Department of Pharmacy, Faculty of Medical Sciences, University Goce Delcev - Stip, Macedonia, the Former Yugoslav Republic of.
Department of Pediatrics, University of Minnesota, Minneapolis, United States.
Recent Pat Anticancer Drug Discov. 2019;14(1):19-31. doi: 10.2174/1574892814666190111104834.
The immense development in the field of anticancer research has led to an increase in the research of bioactive compounds with anticancer potential. It has been known that many bioactive natural compounds have low solubility (and low bioavailability) as their main drawback when it comes to the formulation and drug delivery to specific sites.
As many attempts have been made to overcome this issue, this review gives a summary of the current accomplishments regarding the development of new Drug Delivery Systems (DDSs) represented by nanoparticles (NPs) and exosomes.
We analyzed the published data concerning selected compounds that present the most prominent plant secondary metabolites with anticancer potential, specifically flavone (quercetin), isoflavone (genistein and curcumin) and stilbene (resveratrol) groups that have been formulated as NPs and exosomes. In addition, we summarized the patent literature published from 2015-2018 that address these formulations.
Although the exact mechanism of action for the selected natural compounds still remains unclear, the anticancer effect is evident and the main research efforts are directed to finding the most suitable delivery systems. Recent patents in this field serve as evidence that these newly designed natural compound delivery systems could be powerful new anticancer agents in the very near future if the noted difficulties are overcome.
The focus of recent research is not only to clarify the exact mechanisms of action and therapeutic effects, but also to answer the issue of suitable delivery systems that can transport sufficient doses of bioactive compounds to the desired target.
抗癌研究领域的巨大发展导致了对具有抗癌潜力的生物活性化合物的研究增加。众所周知,许多生物活性天然化合物的主要缺点是溶解度低(生物利用度低),这在制剂和药物递送到特定部位时是一个问题。
由于已经尝试了许多方法来克服这个问题,因此,本篇综述总结了目前在开发新的药物传递系统(DDS)方面的进展,这些系统由纳米颗粒(NPs)和外泌体代表。
我们分析了有关具有抗癌潜力的特定植物次生代谢物(黄酮类化合物、异黄酮类化合物、查尔酮类化合物和芪类化合物)的已发表数据,这些化合物已被制成 NPs 和外泌体。此外,我们总结了 2015-2018 年发表的涉及这些制剂的专利文献。
尽管所选天然化合物的确切作用机制仍不清楚,但抗癌效果是明显的,主要的研究工作集中在寻找最合适的传递系统上。该领域的最新专利表明,如果克服了这些问题,这些新设计的天然化合物传递系统在不久的将来可能成为强大的新型抗癌药物。
最近的研究重点不仅在于阐明确切的作用机制和治疗效果,还在于解决能够将足够剂量的生物活性化合物输送到所需靶标的合适传递系统问题。