Effects of silybin on triptorelin-induced bone metabolic abnormalities in prostate cancer revealed based on TMT-based proteomics
Jianhui Li, Xuejiao Lv, Ying Jiang

TL;DR
This study explores how silybin may help counteract bone metabolism issues caused by triptorelin in prostate cancer cells.
Contribution
The study identifies silybin's potential to modulate bone metabolism abnormalities via the IL-17 signaling pathway in prostate cancer cells.
Findings
Silybin and triptorelin combination significantly inhibited LNCaP cell proliferation, migration, and invasion.
Proteomics revealed 524 differentially expressed proteins in the combination treatment group compared to controls.
Silybin may modulate bone metabolism abnormalities via the IL-17 signaling pathway and five key proteins.
Abstract
The aim of this study was to investigate the mechanism of action of SB on TRP-induced abnormalities of bone metabolism in LNCaP cells. The effects of different concentrations of SB and TRP alone and in combination on the proliferation of LNCaP cells were examined by CCK-8 assay, and the half maximal inhibitory concentration were screened for the subsequent experiments. Transwell migration and invasion assays were used to further investigate the effects of SB and TRP alone and in combination on the migration and invasion ability of LNCaP cells. Based on Tandem Mass Tag (TMT) labeling and liquid chromatography-tandem mass spectrometry (LC-MS/MS) technology, the differentially expressed proteins (DEPs) of LNCaP cells in the control group, SB group, TRP group and combination group were quantified. Bioinformatics technology was used to analyze the DEPs of LNCaP cells in each group. At last,…
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Taxonomy
TopicsSilymarin and Mushroom Poisoning · Bone health and treatments · Alkaline Phosphatase Research Studies
