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MicroRNA-135 alleviates cisplatin resistance in cervical cancer by inhibiting CD44v6
Rui Zhou1, Hongmei Wang1, Anji Li1
1The First Clinical Medical College of Guizhou University of Traditional Chinese Medicine, Guiyang, Guizhou, 550001, China.
Background:
Cervical cancer (CC) remains a leading cause of cancer-related mortality worldwide and cisplatin resistance poses a major challenge to effective treatment. MicroRNA-135 (miR-135) has been implicated in tumor progression and drug resistance, but its role in cisplatin-resistant CC remains unclear.
Objectives:
To investigate whether miR-135 affects cisplatin resistance in CC cells by targeting CD44v6.
Methods:
Bioinformatic analysis (TargetScan) was performed to predict the miR-135 binding site in CD44v6, followed by a dual-luciferase reporter assay. RT-qPCR and Western blot were used to measure miR-135 and CD44v6 expression in cisplatin-resistant HeLa/DDP cells, HeLa cells and normal Ect1/E6E7 cells. HeLa/DDP cells were transfected with miR-135 mimic or NC mimic and cell proliferation (CCK-8, colony formation), apoptosis (flow cytometry) and CD44v6 expression were assessed.
Results:
miR-135 directly bound to the CD44v6 3'-UTR, reducing luciferase activity by 58% (*p* < 0.001). miR-135 expression was decreased by 68% in HeLa/DDP cells compared to Ect1/E6E7 cells, while CD44v6 expression was increased 3.5-fold. miR-135 mimic transfection reduced CD44v6 protein expression by 62%, decreased cell viability by 57.3%, increased the apoptosis rate from 12.4% to 35.8% (absolute increase of 23.4%) and lowered the cisplatin IC50 from 22.36 to 8.47 μmol/L (2.64-fold reversal, *p* < 0.001).
Conclusions:
miR-135 overexpression was associated with reduced CD44v6 expression, decreased proliferation, increased apoptosis and enhanced sensitivity to cisplatin in HeLa/DDP cells. These findings demonstrate an inverse association between miR-135 and CD44v6 in cisplatin-resistant CC cells; however, causal mechanistic evidence (e.g., via CD44v6-specific knockdown or rescue experiments) is not provided. Further studies are required to establish whether CD44v6 directly mediates the chemosensitizing effects of miR-135.
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