Department of Energy and Materials Engineering, Dongguk University, 30 Pildong-ro 1-gil, Seoul, 04620, South Korea.
Department of Biological Engineering, NanoBio High-Tech Materials Research Center, Inha University, Incheon 22212, Republic of Korea.
Pharmacol Res. 2021 Jan;163:105313. doi: 10.1016/j.phrs.2020.105313. Epub 2020 Nov 24.
Understanding how the natural products structural diversity interacts with cellular metabolism and infectious disease targets remains a challenge. Inflammation is an important process in the human healing response in which the tissues respond to injuries induced by many agents, including pathogens. In recent years, several drugs derived from plant products have been developed, and current drug research is actively investigating the pharmacotherapeutic role of natural products in advanced multimodal inflammatory disease targeting. Sugiol, a diterpenoid, can act as an antimicrobial, antioxidant, anti-inflammatory, anti-carcinoma, antiviral, and cardiovascular agent. Until now, there have been no updates on the pharmacotherapeutic advancement of sugiol. Herein, we correlate the diverse molecular pathways in disease prevention involving sugiol. We also discuss the origins of its structural diversity and summarize new research directions toward exploring its novel effective future uses. Despite much evidence of its efficacy and safety, the sugiol has not yet been approved as a therapeutic agent due to its low bioavailability, and insolubility in an aqueous environment. The aim of this review is to renew and update noteworthy information on the pharmacotherapeutic characteristics of sugiol to approach different advanced strategies employed in the context of natural nurturing-based biomedicine.
了解天然产物结构多样性如何与细胞代谢和感染性疾病靶点相互作用仍然是一个挑战。炎症是人体愈合反应中的一个重要过程,在这个过程中,组织对许多因素(包括病原体)引起的损伤做出反应。近年来,已经开发出几种源自植物产品的药物,目前的药物研究正在积极研究天然产物在针对先进多模式炎症性疾病的药物治疗中的作用。贝壳杉烯二醇是一种二萜,可作为一种抗菌、抗氧化、抗炎、抗癌、抗病毒和心血管药物。到目前为止,还没有关于贝壳杉烯二醇药物治疗进展的最新消息。本文中,我们将贝壳杉烯二醇在疾病预防中的多种分子途径联系起来。我们还讨论了其结构多样性的起源,并总结了探索其新颖有效未来用途的新研究方向。尽管有大量证据表明其疗效和安全性,但由于其生物利用度低且在水环境中不溶解,贝壳杉烯二醇尚未被批准作为治疗剂。本综述的目的是更新和提供关于贝壳杉烯二醇药物治疗特性的有价值信息,以探讨基于天然培育的生物医学中使用的不同先进策略。