Burlec Ana Flavia, Hăncianu Monica, Ivănescu Bianca, Macovei Irina, Corciovă Andreia
Department of Drug Analysis, Faculty of Pharmacy, "Grigore T. Popa" University of Medicine and Pharmacy, 16 University Street, 700115 Iasi, Romania.
Department of Pharmacognosy, Faculty of Pharmacy, "Grigore T. Popa" University of Medicine and Pharmacy, 16 University Street, 700115 Iasi, Romania.
Antioxidants (Basel). 2024 Jul 28;13(8):912. doi: 10.3390/antiox13080912.
Psoriasis is a chronic inflammatory disease that affects around 2-3% of the world's population. The treatment for this autoimmune disease still remains centered around conventional methods using synthetic substances, even though more recent advancements focus on biological therapies. Given the numerous side effects of such treatments, current research involves plant extracts and constituents that could prove useful in treating psoriasis. The aim of this narrative review is to highlight the most known representatives belonging to classes of natural compounds such as polyphenols (e.g., astilbin, curcumin, hesperidin, luteolin, proanthocyanidins, and resveratrol), alkaloids (e.g., berberine, capsaicin, and colchicine), coumarins (psoralen and 8-methoxypsoralen), and terpenoids (e.g., celastrol, centelloids, and ursolic acid), along with plants used in traditional medicine that could present therapeutic potential in psoriasis. The paper also provides an overview of these compounds' mechanisms of action and current inclusion in clinical studies, as well as an investigation into their potential incorporation in various nanotechnological systems, such as lipid-based nanocarriers or polymeric nanomaterials, that may optimize their efficacy during treatment.
银屑病是一种慢性炎症性疾病,影响着全球约2%-3%的人口。尽管最近的进展集中在生物疗法上,但这种自身免疫性疾病的治疗仍然以使用合成物质的传统方法为中心。鉴于此类治疗存在诸多副作用,目前的研究涉及可能对治疗银屑病有用的植物提取物和成分。本叙述性综述的目的是强调天然化合物类别中最知名的代表,如多酚类(如落新妇苷、姜黄素、橙皮苷、木犀草素、原花青素和白藜芦醇)、生物碱类(如小檗碱、辣椒素和秋水仙碱)、香豆素类(补骨脂素和8-甲氧基补骨脂素)和萜类(如雷公藤红素、积雪草苷类和熊果酸),以及在传统医学中使用的可能对银屑病具有治疗潜力的植物。本文还概述了这些化合物的作用机制和目前在临床研究中的应用情况,并探讨了它们在各种纳米技术系统(如脂质基纳米载体或聚合物纳米材料)中的潜在应用,这些系统可能会在治疗过程中优化它们的疗效。