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Quantitative Analysis of Autophagy using Advanced 3D Fluorescence Microscopy
Published on: May 3, 2013
Calotropis procera extract inhibits prostate cancer through regulation of autophagy
Palak Singh1, Bodhana Dhole1, Jaganmoy Choudhury1
1Department of Reproductive Biology, All India Institute of Medical Sciences, New Delhi, India.
Abstract:
Current treatment options available for prostate cancer (PCa) patients have many adverse side effects and hence, new alternative therapies need to be explored. Anticancer potential of various phytochemicals derived from Calotropis procera has been studied in many cancers but no study has investigated the effect of leaf extract of C. procera on PCa cells. Hence, we investigated the effect of C. procera leaf extract (CPE) on cellular properties of androgen-independent PC-3 and androgen-sensitive 22Rv1 cells. A hydroalcoholic extract of C. procera was prepared and MTT assay was performed to study the effect of CPE on viability of PCa cells. The effect of CPE on cell division ability, migration capability and reactive oxygen species (ROS) production was studied using colony formation assay, wound-healing assay and 2',7'-dichlorodihydrofluorescein diacetate assay, respectively. Caspase activity assay and LDH assay were performed to study the involvement of apoptosis and necrosis in CPE-mediated cell death. Protein levels of cell cycle, antioxidant, autophagy and apoptosis markers were measured by western blot. The composition of CPE was identified using untargeted LC-MS analysis. Results showed that CPE decreased the viability of both the PCa cells, PC-3 and 22Rv1, in a dose- and time-dependent manner. Also, CPE significantly inhibited the colony-forming ability, migration and endogenous ROS production in both the cell lines. Furthermore, CPE significantly decreased NF-κB protein levels and increased the protein levels of the cell cycle inhibitor p27. A significant increase in expression of autophagy markers was observed in CPE-treated PC-3 cells while autophagy markers were downregulated in 22Rv1 cells after CPE exposure. Hence, it can be concluded that CPE inhibits PCa cell viability possibly by regulating the autophagy pathway and/or altering the ROS levels. Thus, CPE can be explored as a possible alternative therapeutic agent for PCa.
Insights
Calotropis procera extract (CPE) shows anticancer effects against prostate cancer (PCa) cells by reducing viability and migration. This natural compound may offer a new therapeutic avenue for PCa treatment.
Area of Science:
- Phytochemistry
- Cancer Biology
- Pharmacology
Background:
- Current prostate cancer (PCa) treatments have significant adverse effects.
- The anticancer potential of Calotropis procera (C. procera) is understudied in PCa.
Purpose of the Study:
- To investigate the effect of C. procera leaf extract (CPE) on androgen-independent (PC-3) and androgen-sensitive (22Rv1) prostate cancer cells.
Main Methods:
- Hydroalcoholic extraction of C. procera leaves.
- MTT assay for cell viability.
- Colony formation and wound-healing assays for cell division and migration.
- ROS, caspase, and LDH assays for oxidative stress and cell death.
- Western blot for protein markers.
- LC-MS for phytochemical composition.
Main Results:
- CPE reduced viability, colony formation, and migration in both PC-3 and 22Rv1 cells.
- CPE decreased reactive oxygen species (ROS) and NF-κB levels, while increasing p27.
- Autophagy marker expression varied between cell lines (upregulated in PC-3, downregulated in 22Rv1).
Conclusions:
- CPE exhibits anticancer properties against prostate cancer cells.
- CPE may exert its effects by modulating autophagy and ROS levels.
- CPE presents potential as an alternative therapeutic agent for PCa.
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