Chen Fengqian, Liu Qi
Translational Research Program, Department of Anesthesiology and Center for Shock Trauma Anesthesiology Research, University of Maryland School of Medicine, Baltimore, MD 21201, United States.
Department of Dermatology, Johns Hopkins University School of Medicine, Cancer Research Building II, Suite 216, 1550 Orleans Street, Baltimore, MD 21231, United States.
Adv Drug Deliv Rev. 2022 Jul;186:114317. doi: 10.1016/j.addr.2022.114317. Epub 2022 May 6.
In the past decades, phytoconstituents have appeared as critical mediators for immune regulations among various diseases, both in eukaryotes and prokaryotes. These bioactive molecules, showing a broad range of biological functions, would hold tremendous promise for developing new therapeutics. The discovery of phytoconstituents' capability of functionally regulating immune cells and associating cytokines, suppressing systemic inflammation, and remodeling immunity have rapidly promoted the idea of their employment as anti-inflammatory agents. In this review, we discuss various roles of phyto-derived medicines in the field of inflammatory diseases, including chronic inflammation, autoimmune diseases, and acute inflammatory disease such as COVID-19. Nevertheless, traditional phyto-derived medicines often concurred with their clinical administration limitations, such as their lack of cell specificity, inefficient cytoplasmic delivery, and rapid clearance by the immune system. As alternatives, phyto-derived nano-approaches may provide significant benefits. Both unmodified and engineered nanocarriers present the potential to serve as phytoconstituent delivery systems to improve therapeutic physio-chemical properties and pharmacokinetic profiles. Thus, the development of phytoconstituents' nano-delivery designs, their new and perspective approaches for therapeutical applications are elaborated herein.
在过去几十年中,植物成分已成为真核生物和原核生物中各种疾病免疫调节的关键介质。这些生物活性分子具有广泛的生物学功能,在开发新疗法方面具有巨大潜力。植物成分在功能上调节免疫细胞和相关细胞因子、抑制全身炎症以及重塑免疫的能力的发现,迅速推动了将其用作抗炎剂的想法。在本综述中,我们讨论了植物源药物在炎症性疾病领域的各种作用,包括慢性炎症、自身免疫性疾病以及 COVID-19 等急性炎症性疾病。然而,传统的植物源药物往往存在临床给药局限性,例如缺乏细胞特异性、细胞质递送效率低下以及被免疫系统快速清除。作为替代方案,植物源纳米方法可能会带来显著益处。未修饰的和经过工程改造的纳米载体都有潜力作为植物成分递送系统,以改善治疗的物理化学性质和药代动力学特征。因此,本文阐述了植物成分纳米递送设计的发展、其治疗应用的新方法和前景。