Khazei Keyvan, Mohajeri Nasrin, Bonabi Esat, Turk Zeynep, Zarghami Nosratollah
Department of Persian Medicine, School of Traditional Medicine, Tabriz University of Medical Sciences, Tabriz, Iran.
Department of Medical Biotechnology, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran.
Curr Cancer Drug Targets. 2021;21(8):689-701. doi: 10.2174/1568009621666210525152802.
The increasing prevalence of cancer has led to expanding traditional medicine objectives for developing novel drug delivery systems. A wide range of plant-derived polyphenol bioactive substances have been investigated in order to explore the anti-cancer effects of these natural compounds and to promote the effective treatment of cancer through apoptosis induction. In this regard, plant-derived polyphenol compounds, including curcumin, silibinin, quercetin, and resveratrol, have been the subject of intense interest for anti-cancer applications due to their ability to regulate apoptotic genes. However, some limitations of pure polyphenol compounds, such as poor bioavailability, short-term stability, low-cellular uptake, and insufficient solubility, have restricted their efficiency. Nanoscale formulations of bioactive agents have provided a novel platform to address these limitations. This paper reviews recent advances in nanoformulation approaches of polyphenolic drugs and their effects on improving the delivery of chemotherapy agents to cancer cells.
癌症患病率的不断上升促使传统医学在开发新型药物递送系统方面的目标不断扩大。为了探索这些天然化合物的抗癌作用,并通过诱导细胞凋亡促进癌症的有效治疗,人们对多种植物来源的多酚生物活性物质进行了研究。在这方面,包括姜黄素、水飞蓟宾、槲皮素和白藜芦醇在内的植物来源多酚化合物,因其调节凋亡基因的能力而成为抗癌应用的热门研究对象。然而,纯多酚化合物存在一些局限性,如生物利用度差、短期稳定性低、细胞摄取率低和溶解度不足等,这些都限制了它们的功效。生物活性剂的纳米级制剂为解决这些局限性提供了一个新平台。本文综述了多酚类药物纳米制剂方法的最新进展及其对改善化疗药物向癌细胞递送的作用。