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细胞毒性自噬:一种使用齐墩果酸和熊果酸治疗乳腺癌的新范式。

Cytotoxic Autophagy: A Novel Treatment Paradigm against Breast Cancer Using Oleanolic Acid and Ursolic Acid.

作者信息

Gupta Kunj Bihari, Gao Jie, Li Xin, Thangaraju Muthusamy, Panda Siva S, Lokeshwar Bal L

机构信息

Georgia Cancer Center, Augusta University, Augusta, GA 30912, USA.

Department of Clinical and Diagnostic Science, University of Alabama at Birmingham, Birmingham, AL 35233, USA.

出版信息

Cancers (Basel). 2024 Oct 1;16(19):3367. doi: 10.3390/cancers16193367.

Abstract

BACKGROUND

Oleanolic acid (OA) and Ursolic acid (UA) are bioactive triterpenoids. Reported activities vary with the dose used for testing their activities in vitro. Studies using doses of ≥20 µM showed apoptosis activities in cancer cells. However, reported drug levels in circulation achieved by oral administration of UA and OA are ≤2 µM, thus limiting their use for treatment or delivering a combination treatment.

MATERIALS AND METHODS

The present report demonstrates the efficacy of OA, UA, and OA + UA on tumor cell-specific cytotoxicity at low doses (5 µM to 10 µM) in breast cancer (BrCa) cell lines MCF7 and MDA-MB231.

RESULTS

The data show that both OA and UA killed BrCa cells at low doses, but were significantly less toxic to MCF-12A, a non-tumorigenic cell line. Moreover, OA + UA at ≤10 µM was lethal to BrCa cells. Mechanistic studies unraveled the significant absence of apoptosis, but their cytotoxicity was due to the induction of excessive autophagy at a OA + UA dose of 5 µM each. A link to drug-induced cytotoxic autophagy was established by demonstrating a lack of their cytotoxicity by silencing the autophagy-targeting genes (ATGs), which prevented OA-, UA-, or OA + UA-induced cell death. Further, UA or OA + UA treatment of BrCa cells caused an inhibition of PI3 kinase-mediated phosphorylation of Akt/mTOR, the key pathways that regulate cancer cell survival, metabolism, and proliferation.

DISCUSSION

Combinations of a PI3K inhibitor (LY294002) with OA, UA, or OA + UA synergistically inhibited BrCa cell survival. Therefore, the dominance of cytotoxic autophagy by inhibiting PI3K-mediated autophagy may be the primary mechanism of PTT-induced anticancer activity in BrCa cells.

CONCLUSION

These results suggest it would be worthwhile testing combined OA and UA in clinical settings.

摘要

背景

齐墩果酸(OA)和熊果酸(UA)是具有生物活性的三萜类化合物。其报告的活性因体外测试所用剂量而异。使用≥20 μM剂量的研究显示对癌细胞有凋亡活性。然而,口服UA和OA后循环中的报告药物水平≤2 μM,因此限制了它们用于治疗或联合治疗。

材料与方法

本报告展示了OA、UA以及OA + UA在低剂量(5 μM至10 μM)时对乳腺癌(BrCa)细胞系MCF7和MDA - MB231的肿瘤细胞特异性细胞毒性的疗效。

结果

数据表明,OA和UA在低剂量时均可杀死BrCa细胞,但对非致瘤细胞系MCF - 12A的毒性显著更低。此外,≤10 μM的OA + UA对BrCa细胞具有致死性。机制研究表明,显著不存在凋亡现象,但其细胞毒性是由于在OA和UA各为5 μM的剂量下诱导了过度自噬。通过沉默自噬靶向基因(ATG)证明其缺乏细胞毒性,从而建立了与药物诱导的细胞毒性自噬的联系,这阻止了OA、UA或OA + UA诱导的细胞死亡。此外,对BrCa细胞进行UA或OA + UA处理会抑制PI3激酶介导的Akt/mTOR磷酸化,这是调节癌细胞存活、代谢和增殖的关键途径。

讨论

PI3K抑制剂(LY294002)与OA、UA或OA + UA联合使用可协同抑制BrCa细胞存活。因此,通过抑制PI3K介导的自噬来主导细胞毒性自噬可能是光热疗法诱导BrCa细胞抗癌活性的主要机制。

结论

这些结果表明在临床环境中测试联合使用OA和UA是值得的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ffa/11476055/75ee8c70801c/cancers-16-03367-g001.jpg

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