Remodeling Serine Synthesis and Metabolism via Nanoparticles (NPs)‐Mediated CFL1 Silencing to Enhance the Sensitivity of Hepatocellular Carcinoma to Sorafenib

索拉非尼 肝细胞癌 癌症研究 基因沉默 化学 丝氨酸 纳米颗粒 医学 纳米技术 材料科学 生物化学 磷酸化 基因
作者
Senlin Li,Lei Xu,Guo Wu,Ziqi Huang,Linzhuo Huang,Fengqian Zhang,Chunfang Wei,Qian Shen,Rong Li,Lei Zhang,Xiaoding Xu
出处
期刊:Advanced Science [Wiley]
卷期号:10 (19) 被引量:30
标识
DOI:10.1002/advs.202207118
摘要

Abstract Tyrosine kinase inhibitors represented by sorafenib are the first‐line treatment for hepatocellular carcinoma (HCC), but the low response rate of HCC patient has become a clinical pain‐point. Emerging evidences have revealed that metabolic reprogramming plays an important role in regulating the sensitivity of tumor cells to various chemotherapeutics including sorafenib. However, the underlying mechanisms are very complex and are not fully elucidated. By comparing the transcriptome sequencing data of sorafenib‐sensitive and ‐insensitive HCC patients, it is revealed that cofilin 1 (CFL1) is highly expressed in the tumor tissues of sorafenib‐insensitive HCC patients and closely correlated with their poor prognosis. Mechanically, CFL1 can promote phosphoglycerate dehydrogenase transcription and enhance serine synthesis and metabolism to accelerate the production of antioxidants for scavenging the excessive reactive oxygen species induced by sorafenib, thereby impairing the sorafenib sensitivity of HCC. To translate this finding and consider the severe side effects of sorafenib, a reduction‐responsive nanoplatform for systemic co‐delivery of CFL1 siRNA (siCFL1) and sorafenib is further developed, and its high efficacy in inhibiting HCC tumor growth without apparent toxicity is demonstrated. These results indicate that nanoparticles‐mediated co‐delivery of siCFL1 and sorafenib can be a new strategy for the treatment of advanced HCC.
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