Abstract:Objective: To investigate the role and underlying mechanism of T-cadherin in multidrug resistance of melanoma. Methods: The sensitivity of the cisplatin-resistant B16F10 (CDDP-R B16F10) melanoma cell line to dacarbazine (DTIC) and paclitaxel (PTX) was assessed. The effects of T-cadherin in combination with DTIC and PTX on cell proliferation and migration were evaluated using the MTT assay and wound healing assay. qRT-PCR and Western blot analyses were performed to determine the impact of T-cadherin on the expression of multidrug resistance gene 1 (MDR1) and Survivin in CDDP-R B16F10 cells. Results: The resistance index (RI) of CDDP-R B16F10 cells was 3.46 for DTIC and 1.46 for PTX. Compared to other groups, the combination of T-cadherin with DTIC and PTX significantly reduced the OD value and wound healing rate (P<0.05). The relative mRNA and protein expression levels of MDR1 and Survivin were significantly higher in CDDP-R B16F10 cells than in parental B16F10 cells (P<0.05). However, T-cadherin transfection markedly decreased MDR1 and Survivin expression at both the mRNA and protein levels in CDDP-R B16F10 cells compared to the non-transfected groups (P<0.05). Conclusion: The multidrug resistance of CDDP-R B16F10 cells is induced by prolonged exposure to escalating doses of CDDP. T-cadherin enhances the sensitivity of CDDP-R B16F10 cells to DTIC and PTX and reverses multidrug resistance by downregulating MDR1 and Survivin expression.
陆海涛, 李雪飞, 牛艳东, 吴景良, 赵运华. T-钙黏蛋白在黑色素瘤多药耐药中的作用机制研究[J]. 河北医学, 2025, 31(6): 929-934.
LU Haitao, LI Xuefei, NIU Yandong, et al. Mechanistic Study of T-Cadherin in Multidrug Resistance of Melanoma. HeBei Med, 2025, 31(6): 929-934.
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