Molecular pathogenesis of pancreatic ductal adenocarcinoma

2016 ◽  
Vol 22 (6) ◽  
pp. 226-235
Author(s):  
Sangeetha N. Kalimuthu ◽  
Faiyaz Notta
Pathology ◽  
2003 ◽  
Vol 35 (1) ◽  
pp. 14-24 ◽  
Author(s):  
Andrew V. Biankin ◽  
James G. Kench ◽  
Floriaan P. Dijkman ◽  
Sandra A. Biankin ◽  
Susan M. Henshall

Pathology ◽  
2003 ◽  
Vol 35 (1) ◽  
pp. 14-24 ◽  
Author(s):  
Andrew V. Biankin ◽  
James G. Kench ◽  
Floriaan P. Dijkman ◽  
Sandra A. Biankin ◽  
Susan M. Henshall

2018 ◽  
Vol 109 (6) ◽  
pp. 2013-2026 ◽  
Author(s):  
Tetsuya Idichi ◽  
Naohiko Seki ◽  
Hiroshi Kurahara ◽  
Haruhi Fukuhisa ◽  
Hiroko Toda ◽  
...  

Cancers ◽  
2020 ◽  
Vol 12 (10) ◽  
pp. 2731
Author(s):  
Takako Tanaka ◽  
Reona Okada ◽  
Yuto Hozaka ◽  
Masumi Wada ◽  
Shogo Moriya ◽  
...  

Pancreatic ductal adenocarcinoma (PDAC) is one of the most aggressive types of cancer, and its prognosis is abysmal; only 25% of patients survive one year, and 5% live for five years. MicroRNA (miRNA) signature analysis of PDAC revealed that both strands of pre-miR-30c (miR-30c-5p, guide strand; miR-30c-2-3p, passenger strand) were significantly downregulated, suggesting they function as tumor-suppressors in PDAC cells. Ectopic expression assays demonstrated that these miRNAs attenuated the aggressiveness of PDAC cells, e.g., cell proliferation, migration, and invasiveness. Through a combination of in silico analyses and gene expression data, we identified 216 genes as putative oncogenic targets of miR-30c-5p and miR-30c-2-3p regulation in PDAC cells. Among these, the expression of 18 genes significantly predicted the 5-year survival rates of PDAC patients (p < 0.01). Importantly, the expression levels of 10 genes (YWHAZ, F3, TMOD3, NFE2L3, ENDOD1, ITGA3, RRAS, PRSS23, TOP2A, and LRRFIP1) were found to be independent prognostic factors for patient survival (p < 0.01). We focused on TOP2A (DNA Topoisomerase II Alpha) and investigated its potential as a therapeutic target for PDAC. The overexpression of TOP2A and its transcriptional activators (SP1 and HMGB2) was detected in PDAC clinical specimens. Moreover, the knockdown of TOP2A enhanced the sensitivity of PDAC cells to anticancer drugs. Our analyses of the PDAC miRNA signature and tumor-suppressive miRNAs provide important insights into the molecular pathogenesis of PDAC.


2001 ◽  
Vol 10 (1-2) ◽  
pp. 1-23 ◽  
Author(s):  
Conor J Magee ◽  
William Greenhalf ◽  
Nathan Howes ◽  
Paula Ghaneh ◽  
John P Neoptolemos

2020 ◽  
Vol 21 (18) ◽  
pp. 6459
Author(s):  
Hiroki Shimomura ◽  
Reona Okada ◽  
Takako Tanaka ◽  
Yuto Hozaka ◽  
Masumi Wada ◽  
...  

Our recent studies have implicated some passenger strands of miRNAs in the molecular pathogenesis of human cancers. Analysis of the microRNA (miRNA) expression signature in pancreatic ductal adenocarcinoma (PDAC) has shown that levels of miR-30a-3p, the passenger strand derived from pre-mir-30a, are significantly downregulated in PDAC tissues. This study aimed to identify the oncogenes closely involved in PDAC molecular pathogenesis under the regulation of miR-30a-3p. Ectopic expression assays showed that miR-30a-3p expression inhibited the aggressiveness of the PDAC cells, suggesting that miR-30a-3p acts as a tumor-suppressive miRNA in PDAC cells. We further identified 102 putative targets of miR-30a-3p regulation in PDAC cells by combining in silico analysis with gene expression data. Of these, ten genes (EPS8, HMGA2, ENDOD1, SLC39A10, TGM2, MGLL, SERPINE1, ITGA2, DTL, and UACA) were independent prognostic factors in multivariate analysis of survival of patients with PDAC (p < 0.01). We also investigated the oncogenic function of the integrin ITGA2 in PDAC cell lines. The integrin family comprises cell adhesion molecules expressed as heterodimeric, transmembrane proteins on the surface of various cells. Overexpression of ITGA2/ITGB1 (an ITGA2 binding partner) was detected in the PDAC clinical specimens. The knockdown of ITGA2 expression attenuated the malignant phenotypes of the PDAC cells. Together, results from these microRNA-based approaches can accelerate our understanding of PDAC molecular pathogenesis.


2000 ◽  
Vol 15 (11) ◽  
pp. 1333-1338 ◽  
Author(s):  
Koji Uno ◽  
Takeshi Azuma ◽  
Masatsugu Nakajima ◽  
Kenjiro Yasuda ◽  
Takanobu Hayakumo ◽  
...  

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