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Updated: May 6, 2026

Through the Looking Glass: Time-lapse Microscopy and Longitudinal Tracking of Single Cells to Study Anti-cancer Therapeutics
Published on: May 14, 2016
Human cancer cell line microRNAs associated with in vitro sensitivity to paclitaxel
Ning Chen1, Hye Sook Chon, Yin Xiong
1Department of Women's Oncology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL 33612, USA.
Abstract:
Paclitaxel is a mainstay of treatment for many solid tumors, and frequently, clinical outcome is influenced by paclitaxel sensitivity. Despite this, our understanding of the molecular basis of paclitaxel response is incomplete. Recently, it has been shown that microRNAs (miRNAs) influence messenger RNA (mRNA) transcriptional control and can contribute to human carcinogenesis. In the present study, our objective was to identify miRNAs associated with cancer cell line response to paclitaxel and to evaluate these miRNAs as therapeutic targets to increase paclitaxel sensitivity. We measured the expression of 335 unique miRNAs in 40 human cancer cell lines selected from the NCI panel. We then integrated miRNA expression data with publicly available paclitaxel-sensitivity (GI₅₀) data for each of the 40 cell lines to identify miRNAs associated with paclitaxel sensitivity. Ovarian cancer cell lines with differential miRNA expression and paclitaxel sensitivity were transiently transfected with miRNA precursors and inhibitors, and the effects on in vitro cell paclitaxel sensitivity were evaluated. Pearson's correlation identified 2 miRNAs (miR-367 and miR-30a-5p) associated with the NCI40 cell line in vitro paclitaxel response (P<0.0003). Ovarian cancer cells were selected based on the association between paclitaxel sensitivity and miR-367/miR-30a-5p expression. Overexpression of miR-367 in the paclitaxel-sensitive cells [PA1; IC₅₀, 1.69 nM, high miR-367 (2.997), low miR-30a-5p (-0.323)] further increased paclitaxel sensitivity, whereas miR-367 depletion decreased paclitaxel sensitivity. In contrast, overexpression and depletion of miR-30a-5p in the paclitaxel-resistant cells [OVCAR4; IC₅₀, 17.8 nM, low miR-367 (-0.640), high miR-30a-5p (3.270)] decreased and increased paclitaxel sensitivity, respectively. We identified and successfully targeted miRNAs associated with human cancer cell line response to paclitaxel. Our strategy of integrating in vitro miRNA expression and drug sensitivity data may not only aid in the characterization of determinants of drug response but also in the identification of novel therapeutic targets to increase activity of existing therapeutics.
Insights
Researchers identified two microRNAs (miRNAs), miR-367 and miR-30a-5p, linked to paclitaxel sensitivity in cancer cells. Targeting these miRNAs could enhance paclitaxel effectiveness for solid tumors.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- Paclitaxel is a crucial chemotherapy for solid tumors, but patient response varies significantly.
- The molecular mechanisms underlying paclitaxel sensitivity remain incompletely understood.
- MicroRNAs (miRNAs) are key regulators of gene expression and implicated in cancer development.
Purpose of the Study:
- To identify specific miRNAs associated with cancer cell line sensitivity to paclitaxel.
- To investigate the potential of these identified miRNAs as therapeutic targets to improve paclitaxel efficacy.
Main Methods:
- Measured expression of 335 miRNAs across 40 NCI human cancer cell lines.
- Integrated miRNA expression data with paclitaxel sensitivity (GI50) data.
- Performed transient transfections with miRNA precursors and inhibitors in ovarian cancer cell lines.
Main Results:
- Identified miR-367 and miR-30a-5p as significantly correlated with paclitaxel response (P<0.0003).
- Overexpression of miR-367 increased paclitaxel sensitivity in sensitive cells; depletion decreased it.
- Modulating miR-30a-5p in resistant cells inversely affected paclitaxel sensitivity.
Conclusions:
- Successfully identified and targeted miRNAs influencing cancer cell response to paclitaxel.
- This miRNA-drug sensitivity data integration strategy can reveal determinants of drug response.
- The findings suggest novel therapeutic targets to enhance the activity of existing chemotherapeutics like paclitaxel.

