Kaps Anna, Gwiazdoń Paweł, Chodurek Ewa
Department of Biopharmacy, Faculty of Pharmaceutical Sciences in Sosnowiec, Medical University of Silesia, Katowice, Poland, 8 Jedności Str., 41-208 Sosnowiec, Poland.
Molecules. 2021 Mar 21;26(6):1764. doi: 10.3390/molecules26061764.
The search for safe and effective anticancer therapies is one of the major challenges of the 21st century. The ineffective treatment of cancers, classified as civilization diseases, contributes to a decreased quality of life, health loss, and premature mortality in oncological patients. Many natural phytochemicals have anticancer potential. Pentacyclic triterpenoids, characterized by six- and five-membered ring structures, are one of the largest class of natural metabolites sourced from the plant kingdom. Among the known natural triterpenoids, we can distinguish lupane-, oleanane-, and ursane-types. Pentacyclic triterpenoids are known to have many biological activities, e.g., anti-inflammatory, antibacterial, hepatoprotective, immunomodulatory, antioxidant, and anticancer properties. Unfortunately, they are also characterized by poor water solubility and, hence, low bioavailability. These pharmacological properties may be improved by both introducing some modifications to their native structures and developing novel delivery systems based on the latest nanotechnological achievements. The development of nanocarrier-delivery systems is aimed at increasing the transport capacity of bioactive compounds by enhancing their solubility, bioavailability, stability in vivo and ensuring tumor-targeting while their toxicity and risk of side effects are significantly reduced. Nanocarriers may vary in sizes, constituents, shapes, and surface properties, all of which affect the ultimate efficacy and safety of a given anticancer therapy, as presented in this review. The presented results demonstrate the high antitumor potential of systems for delivery of pentacyclic triterpenoids.
寻找安全有效的抗癌疗法是21世纪的主要挑战之一。癌症作为一种文明病,治疗效果不佳导致肿瘤患者生活质量下降、健康受损和过早死亡。许多天然植物化学物质具有抗癌潜力。五环三萜类化合物以六元环和五元环结构为特征,是植物界来源的最大一类天然代谢产物之一。在已知的天然三萜类化合物中,我们可以区分羽扇豆烷型、齐墩果烷型和乌苏烷型。已知五环三萜类化合物具有多种生物活性,如抗炎、抗菌、保肝、免疫调节、抗氧化和抗癌特性。不幸的是,它们还具有水溶性差、生物利用度低的特点。通过对其天然结构进行一些修饰以及基于最新纳米技术成果开发新型给药系统,可以改善这些药理特性。纳米载体给药系统的开发旨在通过提高生物活性化合物的溶解度、生物利用度、体内稳定性并确保肿瘤靶向性,同时显著降低其毒性和副作用风险,来提高生物活性化合物的运输能力。纳米载体在尺寸、成分、形状和表面性质上可能有所不同,正如本综述中所介绍的,所有这些都会影响特定抗癌疗法的最终疗效和安全性。所呈现的结果证明了五环三萜类化合物给药系统具有很高的抗肿瘤潜力。