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An In Vitro Protocol for Evaluating MicroRNA Levels, Functions, and Associated Target Genes in Tumor Cells
Published on: May 21, 2019
MicroRNA-138-5p regulates pancreatic cancer cell growth through targeting FOXC1
Chao Yu1, Min Wang, Zhipeng Li
1Department of Hepatobiliary Surgery, Affiliated Hospital of Guiyang Medical College, Guiyang, Guizhou Province, 550004, China.
Purpose:
The prognosis of pancreatic cancer ranks among the worst of all cancer types, which is primarily due to the fact that during the past decades little progress has been made in its diagnosis and treatment. Here, we set out to investigate the role of microRNA 138 (miR-138-5p) in the regulation of pancreatic cancer cell growth and to assess its role as putative therapeutic target.
Methods:
qRT-PCR was used to examine the expression of miR-138-5p in 8 pancreatic cancer cell lines and 18 primary human pancreatic cancer samples. A lentivirual vector containing miR-138-5p mimics (lv-miR-138-5p) was used to exogenously over-express miR-138-5p in the pancreatic cancer cells lines Capan-2 and PANC-1. The effect of this over-expression on cell proliferation was examined using an in vitro propidium iodide fluorescence assay. Capan-2 cells exogenously over-expressing miR-138-5p were transplanted into nude mice to examine its in vivo effect on tumor growth. A predicted target of miR-138-5p (FOXC1) was first validated using a luciferase assay and, subsequently, down-regulated by siRNA to assess its effect on pancreatic cancer cell growth.
Results:
We found that miR-138-5p was markedly down-regulated in both pancreatic cancer cell lines and primary human pancreatic cancer samples, compared to a human pancreas ductal epithelial (HPDE) cell line and normal pancreatic tissues, respectively (P < 0.05). In addition, we found that in the pancreatic cancer cells lines Capan-2 and PANC-1 lentiviral transfection of miR-138-5p mimicked up-regulation of the endogenous expression of miR-138-5p and, concomitantly, inhibited cancer cell proliferation (P < 0.05). The exogenous over-expression of miR-138-5p also led to a significant inhibition of tumor formation in vivo. Using a luciferase assay, we found that miR-138-5p directly targets FOXC1. In conformity with this notion, we found that FOXC1 was down-regulated upon miR-138-5p over-expression in pancreatic cancer cells. Finally, we found that silencing of FOXC1 by siRNA had an inhibitory effect on pancreatic cancer cell growth.
Conclusions:
Our data indicate that miR-138-5p may play an important role in regulating pancreatic cancer cell growth, possibly through targeting FOXC1. Over-expression of miR-138-5p may serve as a novel approach for the treatment of patients with pancreatic cancer.
Insights
MicroRNA 138 (miR-138-5p) is down-regulated in pancreatic cancer. Restoring miR-138-5p levels inhibits cancer cell growth and tumor formation, suggesting its potential as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Pancreatic cancer has a poor prognosis due to limited diagnostic and therapeutic advancements.
- MicroRNAs (miRNAs) are emerging as critical regulators in various cancers.
Purpose of the Study:
- To investigate the role of microRNA 138 (miR-138-5p) in pancreatic cancer cell growth.
- To evaluate miR-138-5p as a potential therapeutic target for pancreatic cancer.
Main Methods:
- Quantitative reverse transcription-polymerase chain reaction (qRT-PCR) to assess miR-138-5p expression.
- Lentiviral vectors for exogenous miR-138-5p over-expression in pancreatic cancer cell lines.
- In vitro proliferation assays and in vivo tumor growth studies in nude mice.
- Luciferase assays and siRNA to validate and assess the role of FOXC1, a predicted target of miR-138-5p.
Main Results:
- miR-138-5p was significantly down-regulated in pancreatic cancer cell lines and primary tumors compared to normal tissues.
- Exogenous over-expression of miR-138-5p inhibited pancreatic cancer cell proliferation in vitro and tumor growth in vivo.
- miR-138-5p directly targets FOXC1, and its over-expression led to decreased FOXC1 levels.
- Silencing FOXC1 also inhibited pancreatic cancer cell growth.
Conclusions:
- miR-138-5p plays a crucial role in regulating pancreatic cancer cell growth, potentially by targeting FOXC1.
- Over-expression of miR-138-5p presents a novel therapeutic strategy for pancreatic cancer treatment.
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