| Literature DB >> 28665983 |
Katarzyna Monika Lamperska1, Tomasz Kolenda1,2, Anna Teresiak1, Anna Kowalik3, Marta Kruszyna-Mochalska3, Weronika Jackowiak3, Renata Bliźniak1, Weronika Przybyła4, Marta Kapałczyńska5, Piotr Kozlowski6.
Abstract
The implication of the let-7 family in cancer development is multifaceted. The family acts as tumor suppressor miRNA although overexpression of let-7 has also been described in many types of cancer, including head and neck squamous cell carcinoma (HNSCC). The aim of this study includes whether different expression levels of let-7d has an influence on chemo- and radiosensitivity. FaDu cell line models with a gradually increased level of let-7d (models from A to E) were generated with the lentiviral system. Expression levels of pluripotency, chemo-radioresistance/apoptosis, and targets of mRNAs were analyzed by real-time reverse transcription-PCR (qRT-PCR). Radiosensitivity was analyzed using a clonogenic assay after irradiation. Response to cisplatin, 5-FU, doxorubicin, and paclitaxel was done with MTT assay. Statistically significant decrease of K-RAS (p = 0.0369) and CASPASE3 (p = 0.0342) were observed with the growing expression level of let-7d. Cisplatin, 5-FU and doxorubicin caused similar decreased of cell survival with the increase of let-7d level (p = 0.004, post-trend p = 0.046; p = 0.004, post trend p = 0.0005 and p<0.0001, post trend p = 0.0001, respectively). All models were resistant to paclitaxel, irrespective of let-7d expression levels. Only two of the generated models (A and C) were radiosensitive (p = 0.0002).Entities:
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Year: 2017 PMID: 28665983 PMCID: PMC5493379 DOI: 10.1371/journal.pone.0180265
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1Characteristics of cell line models.
A) The FaDu cell line has been transduced using two different lentiviral constructs, containing single and double cassettes of let-7d. The let-7d expression levels were similar, but the MEAN of GFP fluorescence marker was nearly half lower in the 7d7d line than in 7d. The irradiation effect in both cases was similar. B) Five cell line models based on the FaDu cell line have been stable for further experiments. The expression for each model was calculated, comparing it to the FaDu-GFP cell line, using the 2-ΔΔCt method. The following results were found: A: 8.72; B: 17.44; C22.85; D:37.93, and E:57.89; C) the proliferation ratio generally decreased in the overexpressed let-7d cell line, compared to the controls for the FaDu-GFP line; however, differences between models were not statistically significant, and as such, we did not observe a trend.
Fig 2Expression of genes characteristic for.
A) pluripotency (OCT3/4, SOX2, NANOG) and B) let-7d targets: K-RAS, Caspase3, H-RAS, N-RAS, HMGA1, HMGA2, C-MYC, ARIDA3A, DICER; C) genes connected with chemo-radioresistance/apoptosis (BAX, ATM, ABCB1, BCL2); D) statistical analysis of models B-E indicated positive results for mRNAs: Caspase3, ATM, K-RAS, N-RAS, HMGA1, and ARID3A.
Fig 3Response of FaDu let-7d models to chemo-and radiotherapy.
A) The cell line models (A-E) were exposed to chemotherapeutics: cisplatin (1.12 μg/mL); 5-FU (0.86 μg/mL); paclitaxel (0.54 μM), and doxorubicin (0.06 μM) were compared to FaDu-GFP B) Survival fractions [SF%] of the cell models were assessed according to a dose of 2 Gy. The differences in survival were statistical significant (p = 0.0002) for the models A and C.