Cancer Drug Resistance Laboratory, Department of Life Science, National Institute of Technology Rourkela, Odisha, 769008, India.
Cancer Drug Resistance Laboratory, Department of Life Science, National Institute of Technology Rourkela, Odisha, 769008, India.
Pharmacol Res. 2020 Jun;156:104772. doi: 10.1016/j.phrs.2020.104772. Epub 2020 Apr 10.
Piperlongumine, a white to beige biologically active alkaloid/amide phytochemical, has high pharmacological relevance as an anticancer agent. Piperlongumine has several biological activities, including selective cytotoxicity against multiple cancer cells of different origins at a preclinical level. Several preclinical studies have documented the anticancer potential of piperlongumine through its targeting of multiple molecular mechanisms, such as cell cycle arrest, anti-angiogenesis, anti- invasive and anti-metastasis pathways, autophagy pathways, and intrinsic apoptotic pathways in vitro and in vivo. Mechanistically, piperlongumine inhibits cancer growth by resulting in the accumulation of intracellular reactive oxygen species, decreasing glutathione and chromosomal damage, or modulating key regulatory proteins, including PI3K, AKT, mTOR, NF-kβ, STATs, and cyclin D1. Furthermore, combined treatment with piperlongumine potentiates the anticancer activity of conventional chemotherapeutics and overcomes resistance to chemo- and radio- therapy. Nanoformulation of piperlongumine has been associated with increased aqueous solubility and bioavailability and lower toxicity, thus enhancing therapeutic efficacy in both preclinical and clinical settings. The current review highlights anticancer studies on the occurrence, chemical properties, chemopreventive mechanisms, toxicity, bioavailability, and pharmaceutical relevance of piperlongumine in vitro and in vivo.
胡椒碱是一种具有生物活性的白色至浅米色生物碱/酰胺植物化学物质,作为一种抗癌药物具有很高的药理学相关性。胡椒碱具有多种生物学活性,包括在临床前水平对多种不同来源的癌细胞具有选择性细胞毒性。几项临床前研究通过其针对多种分子机制(如细胞周期停滞、抗血管生成、抗侵袭和转移途径、自噬途径以及体外和体内的内在凋亡途径)证明了胡椒碱的抗癌潜力。在机制上,胡椒碱通过导致细胞内活性氧的积累、降低谷胱甘肽和染色体损伤,或调节包括 PI3K、AKT、mTOR、NF-kβ、STATs 和细胞周期蛋白 D1 在内的关键调节蛋白,从而抑制癌症生长。此外,与胡椒碱联合治疗可增强常规化疗药物的抗癌活性,并克服对化疗和放疗的耐药性。胡椒碱的纳米制剂与增加的水溶解度和生物利用度以及降低的毒性有关,从而增强了临床前和临床环境中的治疗效果。本综述重点介绍了胡椒碱在体外和体内的发生、化学性质、化学预防机制、毒性、生物利用度和药物相关性方面的抗癌研究。