High-value flavonoids with potential anti-inflammatory benefits from Platanus × acerifolia Willd leaves: Turning waste into treasure

Bibliographic Information
Authors: Wu X.-Y.; Zhao Z.-Y.; Osman E.E.A.; Choo Y.-M.; Xiong J.; Hamann M.T.; Hu J.-F.
Journal: Phytochemistry Letters
Publisher: Elsevier Ltd
Publication Date: December 2024
Volume / Issue: Volume 64
Pages: 56–67
ISSN: 18743900
DOI: 10.1016/j.phytol.2024.10.001
Scopus: View on Scopus
Document Type: Article
Authors and Affiliations
Wu X.-Y., Institute of Natural Medicine and Health Products, School of Pharmaceutical Sciences, Zhejiang Provincial Key Laboratory of Plant Evolutionary Ecology and Conservation, Taizhou University, Zhejiang, 318000, China, Department of Natural Medicine, School of Pharmacy, Fudan University, Shanghai, 201203, China, Shanghai Skin Disease Hospital, Tongji University School of Medicine, Shanghai, 200443, China; Zhao Z.-Y., Institute of Natural Medicine and Health Products, School of Pharmaceutical Sciences, Zhejiang Provincial Key Laboratory of Plant Evolutionary Ecology and Conservation, Taizhou University, Zhejiang, 318000, China, Department of Natural Medicine, School of Pharmacy, Fudan University, Shanghai, 201203, China; Osman E.E.A., Department of Medicinal Chemistry, Theodor Bilharz Research Institute, Kornaish El-Nile St., Giza, 12411, Egypt; Choo Y.-M., Chemistry Department, Faculty of Science, University of Malaya, Kuala Lumpur, 50603, Malaysia; Xiong J., Department of Natural Medicine, School of Pharmacy, Fudan University, Shanghai, 201203, China; Hamann M.T., Colleges of Pharmacy and Medicine, Medical University of South Carolina, Charleston, 29425-5700, United States; Hu J.-F., Institute of Natural Medicine and Health Products, School of Pharmaceutical Sciences, Zhejiang Provincial Key Laboratory of Plant Evolutionary Ecology and Conservation, Taizhou University, Zhejiang, 318000, China, Department of Natural Medicine, School of Pharmacy, Fudan University, Shanghai, 201203, China, Colleges of Pharmacy and Medicine, Medical University of South Carolina, Charleston, 29425-5700, United States
Abstract
The London plane tree (Platanus × acerifolia Willd, PaW) is a deciduous urban ornamental tree extensively found in major cities in Southern China. It produces a significant volume of waste leaves, which hold the potential to serve as an abundant and valuable alternative source of bioactive flavonoids and other bioproducts. The seasonal variations of predominant flavonoids in leaves collected from the same individual PaW trees growing in Shanghai (China) during the life cycle [spring (May 2017), autumn (October 2017), and winter (January 2018)] were estimated according to their HPLC-PDA profiles, which revealed higher content in the samples of May (green pruning waste leaves) and January (brown fallen leaves). A total of 29 flavonoids (1–29) were subsequently isolated from an EtOAc fraction of the 90 % MeOH extract from the May leaves. Their structures were determined by spectroscopic methods, especially 1D- and 2D-NMR techniques. Platanosides 1–3 have been previously described as a unique chemical class of flavonoid glycosides, while isoprenylated flavonols 4 and 5 are reported for the first time in nature. The in-silico molecular docking and in vitro nitric oxide inhibitory studies provided compelling computational and experimental evidence supporting the anti-inflammatory potential of the isolated platanosides. These results demonstrate the significant potential of the waste PaW leaves as a sustainable raw material for large-scale production of flavonoids (especially platanosides), which are highly valued compounds with growing pharmaceutical interest. © 2024 Phytochemical Society of Europe
Keywords
Anti-inflammation; In-silico molecular docking; Nitric oxide inhibitory; Platanosides; Platanus × acerifolia; Waste leaves; flavonoid; flavonoid glycoside; flavonol derivative; nitric oxide; phytochemical; antiinflammatory activity; Article; autumn; China; computer model; high performance liquid chromatography; in vitro study; large scale production; life cycle; molecular docking; nonhuman; nuclear magnetic resonance; ornamental plant; plant leaf; Platanus acerifolia; seasonal variation; tree; winter
Citation Information
Scopus Citations: 8
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