Department of Basic Science, Veterinary Medicine Faculty, Tabriz University, Tabriz, Iran.
Department of Basic Science, Shoushtar Branch, Islamic Azad University, Shoushtar, Iran.
Curr Drug Deliv. 2020;17(1):15-22. doi: 10.2174/1567201816666191112113031.
Flavonoids are a large group of naturally occurring compounds, which are of interest due to their great pharmacological effects and health-promoting impacts. These properties have led to their extensive application in a variety of pathological conditions, particularly cancer. Flavonoids are used in large quantities in a human's daily diet and a high amount of flavonoids are found in the intestine after oral usage. However, flavonoid concentrations in tissue/plasma are low because of their low bioavailability, the leading to the low efficacy of flavonoids in different clinical disorders. For this reason, nanotechnology application for delivering flavonoids to tumor sites has recently received significant attention. Silibinin is a key member of flavonoids and a bioactive component of silymarin, which is widely isolated from Silybum marianum. This plant-derived chemical has a number of valuable biological and therapeutic activities such as antioxidant, anti-inflammatory, neuroprotective, anti-tumor, hepatoprotective, cardioprotective and anti-diabetic. These beneficial effects have been demonstrated in in vivo and in vitro experiments. However, it seems that silibinin has a variety of limitations and poor bioavailability is the most important factor restricting its wide application. Hence, there have been attempts to improve the bioavailability of silibinin and it has been suggested that nano-soldiers are potential candidates for this aim. In the present review, we describe the different drug delivery systems for improving the bioavailability of silibinin.
类黄酮是一大类天然存在的化合物,由于其具有强大的药理作用和促进健康的影响而受到关注。这些特性导致它们在各种病理情况下得到广泛应用,特别是癌症。类黄酮在人类的日常饮食中大量使用,并且在口服后大量存在于肠道中。然而,由于其生物利用度低,组织/血浆中的类黄酮浓度较低,导致类黄酮在不同临床疾病中的疗效较低。出于这个原因,最近纳米技术在将类黄酮递送到肿瘤部位方面受到了极大的关注。水飞蓟宾是类黄酮的一个关键成员,也是水飞蓟素的生物活性成分,广泛存在于奶蓟草中。这种植物来源的化学物质具有许多有价值的生物学和治疗活性,如抗氧化、抗炎、神经保护、抗肿瘤、保肝、心脏保护和抗糖尿病。这些有益的效果已经在体内和体外实验中得到了证明。然而,水飞蓟宾似乎存在多种局限性,生物利用度差是限制其广泛应用的最重要因素。因此,人们一直在尝试提高水飞蓟宾的生物利用度,并提出纳米战士是实现这一目标的潜在候选者。在本综述中,我们描述了不同的药物传递系统,以提高水飞蓟宾的生物利用度。