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Updated: Feb 12, 2026

Culture of Bladder Cancer Organoids as Precision Medicine Tools
Published on: December 28, 2021
miR‑22‑3p enhances multi‑chemoresistance by targeting NET1 in bladder cancer cells
Jun Xiao1, Sanqiang Niu2, Jiahong Zhu2
1Department of Urology, Anhui Provincial Hospital, The First Affiliated Hospital of University of Science and Technology of China, Hefei, Anhui 230001, P.R. China.
Abstract:
With the discovery of new chemotherapeutic drugs, chemotherapy becomes increasingly valuable. However, the resistance of tumor cells to chemotherapeutic agents significantly limits the effectiveness and causes chemotherapy failure. MicroRNAs have been shown to regulate drug resistance in many types of cancer. In the present study, we measured the chemosensitivity of five bladder cancer (BCa) cell lines to seven commonly used chemotherapeutic drugs by Vita‑Blue assay. We then identified the most sensitive (5637) and most tolerant cell lines (H‑bc) and conducted a multi‑group test. This test included expression group analyses of coding and non‑coding genes (miR‑omic and RNA‑seq). Based on our analyses, we selected miR‑22‑3p as a target. We then determined its own target gene [neuroepithelial cell transforming 1 (NET1)] by bioinformatic analysis and confirmed this finding by TaqMan‑quantitative reverse transcription polymerase chain reaction (qRT‑PCR), western blot analysis and luciferase reporter assay. The effect of miR‑22‑3p on BCa multi‑chemoresistance was also determined by transfecting cells with the miR‑22‑3p‑mimic or miR‑22‑3p‑antagomiR. We assessed the involvement of NET1 in BCa chemoresistance by siRNA‑mediated NET1 inhibition or pINDUCER21‑enhanced green fluorescent protein‑NET1‑mediated overexpression. Plate colony formation and apoptosis assays were conducted to observe the effects of miR‑22‑3p and NET1 on BCa chemoresistance. In conclusion, our results suggest that miR‑22‑3p promotes BCa chemoresistance by targeting NET1 and may serve as a new prognostic biomarker for BCa patients.
Insights
MicroRNA miR-22-3p promotes bladder cancer chemoresistance by targeting NET1. This finding suggests miR-22-3p could be a new prognostic biomarker for bladder cancer patients, improving chemotherapy effectiveness.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Chemotherapy resistance in bladder cancer (BCa) significantly limits treatment efficacy.
- MicroRNAs are recognized regulators of drug resistance across various cancers.
Purpose of the Study:
- To investigate the role of microRNAs in BCa chemoresistance.
- To identify specific microRNAs and their targets involved in BCa multi-chemoresistance.
Main Methods:
- Assessed chemosensitivity of BCa cell lines using Vita-Blue assay.
- Performed miR-omic and RNA-seq analyses to identify key genes.
- Utilized bioinformatic analysis, qRT-PCR, western blot, and luciferase assays to validate targets.
- Employed cell transfection with miR-22-3p mimic/antagomiR and siRNA/overexpression of NET1.
Main Results:
- miR-22-3p was identified as a key regulator in BCa chemoresistance.
- NET1 was confirmed as a direct target gene of miR-22-3p.
- miR-22-3p was found to promote BCa multi-chemoresistance by targeting NET1.
Conclusions:
- miR-22-3p plays a crucial role in promoting bladder cancer chemoresistance.
- The miR-22-3p/NET1 axis represents a potential therapeutic target and prognostic biomarker for BCa.
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