes. This is in line with the potential hazards of these materials. The book collection shows that nanoparticles and nanoparticle-based systems can be developed to serve different purposes in the field of animal production and veterinary, such as the management of reproduction and assisted reproductive techniques, rapid and robust disease diagnosis and treatment, drug delivery, and animal nutrition.
Technology: general issues --- artificial-insemination --- GnRH --- nanotechnology --- ovulation --- rabbit --- endometritis --- cell receptors --- signaling pathways --- PAMP --- biomolecules --- cytokines --- nanotherapy --- dairy cow --- nanosystem --- biofilm --- mastitis pathogens --- bovine mastitis --- silver nanoparticles --- copper nanoparticles --- silver-copper complex --- nanominerals --- manufacturing --- bioavailability --- hazards --- health --- livestock --- nano-delivery system --- reproductive management --- bio stimulation --- nutrition --- hormones --- antibiotics --- reproductive diseases --- biotechnology --- toxicity --- aquaculture --- poultry --- antibacterial --- antibiotic --- mechanisms --- reactive oxygen species --- zinc oxide nanoparticles --- zeolite --- nano-zeolite --- in vitro gas production --- digestibility --- goat --- methane emission --- clay minerals --- Spirulina maxima pectin --- nanoparticles --- porcine --- embryos --- development --- prolactin --- sodium alginate --- egg production --- qPCR --- chickens --- Staphylococcus pseudintermedius --- wound infection --- antimicrobial resistance --- alternative antimicrobial agent --- scar reduction --- Salmonella --- antimicrobial agents --- virulence genes --- resistance genes --- expression --- antioxidant --- cell internalization --- chitosan nanoparticles --- everted intestine --- lipoic acid --- Moringa --- encapsulation --- reproduction --- milk --- fatty acid --- immunoglobulins --- nanodelivery system --- GPG --- estrous synchronization --- blood flow --- ovary
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Wood surface attributes can be established by examining its several different physical or chemical properties. Differences in the wood surfaces occur between the manufacturing and post-treatment processes as well. Understanding how their unique anisotropic molecular organization, chemical linkages, branching, and other molecular features govern micro- and macroscale accessibility is essential for coating and complex modification processes. It is therefore important for scientific as well as practical reasons to qualify and quantify the effects of wood surface treatments and modifications. Challenges still exist to fully understanding the effect of the numerous applied chemicals and the wide range of treatment processes on wood surfaces.
broiler --- thermal manipulation --- antioxidant --- heat stress --- cold stress --- Bovine Viral Diarrhea Virus --- RNA-Seq --- Transcriptome analysis --- Holstein cattle --- sheep --- intersex --- whole-genome resequencing --- copy number variation --- forming mechanism --- dairy cattle diseases --- innate immune system --- metabolic stress --- microbiome --- mastitis --- bovine mammary epithelial cells --- inflammatory cytokines --- NF-κB signaling --- PRRs --- TLRs --- Piemontese breed --- arthrogryposis --- macroglossia --- genetic model --- TLR3 --- TLR4 --- TLR7 --- foals --- immunostimulation --- gene expression --- bovine mastitis --- JAK-STAT pathway --- JAK2 --- STATs --- SOCS3 --- immunity --- milk production --- DNA methylation --- high-fat diet --- rabbits --- next generation sequencing --- transcriptomics --- bioinformatics --- genome editing --- disease resistance --- livestock --- dairy cattle --- teat-end hyperkeratosis --- udder health --- somatic cell --- genetic correlation --- selection response --- Holstein Friesian cattle --- mastitis resistance --- candidate genes --- SNP selection --- next-generation sequencing
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