Department of Pharmacy, Hazara University, Mansehra, Pakistan.
Faculty of Pharmaceutical Sciences, Government College University, Faisalabad, Pakistan.
Chem Biol Interact. 2023 Sep 1;382:110634. doi: 10.1016/j.cbi.2023.110634. Epub 2023 Jul 13.
Despite the existence of extensive clinical research and novel therapeutic treatments, cancer remains undefeated and the significant cause of death worldwide. Cancer is a disease in which growth of cells goes out of control, being also able to invade other parts of the body. Cellular division is strictly controlled by multiple checkpoints like G1/S and G2/M which, when dysregulated, lead to uncontrollable cell division. The current remedies which are being utilized to combat cancer are monoclonal antibodies, chemotherapy, cryoablation, and bone marrow transplant etc. and these have also been greatly disheartening because of their serious adverse effects like hypotension, neuropathy, necrosis, leukemia relapse and many more. Bioactive compounds derived from natural products have marked the history of the development of novel drug therapies against cancer among which ginsenosides have no peer as they target several signaling pathways, which when abnormally regulated, lead to cancer. Substantial research has reported that ginsenosides like Rb1, Rb2, Rb3, Rc, Rd, Rg3, Rh2 etc. can prevent and treat cancer by targeting different pathways and molecules by induction of autophagy, neutralizing ROS, induction of cancerous cell death by controlling the p53 pathway, modulation of miRNAs by decreasing Smad2 expression, regulating Bcl-2 expression by normalizing the NF-Kb pathway, inhibition of inflammatory pathways by decreasing the production of cytokines like IL-8, causing cell cycle arrest by restricting cyclin E1 and CDC2, and induction of apoptosis during malignancy by decreasing β-catenin levels etc. In this review, we have analyzed the anti-cancer therapeutic potential of various ginsenoside compounds in order to consider their possible use in new strategies in the fight against cancer.
尽管有广泛的临床研究和新的治疗方法,癌症仍然是世界范围内的主要死亡原因。癌症是一种细胞生长失控的疾病,也能够侵入身体的其他部位。细胞分裂受到多个检查点的严格控制,如 G1/S 和 G2/M 等,当这些检查点失调时,会导致细胞分裂失控。目前用于治疗癌症的方法有单克隆抗体、化疗、冷冻消融和骨髓移植等,但由于它们会产生严重的副作用,如低血压、神经病变、坏死、白血病复发等,这些方法也令人非常失望。天然产物来源的生物活性化合物为癌症的新型药物治疗的发展奠定了基础,其中人参皂苷在靶向多个信号通路方面无与伦比,这些信号通路异常调节会导致癌症。大量研究报告表明,人参皂苷如 Rb1、Rb2、Rb3、Rc、Rd、Rg3、Rh2 等,可以通过诱导自噬、中和 ROS、通过控制 p53 途径诱导癌细胞死亡、通过降低 Smad2 表达来调节 miRNA、通过正常化 NF-Kb 途径来调节 Bcl-2 表达、通过减少细胞因子如 IL-8 的产生来抑制炎症途径、通过限制细胞周期蛋白 E1 和 CDC2 来阻止细胞周期、通过降低β-连环蛋白水平等来诱导恶性肿瘤中的细胞凋亡等多种途径和分子来预防和治疗癌症。在这篇综述中,我们分析了各种人参皂苷化合物的抗癌治疗潜力,以考虑它们在对抗癌症的新策略中的可能用途。