Student Research Committee, Kerman University of Medical Sciences, Kerman 7619813159, Iran.
Department of Toxicology & Pharmacology, School of Pharmacy, Kerman University of Medical Sciences, Kerman 7616911319, Iran.
Molecules. 2020 Feb 6;25(3):689. doi: 10.3390/molecules25030689.
Todays, nano-pharmaceutics is emerging as an important field of science to develop and improve efficacy of different drugs. Although nutraceuticals are currently being utilized in the prevention and treatment of various chronic diseases such as cancers, a number of them have displayed issues associated with their solubility, bioavailability, and bio-degradability. In the present review, we focus on curcumin, an important and widely used polyphenol, with diverse pharmacological activities such as anti-inflammatory, anti-carcinogenic, anti-viral, etc. Notwithstanding, it also exhibits poor solubility and bioavailability that may compromise its clinical application to a great extent. Therefore, the manipulation and encapsulation of curcumin into a nanocarrier formulation can overcome these major drawbacks and potentially may lead to a far superior therapeutic efficacy. Among different types of nanocarriers, biological and biopolymer carriers have attracted a significant attention due to their pleiotropic features. Thus, in the present review, the potential protective and therapeutic applications of curcumin, as well as different types of bio-nanocarriers, which can be used to deliver curcumin effectively to the different target sites will be discussed.
如今,纳米制药作为一个重要的科学领域,正在发展和提高不同药物的疗效。虽然营养保健品目前被用于预防和治疗各种慢性疾病,如癌症,但其中一些在溶解度、生物利用度和生物降解性方面存在问题。在本综述中,我们重点介绍姜黄素,一种重要且广泛使用的多酚,具有多种药理活性,如抗炎、抗癌、抗病毒等。然而,它也表现出较差的溶解度和生物利用度,这可能在很大程度上影响其临床应用。因此,将姜黄素操纵和封装到纳米载体制剂中可以克服这些主要缺点,并可能导致更优异的治疗效果。在不同类型的纳米载体中,生物和生物聚合物载体由于其多效性而引起了极大的关注。因此,在本综述中,将讨论姜黄素的潜在保护和治疗应用,以及不同类型的生物纳米载体,这些载体可用于将姜黄素有效递送到不同的靶位。