scholarly journals Investigation of the Impact of Cell Cycle Stage on Freeze Response Sensitivity of Androgen-Insensitive Prostate Cancer

2016 ◽  
Vol 15 (4) ◽  
pp. 609-617
Author(s):  
Kimberly L. Santucci ◽  
John M. Baust ◽  
Kristi K. Snyder ◽  
Robert G. Van Buskirk ◽  
John G. Baust
2018 ◽  
Vol 18 (2) ◽  
pp. 216-236 ◽  
Author(s):  
Ayman I. Elkady

Background: Prostate cancer-associated mortality is increasing at an alarming rate, which highlights the inevitability for unearthing novel agent for the management of this disease. Anethole, a major constituent of Foeniculum vulgare (fennel) essential oil, is widely used in folk medicine; it possesses anti-oxidant, antiinflammatory, anti-proliferative and tumoricidal potentialities. Objective: The current research was conducted to assess the impact of anethole on prostate cancer cell line, PC- 3, and to delineate the molecular mechanism of action. Methods: To achieve this aim, the growth-inhibitory effect of anethole was evaluated by MTT assay. Apoptotic death and cell cycle analyses were assessed by flow cytometry and alterations in gene expression were investigated by qPCR and Western blot analyses. Results: The observations indicated that anethole inhibited proliferation, clonal growth and migration of PC-3 cells. It also suppressed growth of PC-3 derived cancer stem cells (tumorspheres). Pro-apoptotic potential of anethole was accompanied by generation of ROS, permeabilization of the mitochondrial and lysosomal membranes, activation of caspase-3 and -9, DNA damage, PARP cleavage and induction of Bax/Bcl-2 protein ratio. Further, anethole induced G2/M phase arrest, downregulation of cyclins D1, CDK-4 and c-Myc proteins and upregulation of p21 and p27. Anethole suppressed nuclear localization of NF-κB protein and downregulated transcription of NF-κB-dependent genes. Conclusion: Overall, the above findings highlight the effectiveness of anethole as a potential candidate for prostate cancer therapy.


2020 ◽  
Author(s):  
Shuang Li ◽  
Yunlu Zhan ◽  
Yingwei Xie ◽  
Yonghui Wang ◽  
Yuexin Liu

Abstract Background The flavonol glycoside icariside Ⅱ (ICA II) has been shown to exhibit a range of anti-tumor properties. Herein we evaluated the impact of ICA II on the proliferation, motility, and autophagy activity of human prostate cancer cells, and we further evaluated the molecular mechanisms underlying these effects. Methods Herein, we treated DU145 human prostate cancer cells with a range of ICA II doses. We then evaluated the proliferative abilities of these cells via CCK-8 assay, whereas apoptosis and cell cycle status were assessed via flow cytometry. We further utilized wound healing and transwell assays to probe the impact of ICA II on migratory and invasive activities, while autophagy was assessed via laser confocal fluorescence microscopy. Western blotting was further utilized to measure LC3-II/I, Beclin-1, P70S6K, PI3K, AKT, mTOR, phospho-AKT, phospho-mTOR, and phospho-P70S6K levels, with RT-PCR being used to evaluate the expression of these same genes at the mRNA level. Results We found that ICA II was capable of mediating a dose- and time-dependent suppression of prostate cancer cell proliferative activity, while also causing these cells to enter a state of cell cycle arrest and apoptosis. We further determined that ICA II treatment was associated with significant impairment of prostate cancer cell migratory and invasive abilities, whereas autophagy was enhanced in treated cells relative to untreated controls. Levels of p-P70S6K, p-mTOR, p-AKT, and PI3K were all also decreased by ICA II. Conclusion Our results indicate that ICA II treatment is capable of suppressing human prostate tumor cell proliferation and disrupting migratory activity while enhancing autophagy through PI3K-AKT-mTOR signaling. As such, ICA II may be an ideal candidate drug for the treatment of prostate cancer.


2007 ◽  
Vol 177 (4S) ◽  
pp. 95-95
Author(s):  
Atreya Dash ◽  
Peng Lee ◽  
Qin Zhou ◽  
Aaron D. Berger ◽  
Jerome Jean-Gilles ◽  
...  

Diabetes ◽  
2019 ◽  
Vol 68 (Supplement 1) ◽  
pp. 1955-P
Author(s):  
TORU SHIGEOKA ◽  
TAKASHI NOMIYAMA ◽  
TAKAKO KAWANAMI ◽  
YURIKO HAMAGUCHI ◽  
TOMOKO TANAKA ◽  
...  

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