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

IF 1.3 4区 生物学 Q4 CHEMISTRY, MEDICINAL Phytochemistry Letters Pub Date : 2024-10-16 DOI:10.1016/j.phytol.2024.10.001
Xi-Ying Wu , Ze-Yu Zhao , Ezzat E.A. Osman , Yeun-Mun Choo , Juan Xiong , Mark T. Hamann , Jin-Feng Hu
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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 (129) 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 13 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.
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从 Platanus × acerifolia Willd 树叶中提取具有潜在抗炎功效的高价值类黄酮:变废为宝
伦敦梧桐(Platanus × acerifolia Willd,PaW)是一种落叶城市观赏树种,广泛分布于中国南方各大城市。它产生了大量的废弃树叶,这些树叶有可能成为生物活性类黄酮和其他生物产品的丰富而宝贵的替代来源。根据HPLC-PDA图谱估算了从生长在中国上海的同一楠木个体的生命周期[春季(2017年5月)、秋季(2017年10月)和冬季(2018年1月)]中采集的叶片中主要黄酮类化合物的季节性变化,结果显示5月(绿色修剪废叶)和1月(褐色落叶)的样品中黄酮类化合物含量较高。随后,从五月份叶片的 90 % MeOH 提取物的乙酸乙酯馏分中分离出了总共 29 种黄酮类化合物(1-29)。通过光谱方法,特别是一维和二维核磁共振技术,确定了它们的结构。桔梗苷 1-3 以前已被描述为一类独特的黄酮苷化学成分,而异戊烯化黄酮 4 和 5 则是首次在自然界报道。室内分子对接和体外一氧化氮抑制研究提供了令人信服的计算和实验证据,支持分离出的桔梗苷具有抗炎潜力。这些结果表明,废弃的 PaW 树叶作为大规模生产黄酮类化合物(尤其是桔梗苷)的可持续原料具有巨大的潜力,而黄酮类化合物是价值极高的化合物,在制药方面的研究兴趣与日俱增。
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来源期刊
Phytochemistry Letters
Phytochemistry Letters 生物-生化与分子生物学
CiteScore
3.00
自引率
11.80%
发文量
190
审稿时长
34 days
期刊介绍: Phytochemistry Letters invites rapid communications on all aspects of natural product research including: • Structural elucidation of natural products • Analytical evaluation of herbal medicines • Clinical efficacy, safety and pharmacovigilance of herbal medicines • Natural product biosynthesis • Natural product synthesis and chemical modification • Natural product metabolism • Chemical ecology • Biotechnology • Bioassay-guided isolation • Pharmacognosy • Pharmacology of natural products • Metabolomics • Ethnobotany and traditional usage • Genetics of natural products Manuscripts that detail the isolation of just one new compound are not substantial enough to be sent out of review and are out of scope. Furthermore, where pharmacology has been performed on one new compound to increase the amount of novel data, the pharmacology must be substantial and/or related to the medicinal use of the producing organism.
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