Dogra Amandeep, Kumar Jitender
Department of Plant Science, School of Life Sciences, Central University of Himachal Pradesh, Dharamshala, India.
Front Pharmacol. 2023 Mar 9;14:1136779. doi: 10.3389/fphar.2023.1136779. eCollection 2023.
Cancer is a severe health issue, and cancer cases are rising yearly. New anticancer drugs have been developed as our understanding of the molecular mechanisms behind diverse solid tumors, and metastatic malignancies have increased. Plant-derived phytochemical compounds target different oncogenes, tumor suppressor genes, protein channels, immune cells, protein channels, and pumps, which have attracted much attention for treating cancer in preclinical studies. Despite the anticancer capabilities of these phytochemical compounds, systemic toxicity, medication resistance, and limited absorption remain more significant obstacles in clinical trials. Therefore, drug combinations of new phytochemical compounds, phytonanomedicine, semi-synthetic, and synthetic analogs should be considered to supplement the existing cancer therapies. It is also crucial to consider different strategies for increased production of phytochemical bioactive substances. The primary goal of this review is to highlight several bioactive anticancer phytochemical compounds found in plants, preclinical research, their synthetic and semi-synthetic analogs, and clinical trials. Additionally, biotechnological and metabolic engineering strategies are explored to enhance the production of bioactive phytochemical compounds. Ligands and their interactions with their putative targets are also explored through molecular docking studies. Therefore, emphasis is given to gathering comprehensive data regarding modern biotechnology, metabolic engineering, molecular biology, and tools.
癌症是一个严重的健康问题,且癌症病例数逐年上升。随着我们对各种实体瘤背后分子机制的理解不断深入,转移性恶性肿瘤不断增加,新型抗癌药物也得以研发。植物来源的植物化学化合物靶向不同的癌基因、肿瘤抑制基因、蛋白质通道、免疫细胞、蛋白质通道和泵,在临床前研究中,这些化合物在癌症治疗方面备受关注。尽管这些植物化学化合物具有抗癌能力,但全身毒性、药物耐药性和吸收有限仍是临床试验中更为重大的障碍。因此,应考虑将新型植物化学化合物、植物纳米药物、半合成和合成类似物进行药物组合,以补充现有的癌症治疗方法。考虑提高植物化学生物活性物质产量的不同策略也至关重要。本综述的主要目标是突出植物中发现的几种具有生物活性的抗癌植物化学化合物、临床前研究、它们的合成和半合成类似物以及临床试验。此外,还探讨了生物技术和代谢工程策略,以提高生物活性植物化学化合物的产量。还通过分子对接研究探索了配体及其与假定靶点的相互作用。因此,重点是收集有关现代生物技术、代谢工程、分子生物学和工具的全面数据。