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LncRNA MALAT1 Depressed Chemo-Sensitivity of NSCLC Cells through Directly Functioning on miR-197-3p/p120 Catenin Axis
Tian Yang1, Hong Li1, Tianjun Chen1
1Division of Pulmonary and Critical Care Medicine, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an 710061, China.
Abstract:
This study was aimed to explore if lncRNA MALAT1 would modify chemo-resistance of non-small cell lung cancer (NSCLC) cells by regulating miR-197-3p and p120 catenin (p120-ctn). Within this investigation, we totally recruited 326 lung cancer patients, and purchased 4 NSCLC cell lines of A549, H1299, SPC-A-1 and H460. Moreover, cisplatin, adriamycin, gefitinib and paclitaxel were arranged as chemotherapies, and half maximal inhibitory concentration (IC50) values were calculated to evaluate the chemo-resistance of the cells. Furthermore, mice models of NSCLC were also established to assess the impacts of MALAT1, miR-197-3p and p120-ctn on tumor growth. Our results indicated that MALAT1 and miR-197-3p were both over-expressed within NSCLC tissues and cells, when compared with normal tissues and cells (P < 0.05). The A549, H460, SPC-A-1 and SPC-A-1 displayed maximum resistances to cisplatin (IC50 = 15.70 μg/ml), adriamycin (IC50 = 5.58 μg/ml), gefitinib (96.82 μmol/L) and paclitaxel (141.97 nmol/L). Over-expression of MALAT1 and miR-197-3p, or under-expression of p120-ctn were associated with promoted viability and growth of the cancer cells (P < 0.05), and they could significantly strengthen the chemo-resistance of cancer cells (P < 0.05). MALAT1 Wt or p120-ctn Wt co-transfected with miR-197-3p mimic was observed with significantly reduced luciferase activity within NSCLC cells (P < 0.05). Finally, the NSCLC mice models were observed with larger tumor size and weight under circumstances of over-expressed MALAT1 and miR-197-3p, or under-expressed p120-ctn (P < 0.05). In conclusion, MALAT1 could alter chemo-resistance of NSCLC cells by targeting miR-197-3p and regulating p120-ctn expression, which might assist in improvement of chemo-therapies for NSCLC.
Insights
Long non-coding RNA MALAT1 influences non-small cell lung cancer (NSCLC) chemo-resistance by targeting miR-197-3p and regulating p120 catenin. This discovery may enhance NSCLC chemotherapy effectiveness.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Non-small cell lung cancer (NSCLC) remains a leading cause of cancer mortality worldwide.
- Chemo-resistance significantly limits the efficacy of current NSCLC treatments.
- Long non-coding RNAs (lncRNAs) are increasingly recognized for their roles in cancer progression and drug resistance.
Purpose of the Study:
- To investigate the role of lncRNA MALAT1 in modulating chemo-resistance in NSCLC cells.
- To elucidate the regulatory pathway involving MALAT1, miR-197-3p, and p120 catenin (p120-ctn) in NSCLC.
- To assess the impact of MALAT1, miR-197-3p, and p120-ctn on NSCLC tumor growth in vivo.
Main Methods:
- Recruitment of 326 lung cancer patients and utilization of four NSCLC cell lines (A549, H1299, SPC-A-1, H460).
- Assessment of chemo-resistance using cisplatin, adriamycin, gefitinib, and paclitaxel, with IC50 value calculations.
- Establishment of NSCLC mice models to evaluate the in vivo effects of MALAT1, miR-197-3p, and p120-ctn on tumor growth.
Main Results:
- MALAT1 and miR-197-3p were found to be over-expressed in NSCLC tissues and cells compared to normal controls (P < 0.05).
- Over-expression of MALAT1 and miR-197-3p, or under-expression of p120-ctn, correlated with increased cancer cell viability, growth, and significantly enhanced chemo-resistance (P < 0.05).
- In vivo studies using NSCLC mice models showed larger tumor size and weight with over-expressed MALAT1 and miR-197-3p, or under-expressed p120-ctn (P < 0.05).
Conclusions:
- lncRNA MALAT1 plays a crucial role in altering NSCLC chemo-resistance.
- MALAT1 targets miR-197-3p, which in turn regulates p120-ctn expression, mediating its effects on chemo-resistance.
- Targeting the MALAT1/miR-197-3p/p120-ctn axis holds potential for improving NSCLC chemo-therapies.
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