ArticleJournal of animal science2024
In silico analysis of polyphenols modulate bovine PPARγ to increase milk fat synthesis in dairy cattle via the MAPK signaling pathways.
Article in Journal of animal science, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 13 papers.
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Who cites it
13 citing papers in PubMed.
- Ellagic acid in poultry nutrition: emerging roles in gut health, immunity, and sustainable production.Poultry science · 2026Review
- Milk-derived extracellular vesicles: nutritional significance, nano-delivery potential, and emerging therapeutic applications - an updated review.Food science of animal resources · 2026Review
- Paraprobiotics in Modern Broiler Production: Stability, Safety, and Multifunctional Benefits - a Comprehensive Review.Probiotics and antimicrobial proteins · 2026Review
- Mesenchymal stem cell-based therapeutic strategies for female infertility: current evidence and emerging targeting approaches.Biotechnology letters · 2026Review
- Nutrigenomic Potentials of Phytobiotics Against Heat Stress and Allied Afflictions in Livestock Species-An In Silico Supported Review.Food science & nutrition · 2026Review
- Postbiotics and Parabiotics: A Viable Health Promoting Alternative for Poultry Industry-A Comprehensive Review.Probiotics and antimicrobial proteins · 2026Review
- Comparative transcriptomics and computational drug discovery identify ASPM as a key oncogenic driver and therapeutic target in hepatocellular carcinoma.Frontiers in bioinformatics · 2026Article
- Identification of polyphenols as novel neuropilin-1 cendR pocket inhibitors to block SARS-CoV-2 entry and enhance variant resistance.PloS one · 2026Article
- Neuroprotetive potential of Taraxacum officinale leaf extract against cisplatin neuropathy via antioxidative modulation.Arquivos de neuro-psiquiatria · 2025Article
- Polyphenols and Alzheimer's Disease: A Review on Molecular and Therapeutic Insights With In Silico Support.Food science & nutrition · 2025Review
- Deciphering the differential impact of CDK4 mutations on abemaciclib binding in oral squamous cell carcinoma: a precision medicine approach.Irish journal of medical science · 2025Article
- Selective sweep and mammary transcriptomics identify breed-specific lactation drivers in East Friesian dairy sheep.Journal of animal science · 2025Article
- Microalgae: An Exciting Alternative Protein Source and Nutraceutical for the Poultry Sector.Food science of animal resources · 2025Review
Corrections and comments
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Authors and funding
8 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
This study investigates the potential phytochemicals that modulate bovine peroxisome proliferator-activated receptor gamma (PPARγ) and the mitogen-activated protein kinase (MAPK) pathways to enhance milk fat production in dairy animals. Bovine PPARγ, a key member of the nuclear hormone receptor superfamily, plays a vital role in regulating metabolic, cellular differentiation, apoptosis, and anti-inflammatory responses in livestock, while the MAPK pathway is contributory in cellular processes that impact milk fat synthesis. This approach involved an all-inclusive molecular docking analysis of 10,000 polyphenols to identify potential PPARγ ligands. From this extensive screening, top 10 compounds were selected that exhibited the highest binding affinities to bovine PPARγ. Particularly, curcumin sulfate, isoflavone, and quercetin emerged as the most promising candidates. These compounds demonstrated superior docking scores (-9.28 kcal/mol, -9.27 kcal/mol, and -7.31 kcal/mol, respectively) and lower RMSD values compared to the synthetic bovine PPARγ agonist, 2,4-thiazolidinedione (-4.12 kcal/mol), indicating a strong potential for modulating the receptor. Molecular dynamics simulations (MDS) further affirmed the stability of these polyphenols-bovine PPARγ complexes, suggesting their effective and sustained interactions. These polyphenols, known as fatty acid synthase inhibitors, are suggested to influence lipid metabolism pathways crucial to milk fat production, possibly through the downregulation of the MAPK pathway. The screened compounds showed favorable pharmacokinetic profiles, including nontoxicity, carcinogenicity, and high gastrointestinal absorption, positioning them as viable candidates for enhancing dairy cattle health and milk production. These findings may open new possibilities for the use of phytochemicals as feed additives in dairy animals, suggesting a novel approach to improve milk fat synthesis through the dual modulation of bovine PPARγ and MAPK pathways.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.