植物化学介导的信号通路调节:药物发现的前景广阔的途径

Jibon Kumar Paul , Mahir Azmal , ANM Shah Newaz Been Haque , Omar Faruk Talukder , Meghla Meem , Ajit Ghosh
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引用次数: 0

摘要

植物化学物质是从植物中提取的生物活性化合物,以其治疗潜力而闻名。本研究探讨了它们在治疗和药物开发中的关键作用,重点是它们与关键信号通路和生物过程的相互作用。姜黄中的姜黄素、葡萄中的白藜芦醇和绿茶中的表没食子儿茶素没食子酸酯(EGCG)等植物化学物质主要通过调节 PI3K/AKT、MAPK-ERK、Wnt 和 Hedgehog 等关键通路来发挥其作用,而这些通路与细胞功能和疾病进展密不可分。姜黄素等植物化学物质通过抑制参与细胞增殖的蛋白质、诱导细胞凋亡和抑制血管生成,显示出强大的抗癌活性。白藜芦醇等植物化学物质还能通过靶向细胞因子的产生和氧化应激途径发挥抗炎作用,从而缓解与各种疾病有关的慢性炎症。它们(如 EGCG)的抗氧化能力有助于中和自由基,减少氧化损伤,促进细胞健康和长寿。此外,植物化学物质通过调节葡萄糖代谢、血脂状况和胰岛素敏感性,在糖尿病和肥胖症等代谢性疾病中发挥着关键作用。它们还能保护神经细胞、增强认知功能,并有可能减轻神经炎症和氧化应激,从而有望治疗神经退行性疾病。例如,小檗碱是一种存在于多种植物中的生物碱,有望调节血糖水平并改善胰岛素敏感性。此外,已知人参中的人参皂苷可以保护神经元细胞,增强认知功能,并有可能减轻神经退行性疾病中的神经炎症和氧化应激。尽管人参皂苷具有良好的治疗效果,但仍存在一些挑战,特别是在确保生物利用度和临床使用的植物化学提取物标准化方面。筛选技术和配制策略的进步旨在提高植物化学提取物的功效,并将其融入现代治疗方法中。植物化学提取物在调节细胞过程中的多方面作用凸显了其作为传统药物疗法的潜在替代品或补充剂的重要性,推动了药物开发和个性化医疗的创新。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Phytochemical-mediated modulation of signaling pathways: A promising avenue for drug discovery

Phytochemical-mediated modulation of signaling pathways: A promising avenue for drug discovery

Phytochemicals are bioactive compounds derived from plants, renowned for their therapeutic potential. This study explores their pivotal roles in therapy and drug development, focusing on their interactions with crucial Signaling pathways and biological processes. Phytochemicals such as curcumin from turmeric, resveratrol from grapes, and epigallocatechin gallate (EGCG) from green tea, exert their effects primarily by modulating key pathways like PI3K/AKT, MAPK-ERK, Wnt, and Hedgehog, which are integral to cellular functions and disease progression. Phytochemicals like curcumin demonstrate potent anticancer activities by inhibiting proteins involved in cell proliferation, inducing apoptosis, and suppressing angiogenesis. Phytochemicals such as resveratrol also exhibit anti-inflammatory properties by targeting cytokine production and oxidative stress pathways, thereby alleviating chronic inflammatory conditions implicated in various diseases. Their (eg. EGCG's) antioxidant capabilities help neutralize free radicals and reduce oxidative damage, contributing to cellular health and longevity. Moreover, phytochemicals play a pivotal role in metabolic disorders such as diabetes and obesity by regulating glucose metabolism, lipid profiles, and insulin sensitivity. They also show promise in neurodegenerative diseases by protecting neuronal cells, enhancing cognitive functions, and potentially mitigating neuroinflammation and oxidative stress. For instance, berberine, an alkaloid found in several plants, shows promise in regulating glucose levels and improving insulin sensitivity. Additionally, ginsenosides from ginseng are known to protect neuronal cells, enhance cognitive functions, and potentially mitigate neuroinflammation and oxidative stress in neurodegenerative diseases. Despite their promising therapeutic benefits, challenges remain, particularly in ensuring bioavailability and standardization of phytochemical extracts for clinical use. Advances in screening techniques and formulation strategies aim to enhance their efficacy and integration into modern therapeutic approaches. Their multifaceted roles in modulating cellular processes underscore their importance as potential alternatives or complements to traditional pharmacotherapies, driving innovation in drug development and personalized medicine.

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