Interplay Between Traditional and Scientific Knowledge: Phytoconstituents and Their Roles in Lung and Colorectal Cancer Signaling Pathways.

IF 4.8 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Biomolecules Pub Date : 2025-03-05 DOI:10.3390/biom15030380
Ilma Imtiaz, Janet Schloss, Andrea Bugarcic
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引用次数: 0

Abstract

Natural plant products have been used for cancer treatment since ancient times and continue to play a vital role in modern anticancer drug development. However, only a small fraction of identified medicinal plants has been thoroughly investigated, particularly for their effects on cellular pathways in lung and colorectal cancers, two under-researched cancers with poor prognostic outcomes (lung cancers). This review focuses on the lung and colorectal cancer signaling pathways modulated by bioactive compounds from eleven traditional medicinal plants: Curcuma longa, Astragalus membranaceus, Glycyrrhiza glabra, Althaea officinalis, Echinacea purpurea, Sanguinaria canadensis, Codonopsis pilosula, Hydrastis canadensis, Lobelia inflata, Scutellaria baicalensis, and Zingiber officinale. These plants were selected based on their documented use in traditional medicine and modern clinical practice. Selection criteria involved cross-referencing herbs identified in a scoping review of traditional cancer treatments and findings from an international survey on herbal medicine currently used for lung and colorectal cancer management by our research group and the availability of existing literature on their anticancer properties. The review identifies several isolated phytoconstituents from these plants that exhibit anticancer properties by modulating key signaling pathways such as PI3K/Akt/mTOR, RAS/RAF/MAPK, Wnt/β-catenin, and TGF-β in vitro. Notable constituents include sanguinarine, berberine, hydrastine, lobeline, curcumin, gingerol, shogaol, caffeic acid, echinacoside, cichoric acid, glycyrrhizin, 18-β-glycyrrhetinic acid, astragaloside IV, lobetyolin, licochalcone A, baicalein, baicalin, wogonin, and glycyrol. Curcumin and baicalin show preclinical effectiveness but face bioavailability challenges, which may be overcome by combining them with piperine or using oral extracts to enhance gut microbiome conversion, integrating traditional knowledge with modern strategies for improved outcomes. Furthermore, herbal extracts from Echinacea, Glycyrrhiza, and Codonopsis, identified in traditional knowledge, are currently in clinical trials. Notably, curcumin and baicalin also modulate miRNA pathways, highlighting a promising intersection of modern science and traditional medicine. Thus, the development of anticancer therapeutics continues to benefit from the synergy of traditional knowledge, scientific innovation, and technological advancements.

传统和科学知识之间的相互作用:植物成分及其在肺癌和结直肠癌信号通路中的作用。
天然植物产品自古以来就被用于癌症治疗,并在现代抗癌药物开发中继续发挥着至关重要的作用。然而,只有一小部分已确定的药用植物得到了彻底的研究,特别是它们对肺癌和结直肠癌细胞通路的影响,这是两种预后不良的研究不足的癌症(肺癌)。本文综述了姜黄、黄芪、光甘草、杜鹃花、紫锥菊、加拿大血根、党参、加拿大水仙、半边莲、黄芩、生姜等11种传统药用植物的活性成分对肺癌和结直肠癌信号通路的调节作用。这些植物是根据它们在传统医学和现代临床实践中的记录使用而选择的。选择标准包括交叉参考在传统癌症治疗方法的范围审查中确定的草药,以及我们的研究小组对目前用于肺癌和结直肠癌治疗的草药进行的国际调查的结果,以及现有文献关于其抗癌特性的可用性。本综述从这些植物中分离出几种通过体外调节关键信号通路如PI3K/Akt/mTOR、RAS/RAF/MAPK、Wnt/β-catenin和TGF-β而表现出抗癌特性的植物成分。值得注意的成分包括血根碱、小檗碱、水合碱、红莲碱、姜黄素、姜辣素、葱黄醇、咖啡酸、紫锥花苷、菊苣酸、甘草酸、18-β-甘草酸、黄芪甲苷IV、红叶苷、甘草查尔酮A、黄芩苷、黄芩苷、枸杞苷和甘氨醇。姜黄素和黄芩苷显示出临床前的有效性,但面临生物利用度的挑战,可以通过将它们与胡椒碱联合使用或使用口服提取物来增强肠道微生物群的转化,将传统知识与现代策略相结合来改善结果。此外,从传统知识中鉴定的紫锥菊、甘草和党参的草药提取物目前正在临床试验中。值得注意的是,姜黄素和黄芩苷也可以调节miRNA通路,这凸显了现代科学和传统医学的一个有前途的交叉点。因此,抗癌疗法的发展继续受益于传统知识、科学创新和技术进步的协同作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biomolecules
Biomolecules Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
9.40
自引率
3.60%
发文量
1640
审稿时长
18.28 days
期刊介绍: Biomolecules (ISSN 2218-273X) is an international, peer-reviewed open access journal focusing on biogenic substances and their biological functions, structures, interactions with other molecules, and their microenvironment as well as biological systems. Biomolecules publishes reviews, regular research papers and short communications.  Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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