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Alpha-solanine Anti-tumor Effects in Non-small Cell Lung Cancer Through Regulating the Energy Metabolism Pathway

细胞凋亡 小桶 癌症研究 肺癌 免疫印迹 细胞 细胞生长 机制(生物学) 药理学 化学 生物 医学 生物化学 转录组 肿瘤科 基因表达 基因 物理 量子力学
作者
Tao Zou,Li Gu,Liqiong Yang,Junsong Wei,Yueshui Zhao,Jing Shen,Mingxing Li,Xu Wu,Fukuan Du,Yu Chen,Yun Ye,Zhangang Xiao,Zhigui Wu
出处
期刊:Recent Patents on Anti-cancer Drug Discovery [Bentham Science]
卷期号:17 (4): 396-409 被引量:12
标识
DOI:10.2174/1574892817666220113144635
摘要

Lung cancer is a malignant tumor with a high incidence in China, especially non-small cell lung cancer (NSCLC), which is the main threat to human life, with terrible morbidity and mortality. The research on the treatment and mechanism of NSCLC has been the forefront and hotspot of research. Recent patents show that alpha-solanine (α-solanine) exhibits the best anti-cancer activity, although its target and related mechanism remain to be elucidated.This study aims to explore the possible targets and mechanisms of α-solanine in the treatment of NSCLC through network pharmacology and experimental verification.Network pharmacology was applied to screen the possible targets of α-solanine on NSCLC, construct core networks, and perform GO enrichment and KEGG pathway analysis to predict the mechanism of α-solanine against NSCLC. Experiments were implemented to verify the results of network pharmacology in vitro. The A549 and PC-9 cells were exposed to α-solanine to assess the anti-tumor effect. Cell apoptosis was determined by the Annexin-V/PI assay. Targeted energy metabolomics was used to validate the network pharmacology results, and energy metabolism pathway- related proteins were detected by immunofluorescence and western blot.Network pharmacology showed that there were 130 potential targets of α-solanine and NSCLC. GO, and KEGG analysis showed that the energy metabolism pathway is the main pathway for α-solanine to exert anti-tumor effects on NSCLC. Experimental results showed that α-solanine inhibited cell proliferation, migration, invasion and promoted cell apoptosis. At the same time, after α-solanine treatment, the energy metabolism pathway-related proteins, including GPI, ALDOA, TPI1, PKLR, LDHA, and ALDH3, were expressed reduced. In addition, α-solanine also affects the amino acid metabolism of A549 and PC-9 cells.Based on a combination of network pharmacological prediction and experimental verification, α-solanine may exert anti-NSCLC effects by regulating the energy metabolism pathway.

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