Javed Zeeshan, Sadia Haleema, Iqbal Muhammad Javed, Shamas Shazia, Malik Kausar, Ahmed Rais, Raza Shahid, Butnariu Monica, Cruz-Martins Natalia, Sharifi-Rad Javad
Office for Research Innovation and Commercialization, Lahore Garrison University, Sector-C, Phase VI, DHA, Lahore, 54792, Pakistan.
Department of Biotechnology, Engineering and Management Sciences, Balochistan University of Information Technology, Quetta, 87100, Pakistan.
Cancer Cell Int. 2021 Apr 1;21(1):189. doi: 10.1186/s12935-021-01888-x.
Cancer is a complex disease orchestrated by various extrinsic and intrinsic pathways. In recent years, there has been a keen interest towards the development of natural extracts-based cancer therapeutics with minimum adverse effects. In pursuit of effective strategy, a wide variety of natural products-derived compounds have been addressed for their anticancer effects. Apigenin is a naturally-occurring flavonoid present abundantly in various fruits and vegetables. Decades of research have delineated the pharmacological and biological properties of apigenin. Specifically, the apigenin-mediated anticancer activities have been documented in various types of cancer, but the generalized scientific evidence encompassing various molecular interactions and processes, such as regulation of the apoptotic machinery, aberrant cell signaling and oncogenic protein network have not been comprehensively covered. In this sense, in this review we have attempted to focus on the apigenin-mediated regulation of oncogenic pathways in various cancers. We have also addressed the cutting-edge research which has unveiled the remarkable abilities of apigenin to interact with microRNAs to modulate key cellular processes, with special emphasis on the nano-formulations of apigenin that can help their targeted delivery and can be a therapeutic solution for the treatment of various cancers.
癌症是一种由多种外在和内在途径共同作用的复杂疾病。近年来,人们对开发副作用最小的天然提取物类癌症治疗药物产生了浓厚兴趣。为了寻求有效的策略,人们对多种天然产物衍生的化合物的抗癌作用进行了研究。芹菜素是一种天然存在的黄酮类化合物,大量存在于各种水果和蔬菜中。数十年来的研究已经阐明了芹菜素的药理和生物学特性。具体而言,芹菜素介导的抗癌活性已在多种类型的癌症中得到记载,但尚未全面涵盖包括各种分子相互作用和过程(如凋亡机制的调节、异常细胞信号传导和致癌蛋白网络)在内的一般性科学证据。从这个意义上讲,在本综述中,我们试图聚焦于芹菜素介导的对各种癌症中致癌途径的调节。我们还探讨了前沿研究,这些研究揭示了芹菜素与微小RNA相互作用以调节关键细胞过程的显著能力,特别强调了芹菜素的纳米制剂,其有助于靶向递送,可能成为治疗各种癌症的一种治疗方案。