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◆ Toxins2026-08-08

S-Methylmethionine Attenuates Aflatoxin B1-Induced Mammary Epithelial Injury: Functional Assessment and Exploratory ATAC-Seq/RNA-Seq Analysis.

Jin Huang, Chenxi Ling, Yuxuan Li, Yake Wang, Liyu Yang, Qiuliang Xu, Hongyu Deng, Congcong Li

原始摘要(英文原文)· Original abstract
Aflatoxin 1. (AFB1) threatens animal health and dairy safety, but mammary-protective interventions remain poorly defined. We evaluated whether S-methylmethionine (SMM; commonly known as vitamin U) attenuates AFB1-associated injury using MAC-T bovine mammary epithelial cells, a mouse mammary model, biochemical assays, RT-qPCR, Western blotting, H&E staining, and exploratory ATAC-seq/RNA-seq analysis. Under 4 μg/mL (approximately 12.81 μM) AFB1 challenge, 1 mM SMM increased MAC-T cell viability by 14.1% (Tukey-adjusted p = 0.0387) and reduced LDH release by 38.2% (p = 0.000236) relative to the AFB1-only group. SMM also shifted selected redox markers toward a less injured state. Nrf2 protein abundance differed between the AF and AU groups (p = 0.049), although pathway activation and causal dependence were not tested. In mice, SMM co-treatment reduced serum ALT by 38.5% and mammary MDA by 56.4%, while increasing mammary T-SOD by 85.4% and GSH-Px by 100.9% relative to AF (p < 0.05 for the reported pairwise comparisons); inflammatory transcripts changed non-uniformly. The AU-versus-AF integration yielded four exploratory candidate genes (TNFSF10, NBEAL1, ENSBTAG00000054644, and ENSBTAG00000052086), and the selected RT-qPCR results were directionally consistent with the RNA-seq data. Thus, SMM attenuated selected AFB1-associated injury features under the tested conditions, while the underlying mechanism remains unresolved.
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S-Methylmethionine Attenuates Aflatoxin B1-Induced Mammary Epithelial Injury: Functional Assessment and Exploratory ATAC-Seq/RNA-Seq Analysis. — 科研速览 Science Skim