Department of Internal Medicine, Yonsei University College of Medicine, Seoul, Korea.
Institute of Gastroenterology, Yonsei University College of Medicine, Seoul, Korea.
Sci Rep. 2018 Jan 11;8(1):409. doi: 10.1038/s41598-017-18762-4.
Metformin has been known to suppress cancer stem cells (CSCs) in some cancers. However, the differential effects of metformin on CSCs and their mechanisms have not been reported. Herein, metformin induced pAMPK activation and pS6 suppression in metformin-sensitive (HT29) cells, but not in metformin-resistant (SW620) cells. The oxygen consumption rate was higher in HT29 cells than in SW620 cells and showed a prominent decrease after metformin treatment in HT29 cells. In glutamine-depleted medium, but not in low-glucose medium, SW620 cells became sensitive to the CSC-suppressing effect of metformin. A combination of metformin and glutaminase C inhibitor (compound 968) suppressed CSCs in SW620 cells and enhanced that effect in HT29 cells. SW620 cells showed higher expression of glutaminase 1 and glutamine transporter (ASCT2) than HT29 cells, especially ASCT2 in CSCs. Knockdown of glutaminase 1, ASCT2, and c-Myc induced significant CSC-suppression and enhanced CSC-suppressing effect of metformin and compound 968. In xenografts and human cancer organoids, combined treatment with metformin and compound 968 showed the same results as those shown in vitro. In conclusion, the effect of metformin on CSCs varies depending on the AMPK-mTOR and glutamine metabolism. The inhibition of glutamine pathway could enhance the CSC-suppressing effect of metformin, overcoming metformin resistance.
二甲双胍已被证实可抑制某些癌症中的癌症干细胞(CSCs)。然而,二甲双胍对 CSCs 的差异作用及其机制尚未被报道。在此,二甲双胍诱导 AMPK 激活和 pS6 抑制在二甲双胍敏感(HT29)细胞,但不在二甲双胍耐药(SW620)细胞。HT29 细胞的耗氧率高于 SW620 细胞,且在 HT29 细胞经二甲双胍处理后显著降低。在缺乏谷氨酰胺的培养基中,但不在低糖培养基中,SW620 细胞对二甲双胍抑制 CSCs 的作用变得敏感。二甲双胍与谷氨酰胺酶 C 抑制剂(化合物 968)联合抑制 SW620 细胞中的 CSCs,并增强 HT29 细胞中的作用。SW620 细胞表达的谷氨酰胺酶 1 和谷氨酰胺转运蛋白(ASCT2)高于 HT29 细胞,尤其是 CSCs 中的 ASCT2。敲低谷氨酰胺酶 1、ASCT2 和 c-Myc 可显著抑制 CSCs,并增强二甲双胍和化合物 968 的 CSC 抑制作用。在异种移植和人癌症类器官中,二甲双胍和化合物 968 的联合治疗显示出与体外相同的结果。总之,二甲双胍对 CSCs 的作用取决于 AMPK-mTOR 和谷氨酰胺代谢。抑制谷氨酰胺途径可以增强二甲双胍对 CSCs 的抑制作用,克服二甲双胍耐药性。