miR-185 enhances the inhibition of proliferation and migration induced by ionizing radiation in melanoma

Melanoma is an aggressive malignancy that is increasingly common and exhibits a poor patient survival rate. Radiotherapy is the primary option for patients with melanoma, particularly those who are not candidates for surgery; however, the therapeutic effect is limited due to the relative radioresist...

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Veröffentlicht in:Oncology letters 2017-04, Vol.13 (4), p.2442-2448
Hauptverfasser: He, Jinpeng, Tian, Ning, Yang, Yanli, Jin, Liangliang, Feng, Xiu, Hua, Junrui, Lin, Sulan, Wang, Bing, Li, He, Wang, Jufang
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Sprache:eng
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Zusammenfassung:Melanoma is an aggressive malignancy that is increasingly common and exhibits a poor patient survival rate. Radiotherapy is the primary option for patients with melanoma, particularly those who are not candidates for surgery; however, the therapeutic effect is limited due to the relative radioresistance of melanoma to ionizing radiation (IR). It has been reported that microRNAs (miRNAs) serve a vital role in determining the radiosensitivity of tumors; however, little is known concerning the radiosensitization of melanoma using miRNA. In the present study, the radiosensitization effect of miRNA 185 (miR-185), which has been demonstrated to reduce renal cancer radioresistance, was investigated in B16 cells, a skin melanoma cell line derived from C57/BL mice, was investigated. Cell proliferation and scratch wound healing assays were used to determine the proliferative and migratory abilities of B16 cells. Annexin V/propidium iodide double staining was used to determine the apoptosis induced by IR. A tumor formation assay was performed to determine the radiosensitization effect of miR-185 on melanoma cells . Proliferation marker protein Ki-67, and hematoxylin and eosin staining were used to assess the proliferative activity and histological changes, respectively. The results of the present study demonstrated that miR-185 suppresses cellular proliferation and migration, and enhances IR-induced apoptosis, and the inhibition of proliferation and migration, and , which provides an insight into understanding the radiosensitization of melanoma using miRNA.
ISSN:1792-1074
1792-1082
DOI:10.3892/ol.2017.5699