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This study investigated the detoxification of zearalenone (ZEN) by the Tibetan Plateau yeast Hannaella zeae via untargeted LC-MS/MS-based metabolomics. H. zeae was cultured in NYDB medium with ZEN supplementation, and samples were harvested after 36 h of incubation for metabolomic analysis. The c...

2026-08-20 | MTBLS15233 | MetaboLights

The proteomic and metabolomic differences in mice fed ε-polylysine were detected by high-throughput sequencing and screening. The effects of ε-polylysine on the proteome and metabolomics of C57 BL/6J mice were studied. DIA proteome sequencing and liquid chromatography-mass spectrometry (LC-MS) we...

2025-04-14 | MTBLS4273 | MetaboLights

Introduction: Drug abuse is becoming a global public health crisis. According to the United Nations, the number of drug users worldwide has increased dramatically over the past decade, with a surge in the number of drug abusers. The problem was exacerbated by the expanding market for illicit drug...

2025-05-12 | MTBLS12337 | MetaboLights

Background

Bioconversion of wood into bioproducts and biofuels is hindered by the recalcitrance of woody raw material to bioprocesses such as enzymatic saccharification. Targeted modification of the chemical composition of the feedstock can improve saccharification but this gain is often abr...
2021-10-06 | MTBLS628 | MetaboLights
Secretory Carrier-Associated Membrane Proteins (SCAMPs) are highly conserved proteins that are involved in membrane trafficking. An integrated approach was taken to elucidate function of SCAMPs in wood formation of Populus trees. The metabolomics analyses were performed in woody tissues of transgeni...
2018-01-08 | MTBLS478 | MetaboLights
Integrated small RNA, mRNA and protein omics reveal a function of microRNAs orchestrating metabolic maturation of the developing human heart [RNAseq]
Integrated small RNA, mRNA and protein omics reveal a function of microRNAs orchestrating metabolic maturation of the developing human heart [smallRNAseq]
Integrated small RNA, mRNA and protein omics reveal a function of microRNAs orchestrating metabolic maturation of the developing human heart
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