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Silymarin inhibited DU145 cells by activating SLIT2 protein and suppressing expression of CXCR4
Sedat Kacar1, Nuriye Ezgi Bektur Aykanat2, Varol Sahinturk2
1Department of Histology and Embryology, Faculty of Medicine, Eskisehir Osmangazi University, Eskisehir, Turkey. skacar@ogu.edu.tr.
Abstract:
Among other cancers, prostate cancer is globally the second most rampant one with the incidence of 29.4% among men. SLIT2/ROBO1 signaling is very crucial pathway causally implicated in many cancers and reported to inhibit a variety of cancer cell types. CXCR4 is a chemokine receptor implicated in cancer progression. Silymarin is a phytochemical, of which anti-carcinogenic activity was suggested in various cancers, including prostate cancer. However, there are no studies examining the effect of silymarin on SLIT2-Robo1-CXCR4 axis. Herein, our goal is to explore cytotoxic and morphological effects of silymarin on DU145 cells and to reveal its role in Slit2/Robo and CXCR1 pathway. First, 24, 48 and 72 h-long cytotoxicity tests were performed for dose analysis of silymarin, followed H-E stain for morphological evaluation with varying doses of silymarin. Afterward, western blot and immunocytochemistry analyses were carried out for SLIT2, ROBO1 and CXCR4 proteins. According to MTT analysis, IC50 concentrations for silymarin were 315, 126 and 70 µM against DU145 cells for 24, 48 and 72 h treatments. In H-E, several apoptotic hallmarks, including, condensed, kidney-shaped and eccentric nuclei, membrane blebbings and apoptotic body formations were observed. Silymarin increased the expressions of SLIT2 and ROBO1 while decreased CXCR4 when compared to control group in immunocytochemistry and Western blot. To summarize, silymarin inhibited DU145 cells dose-dependently by activating SLIT2 protein and inhibiting expression of CXCR4. This study is the first examining the interplay between Slit2-Robo1-CXCR4 proteins and silymarin in DU145 cells. We believe that our study will provide new insights for future studies.
Insights
Silymarin, a plant compound, effectively inhibits prostate cancer DU145 cells by activating SLIT2/ROBO1 signaling and reducing CXCR4 expression, showing promising anti-cancer effects.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Prostate cancer is a leading global cancer in men.
- The SLIT2/ROBO1 pathway and CXCR4 receptor are implicated in cancer progression.
- Silymarin is a phytochemical with suggested anti-cancer properties.
Purpose of the Study:
- To investigate the cytotoxic and morphological effects of silymarin on DU145 prostate cancer cells.
- To determine silymarin's role in the SLIT2-Robo1-CXCR4 pathway.
- To explore silymarin as a potential therapeutic agent for prostate cancer.
Main Methods:
- Cytotoxicity assays (MTT) were performed at 24, 48, and 72 hours.
- Hematoxylin and Eosin (H&E) staining assessed morphological changes.
- Western blot and immunocytochemistry analyzed protein expression of SLIT2, ROBO1, and CXCR4.
Main Results:
- Silymarin demonstrated dose-dependent cytotoxicity against DU145 cells with IC50 values decreasing over time.
- Morphological analysis revealed apoptotic features in treated cells.
- Silymarin increased SLIT2 and ROBO1 expression while decreasing CXCR4 expression.
Conclusions:
- Silymarin exhibits dose-dependent cytotoxic effects on DU145 prostate cancer cells.
- Silymarin modulates the SLIT2-Robo1-CXCR4 pathway by upregulating SLIT2/ROBO1 and downregulating CXCR4.
- This study provides novel insights into silymarin's anti-cancer mechanisms in prostate cancer.
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