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  4. Simvastatin Attenuated Tumor Growth in Different Pancreatic Tumor Animal Models
 
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Simvastatin Attenuated Tumor Growth in Different Pancreatic Tumor Animal Models

Journal
Pharmaceuticals (Basel, Switzerland)
Journal Volume
15
Journal Issue
11
Pages
1408
Date Issued
2022-11-14
Author(s)
Chen, Chao-Yi
Yang, Yi-Feng
Wang, Paul C
Shan, Liang
Lin, Stephen
Chen, Po-Jung
Chen, Yi-Jung
Chiang, Han-Sun
JAW-TOWN LIN  
Hung, Chi-Feng
Liang, Yao-Jen
DOI
10.3390/ph15111408
URI
https://www.scopus.com/record/display.uri?eid=2-s2.0-85149499540&doi=10.3390%2fph15111408&origin=inward&txGid=28ad5f56f950a5ba0718c52fe45e0354
https://scholars.lib.ntu.edu.tw/handle/123456789/635315
URL
https://api.elsevier.com/content/abstract/scopus_id/85149499540
Abstract
Newly diagnosed pancreatic cancer increases year by year, while the prognosis of pancreatic cancer has not been very good. Statin drugs were found to have protective effects against a variety of cancers, but their association with pancreatic cancer remains to be clarified. This study used different pancreatic cancer cell lines and in different animal models to confirm the relationship between simvastatin and pancreatic cancer. Flow cytometry and luciferase-based bioluminescent images were used to investigate the cell cycle and tumor growth changes under simvastatin treatment. Simvastatin decreased the MIA PaCa-2 cells, PANC-1 cells, and BxPC-3 cell viability significantly and may arrest the cell cycle in the G0 phase. During in vivo study, subcutaneously implanted simvastatin pre-treated pancreatic cancer cells and intraperitoneally treated simvastatin continuously demonstrated a slower tumor growth rate and decreased the tumor/body weight ratio significantly. In intravenous implant models, implanted simvastatin-pre-treated BxPC-3 cells and cells treated along with simvastatin significantly decreased the tumor growth curve. Implanting the simvastatin-pre-treated pancreatic cells in the subcutaneous model showed better growth inhibition than the intravenous model. These results suggest simvastatin treatment may relate to different signaling pathways in local growth and metastasis. Pancreatic cancer cells presented different growth patterns in different animal-induced models, which could be important for clinical reference when it comes to the relationship of long-term statin use and pancreatic cancer.
Subjects
pancreatic cancer; simvastatin; statin
Type
journal article

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