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黑茄(Solanum nigrum L.)总甾体皂苷通过体内和体外诱导自噬介导的细胞死亡来克服肿瘤多药耐药性。

Total steroidal saponins from black nightshade (Solanum nigrum L.) overcome tumor multidrug resistance by inducing autophagy-mediated cell death in vivo and in vitro.

机构信息

School of Pharmacy, Guangdong Pharmaceutical University, Guangzhou, China.

Guangdong Engineering Research Center for Lead Compounds & Drug Discovery, Guangzhou, China.

出版信息

Phytother Res. 2023 Jul;37(7):3009-3024. doi: 10.1002/ptr.7796. Epub 2023 Mar 6.

Abstract

Multiple drug resistance (MDR) often occurs after prolonged chemotherapy, leading to refractory tumors and cancer recurrence. In this study, we demonstrated that the total steroidal saponins from Solanum nigrum L. (SN) had broad-spectrum cytotoxic activity against various human leukemia cancer cell lines, especially in adriamycin (ADR)-sensitive and resistant K562 cell lines. Moreover, SN could effectively inhibit the expression of ABC transporter in K562/ADR cells in vivo and in vitro. In vivo, by establishing K562/ADR xenograft tumor model, we demonstrated that SN might overcome drug resistance and inhibit the proliferation of tumors by regulating autophagy. In vitro, the increased LC3 puncta, the expression of LC3-II and Beclin-1, and the decreased expression of p62/SQSTM1 in SN-treated K562/ADR and K562 cells demonstrated autophagy induced by SN. Moreover, using the autophagy inhibitors or transfecting the ATG5 shRNA, we confirmed that autophagy induced by SN was a key factor in overcoming MDR thereby promoting cell death in K562/ADR cells. More importantly, SN-induced autophagy through the mTOR signaling pathway to overcome drug resistance and ultimately induced autophagy-mediated cell death in K562/ADR cells. Taken together, our findings suggest that SN has the potential to treat multidrug-resistant leukemia.

摘要

多药耐药(MDR)经常在长期化疗后发生,导致难治性肿瘤和癌症复发。在这项研究中,我们证明了从龙葵(Solanum nigrum L.)中提取的总甾体皂苷对各种人类白血病癌细胞系具有广谱细胞毒性活性,特别是对阿霉素(ADR)敏感和耐药的 K562 细胞系。此外,SN 可以有效抑制 K562/ADR 细胞中 ABC 转运蛋白的表达,无论是在体内还是体外。在体内,通过建立 K562/ADR 异种移植肿瘤模型,我们证明 SN 可能通过调节自噬来克服耐药性并抑制肿瘤的增殖。在体外,SN 处理的 K562/ADR 和 K562 细胞中 LC3 斑点增加、LC3-II 和 Beclin-1 的表达增加以及 p62/SQSTM1 的表达减少表明 SN 诱导了自噬。此外,使用自噬抑制剂或转染 ATG5 shRNA,我们证实了 SN 诱导的自噬是克服 MDR 从而促进 K562/ADR 细胞死亡的关键因素。更重要的是,SN 通过 mTOR 信号通路诱导自噬来克服耐药性,并最终诱导 K562/ADR 细胞中的自噬介导的细胞死亡。总之,我们的研究结果表明 SN 具有治疗多药耐药性白血病的潜力。

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