[Impacts of curcumin on proliferation, migration and cisplatin resistance of bladder cancer cells by regulating LKB1-AMPK-LC3 signaling pathway].

细胞与分子免疫学杂志 Pub Date : 2025-01-01
Qian Wang, Liming Zhao
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Abstract

Objective To study the impacts of curcumin on the proliferation, migration and cisplatin (DDP) resistance of bladder cancer cells by regulating the liver kinase B1-AMP activated protein kinase-microtubule-associated protein 1 light chain 3 (LKB1-AMPK-LC3) signaling pathway. Methods Human bladder cancer cell line T24 was cultured in vitro, and its DDP resistant T24/DDP cells were induced by cisplatin (DDP). After treating T24 and T24/DDP cells with different concentrations of curcumin, the optimal concentration of curcumin was screened by MTT assay. T24 cells were randomly grouped into control group, curcumin group, metformin group, and combination group of curcumin and metformin. After treatment with curcumin and LKB1-AMPK activator metformin, the proliferation, autophagy, migration, and apoptosis of T24 cells in each group were detected by MTT assay, monodansylcadavrine (MDC) fluorescence staining, cell scratch assay, and flow cytometry, respectively. Western blot was used to detect the expression of proteins related to LKB1-AMPK-LC3 signaling pathway in T24 cells of each group. T24/DDP cells were randomly assigned into control group, curcumin group, metformin group, and combination group of curcumin and metformin. Cells were treated with curcumin and metformin according to grouping and treated with different concentrations of DDP simultaneously. Then, the effect of curcumin on the DDP resistance coefficient of T24/DDP cells was detected by MTT assay. T24/DDP cells were randomly grouped into control group, DDP group, combination groups of DDP and curcumin, DDP and metformin, DDP, curcumin and metformi. After treatment with DDP, curcumin, and metformin, the proliferation, autophagy, migration, apoptosis, drug resistance, and the expression of proteins related to LKB1-AMPK-LC3 signaling pathway in T24/DDP cells of each group were detected with the same methods. Results Compared with the control group, the activity of T24 cells, relative number of autophagosomes, migration rate, Phosphorylated-LKB1 (p-LKB1)/LKB1, Phosphorylated-AMPK (p-AMPK)/AMPK, LC3II/LC3I, and the DDP resistance coefficient of T24/DDP cells in the curcumin group were lower, and the apoptosis rate of T24 cells was higher; the changes in various indicators in the metformin group were opposite to those in the curcumin group. Compared with the curcumin group, the activity of T24 cells, relative number of autophagosomes, migration rate, p-LKB1/LKB1, p-AMPK/AMPK, LC3II/LC3I, and the DDP resistance coefficient of T24/DDP cells in the combination group of curcumin and metformin were higher, and the apoptosis rate of T24 cells was lower. Compared with the control group, there were no obvious changes in various indicators of T24/DDP cells in the DDP group. Compared with the control group and DDP group, the viability of T24/DDP cells, relative number of autophagosomes, migration rate, P-glycoprotein (P-gp) protein expression, p-LKB1/LKB1, p-AMPK/AMPK, and LC3II/LC3I in the combination group of DDP and curcumin were lower, and the apoptosis rate of T24/DDP cells was higher; the changes in the above indicators in the combination group of DDP and metformin were opposite to those in the combination group of DDP and curcumin. Compared with the combination group of DDP and curcumin, the viability of T24/DDP cells, relative number of autophagosomes, migration rate, P-gp protein expression, p-LKB1/LKB1, p-AMPK/AMPK, and LC3II/LC3I in the combination group of DDP, curcumin and metformin were higher, and the apoptosis rate of T24/DDP cells was lower. Conclusion Curcumin can reduce the activity of LKB1-AMPK-LC3 signaling pathway, thereby inhibiting autophagy, proliferation and migration of bladder cancer cells, promoting their apoptosis, and weakening their resistance to DDP.

[姜黄素通过调控LKB1-AMPK-LC3信号通路对膀胱癌细胞增殖、迁移及顺铂耐药的影响]。
目的通过调节肝激酶B1-AMP活化蛋白激酶-微管相关蛋白1轻链3 (LKB1-AMPK-LC3)信号通路,研究姜黄素对膀胱癌细胞增殖、迁移及顺铂(DDP)耐药性的影响。方法体外培养人膀胱癌细胞株T24,顺铂(DDP)诱导其耐药T24/DDP细胞。用不同浓度的姜黄素处理T24和T24/DDP细胞,通过MTT法筛选最佳姜黄素浓度。将T24细胞随机分为对照组、姜黄素组、二甲双胍组和姜黄素与二甲双胍联合组。姜黄素和LKB1-AMPK激活剂二甲双胍处理后,分别采用MTT法、MDC荧光染色法、细胞划痕法和流式细胞术检测各组T24细胞的增殖、自噬、迁移和凋亡情况。Western blot检测各组T24细胞中LKB1-AMPK-LC3信号通路相关蛋白的表达情况。将T24/DDP细胞随机分为对照组、姜黄素组、二甲双胍组和姜黄素与二甲双胍联合组。细胞按分组用姜黄素和二甲双胍处理,同时用不同浓度的DDP处理。然后采用MTT法检测姜黄素对T24/DDP细胞抗DDP系数的影响。将T24/DDP细胞随机分为对照组、DDP组、DDP与姜黄素、DDP与二甲双胍、DDP与姜黄素、二甲双胍联合组。DDP、姜黄素、二甲双胍处理后,采用相同的方法检测各组T24/DDP细胞的增殖、自噬、迁移、凋亡、耐药及LKB1-AMPK-LC3信号通路相关蛋白的表达。结果与对照组相比,姜黄素组T24/DDP细胞活性、自噬体相对数量、迁移率、磷酸化-LKB1 (p-LKB1)/LKB1、磷酸化-AMPK (p-AMPK)/AMPK、LC3II/LC3I、DDP抗性系数均降低,T24细胞凋亡率升高;二甲双胍组各项指标的变化与姜黄素组相反。与姜黄素组比较,姜黄素与二甲双胍联合组T24/DDP细胞活性、自噬体相对数量、迁移率、p-LKB1/LKB1、p-AMPK/AMPK、LC3II/LC3I、DDP抗性系数均高于姜黄素组,T24细胞凋亡率低于姜黄素组。与对照组相比,DDP组T24/DDP细胞各项指标均无明显变化。与对照组和DDP组比较,DDP与姜黄素联合组T24/DDP细胞活力、自噬体相对数量、迁移率、p-糖蛋白(P-gp)蛋白表达、p-LKB1/LKB1、p-AMPK/AMPK、LC3II/LC3I表达均降低,T24/DDP细胞凋亡率升高;DDP与二甲双胍联合用药组上述指标的变化与DDP与姜黄素联合用药组相反。与DDP、姜黄素和二甲双胍联合组相比,DDP、姜黄素和二甲双胍联合组T24/DDP细胞活力、自噬体相对数量、迁移率、P-gp蛋白表达、p-LKB1/LKB1、p-AMPK/AMPK、LC3II/LC3I均升高,T24/DDP细胞凋亡率降低。结论姜黄素可降低LKB1-AMPK-LC3信号通路的活性,从而抑制膀胱癌细胞的自噬、增殖和迁移,促进膀胱癌细胞凋亡,减弱膀胱癌细胞对DDP的抗性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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