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利用广泛靶向代谢组学探索()的药用潜力。

Exploring the Medicinal Potential of () Using Widely Targeted Metabolomics.

作者信息

Tan Michele, Chu Jeffrey Shih-Chieh, Swiger Daniel Robin

机构信息

Kultevat Inc., 1100 Corporate Square Drive Suite 261, Creve Coeur, MO 63132, USA.

Metware Biotechnology Inc., 8A Henshaw St., Woburn, MA 01801, USA.

出版信息

Metabolites. 2025 May 3;15(5):306. doi: 10.3390/metabo15050306.

Abstract

: Plant-derived secondary metabolites have long contributed to the discovery of novel therapeutic agents, especially in the treatment of parasitic and infectious diseases in developing countries. Metabolomics provides a systems-level approach to understanding plant biochemistry, enabling the discovery of secondary metabolites with pharmacological relevance. (), widely known for its rubber-producing capabilities, remains underexplored as a medicinal plant. Given the well-established therapeutic properties of and the emerging pharmacological profiles of related species, this study investigates the metabolic composition of roots and leaves to uncover bioactive compounds with antioxidant, anti-inflammatory, or hepatoprotective potential. Widely targeted metabolomics was conducted on 10-month-old field-grown Kultevar™ plants using ultra-performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS). Samples were hand-harvested and preserved on dry ice to maintain biochemical integrity. Metabolite identification and classification were performed using the MWDB and KEGG databases. Principal component analysis (PCA) and orthogonal partial least squares discriminant analysis (OPLS-DA) were used to evaluate metabolic variation between tissues. A total of 1813 metabolites were identified, including flavonoids, alkaloids, lipids, amino acids, and phenolic compounds. Differential analysis revealed 964 significantly altered metabolites-609 downregulated and 355 upregulated in roots relative to leaves. Multivariate analysis confirmed clear tissue-specific metabolic profiles. KEGG pathway enrichment highlighted the involvement of flavonoid biosynthesis, amino acid metabolism, and lipid metabolism pathways, suggesting bioactive potential. This study presents the first comprehensive metabolic profile of , highlighting its potential value beyond rubber production. The detection of numerous therapeutic secondary metabolites supports its promise as a pharmaceutical and nutraceutical resource. Further functional validation of identified compounds is warranted.

摘要

植物源次生代谢产物长期以来一直推动着新型治疗药物的发现,尤其是在发展中国家治疗寄生虫病和传染病方面。代谢组学提供了一种系统层面的方法来理解植物生物化学,有助于发现具有药理学相关性的次生代谢产物。(某植物名称),因其产橡胶能力而广为人知,但作为药用植物仍未得到充分研究。鉴于(某植物名称)已确立的治疗特性以及相关物种新出现的药理学特征,本研究调查了(某植物名称)根和叶的代谢组成,以发现具有抗氧化、抗炎或肝保护潜力的生物活性化合物。使用超高效液相色谱 - 串联质谱法(UPLC-MS/MS)对10个月大的田间种植的Kultevar™(某植物名称)进行了广泛靶向代谢组学分析。样品通过手工收获并保存在干冰上以维持生化完整性。使用MWDB和KEGG数据库进行代谢物鉴定和分类。主成分分析(PCA)和正交偏最小二乘法判别分析(OPLS-DA)用于评估组织间的代谢差异。共鉴定出1813种代谢物,包括黄酮类、生物碱、脂质、氨基酸和酚类化合物。差异分析显示,相对于叶片,根中有964种代谢物显著改变——609种下调,355种上调。多变量分析证实了明显的组织特异性代谢谱。KEGG通路富集突出了黄酮类生物合成、氨基酸代谢和脂质代谢途径的参与,表明具有生物活性潜力。本研究展示了(某植物名称)的首个全面代谢谱,突出了其橡胶生产以外的潜在价值。检测到众多治疗性次生代谢产物支持了其作为药物和营养保健品资源的前景。有必要对已鉴定化合物进行进一步的功能验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e607/12112865/7facea1c539a/metabolites-15-00306-g001.jpg

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