Narayanankutty Arunaksharan
Division of Cell and Molecular Biology, PG and Research Department of Zoology, St. Joseph's College (Autonomous), Devagiri, Calicut, Kerala, India.
Curr Mol Pharmacol. 2021;14(5):760-769. doi: 10.2174/1874467214666210120152657.
Hepatocellular carcinoma (HCC) is one of the prominent forms of cancer in developed countries. Globally, the incidence of HCC is well correlated with fatty liver disease and cirrhosis; the underlying chronic inflammation and lipotoxicity are thought to drive the process of HCC. Several biochemical cycles and molecular pathways are associated. The review aims to summarize the role of PI3K/Akt signaling and its downstream effectors in the development of HCC and its progression. Further, the emphasis has been given to the role of natural inhibitors of the PI3K/Akt pathway in HCC prevention, which are under various levels of drug discovery. The required literature were collected from PubMed/Medline databases, as well as Scopus or Web of science. It is evident that various signaling pathways activated by growth factors together with detoxification machinery and biochemical cycles converge to the PI3K/Akt signaling. The pathway plays a key role in the carcinogenesis, metastasis and drug resistance events of HCC cells and provides the growth and survival advantage. Natural products belonging to various classes such as terpenoids, flavonoids, saponins and stilbenoids are proven inhibitors of PI3K signaling and also found to inhibit HCC progression. PI3K/mTOR pathway inhibitors, especially the different phytochemicals, emerged as promising as anti-HCC agents. These molecules are shown to interfere with the PI3K signaling at various stages and therefore the PI3K targeted drugs may be a future for the chemotherapeutic arena.
肝细胞癌(HCC)是发达国家中一种主要的癌症形式。在全球范围内,HCC的发病率与脂肪性肝病和肝硬化密切相关;潜在的慢性炎症和脂毒性被认为是驱动HCC进程的因素。有几个生化循环和分子途径与之相关。本综述旨在总结PI3K/Akt信号通路及其下游效应器在HCC发生发展及其进展中的作用。此外,重点关注了PI3K/Akt途径的天然抑制剂在HCC预防中的作用,这些抑制剂正处于不同阶段的药物研发中。所需文献从PubMed/Medline数据库以及Scopus或科学网收集。很明显,由生长因子激活的各种信号通路以及解毒机制和生化循环都汇聚到PI3K/Akt信号通路。该通路在HCC细胞的致癌作用、转移和耐药事件中起关键作用,并提供生长和生存优势。属于萜类、黄酮类、皂苷类和芪类等各类别的天然产物已被证明是PI3K信号通路的抑制剂,也被发现可抑制HCC进展。PI3K/mTOR通路抑制剂,尤其是不同的植物化学物质,有望成为抗HCC药物。这些分子在不同阶段干扰PI3K信号通路,因此靶向PI3K的药物可能是未来化疗领域的一个方向。