Graduate Institute of Pharmacognosy, College of Pharmacy, Taipei Medical University, Taipei 11031, Taiwan.
Department of Pharmacognosy, Faculty of Pharmacy, Ain-Shams University, Organization of African Unity Street, Abassia, Cairo 11566, Egypt.
Mar Drugs. 2023 Aug 18;21(8):456. doi: 10.3390/md21080456.
Inflammation is a critical defense mechanism that is utilized by the body to protect itself against pathogens and other noxious invaders. However, if the inflammatory response becomes exaggerated or uncontrollable, its original protective role is not only demolished but it also becomes detrimental to the affected tissues or even to the entire body. Thus, regulating the inflammatory process is crucial to ensure that it is resolved promptly to prevent any subsequent damage. The role of neutrophils in inflammation has been highlighted in recent decades by a plethora of studies focusing on neutrophilic inflammatory diseases as well as the mechanisms to regulate the activity of neutrophils during the overwhelmed inflammatory process. As natural products have demonstrated promising effects in a wide range of pharmacological activities, they have been investigated for the discovery of new anti-inflammatory therapeutics to overcome the drawbacks of current synthetic agents. Octocorals have attracted scientists as a plentiful source of novel and intriguing marine scaffolds that exhibit many pharmacological activities, including anti-inflammatory effects. In this review, we aim to provide a summary of the neutrophilic anti-inflammatory properties of these marine organisms that were demonstrated in 46 studies from 1995 to the present (April 2023). We hope the present work offers a comprehensive overview of the anti-inflammatory potential of octocorals and encourages researchers to identify promising leads among numerous compounds isolated from octocorals over the past few decades to be further developed into anti-inflammatory therapeutic agents.
炎症是一种重要的防御机制,身体利用它来保护自己免受病原体和其他有害物质的侵害。然而,如果炎症反应变得过度或失控,它最初的保护作用不仅会被破坏,而且还会对受影响的组织甚至整个身体造成损害。因此,调节炎症过程至关重要,以确保炎症迅速得到解决,防止任何后续损伤。最近几十年,大量研究集中在中性粒细胞炎症性疾病以及在炎症反应失控期间调节中性粒细胞活性的机制上,强调了中性粒细胞在炎症中的作用。由于天然产物在广泛的药理活性中表现出良好的效果,它们被用于发现新的抗炎治疗方法,以克服当前合成药物的缺点。八角珊瑚作为新型有趣的海洋支架的丰富来源,吸引了科学家们的关注,这些支架具有多种药理活性,包括抗炎作用。在这篇综述中,我们旨在总结 1995 年至 2023 年 4 月期间 46 项研究中这些海洋生物的中性粒细胞抗炎特性。我们希望本工作提供了八角珊瑚抗炎潜力的全面概述,并鼓励研究人员在过去几十年中从八角珊瑚中分离出的众多化合物中识别有前途的先导化合物,进一步开发成抗炎治疗药物。