| Literature DB >> 32133215 |
Abstract
Despite extensive research efforts on diagnosis and treatment, pancreatic ductal adenocarcinoma (PDAC) remains a devastating disease and the third leading cause of cancer-related death in the United States. Resistance to current therapeutic approaches is a major reason for the poor survival of pancreatic patients. In order to overcome this major challenge and improve patient outcomes, we are in desperate need of novel therapeutic approaches. PDAC chemoresistance mechanisms are complex and multifaceted. Novel therapeutics must be equipped to deal with this challenge. microRNAs (miRNAs) have emerged as strong candidates to fill this role due to their multitargeted function. miRNAs have been shown to have important roles in pancreatic cancer resistance. In this review, we summarize the recent advancement in miRNA research related to PDAC therapeutic resistance mechanisms and the potential of miRNAs as therapeutic agents for future clinical management of PDAC.Entities:
Keywords: Chemotherapy; Gemcitabine; Pancreatic ductal adenocarcinoma; Resistance; miRNA
Year: 2019 PMID: 32133215 PMCID: PMC7055707 DOI: 10.1097/jp9.0000000000000029
Source DB: PubMed Journal: J Pancreatol ISSN: 2577-3577
miRNAs with roles in chemoresistance.
| miRNAs that promote chemoresistance | miRNAs that promote chemosensitivity | ||
|---|---|---|---|
| miRNA | Target gene | miRNA | Target gene |
| miR-21[ | PTEN,[ | miR-34[ | Notch,[ |
| miR-320a[ | PDCD4[ | miR-205[ | ZEB1[ |
| miR-221–3p[ | RB1[ | miR-200[ | ZEB1[ |
| miR-106a[ | TP53INP1[ | miR-506[ | SPHK1,[ |
| miR-155[ | TP53INP1[ | miR-15a[ | WNT3A,[ |
Chk1 = checkpoint kinase 1, miRNA = microRNA.
Figure 1.5-FU-miR-15a combined the tumor suppressive effects of miR-15a with those of 5-FU. 5-FU-miR-15a is incorporated into the RISC complex resulting in suppression of miR-15a’s target genes, Wee1, Chk1, BMI-1, and Yap-1. Suppression of these targets induces cell cycle arrest, apoptosis, and suppresses EMT. When the 5-FU-mIR-15a breaks down 5-FU is released which will lead to DNA damage and cell death. In addition the modification of the miRNA may have some novel effects resulting from the unique modification as well as its breakdown products. Chk1 = checkpoint kinase 1, EMT = epithelial-to-mesenchymal transition, 5-FU = 5-fluorouracil, miRNA = microRNA, RISC = RNA-induced silencing complex.