植物氧脂作为潜在抗癌剂的功能意义和影响

IF 1.5 4区 医学 Q4 CHEMISTRY, MEDICINAL Natural Product Communications Pub Date : 2024-09-04 DOI:10.1177/1934578x241281568
Aboagye Kwarteng Dofuor
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引用次数: 0

摘要

目的植物氧脂是植物体内不饱和脂肪酸通过多种代谢途径氧化转化产生的脂质分子。近来,氧脂的化学多样性和功能意义受到了广泛关注。然而,这些化合物作为抗癌剂的功能意义在很大程度上仍未得到表征。本综述旨在全面综述和分析植物草脂素作为抗癌剂的功能意义,以促进其在药物发现和开发中的利用。数据的整理基于多个数据库和资源,如 Scopus、PubMed、DrugBank 和 PubChem。结果本综述探讨了植物氧脂的起源、抗癌特性和功能机制。本综述探讨了植物氧脂的起源、抗癌特性和功能机制,还强调了新的和特征不明显的植物氧脂的潜在功能意义。此外,还探讨了植物氧脂在研究、医药和生物技术领域的应用前景,以优化其潜力。结论尽管植物中含有丰富的草脂素,但它们作为癌症治疗剂的潜力仍有待充分确定。还需要进行临床研究,以确定安全剂量和有效的给药方法。由于植物氧脂有望解决生物技术、健康和环境可持续发展方面的关键挑战,因此需要对植物氧脂的研究给予高度关注。
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Functional Significance and Implications of Phyto-Oxylipins as Potential Anti-Cancer Agents
ObjectivePhyto-oxylipins are lipid molecules produced in plants by the oxidative transformation of unsaturated fatty acids via diverse metabolic pathways. Recently, the chemical diversity and functional significance of oxylipins is gaining significant attention. However, the functional significance of these compounds as anti-cancer agents remains largely uncharacterized. The objective of this review is to provide a comprehensive synthesis and analysis of the functional significance of plant oxylipins as anti-cancer agents to facilitate their exploitation in drug discovery and development.MethodsThis review was based on a thorough compilation and analysis of research work carried out on biological significance and implications of plant-derived anti-cancer oxylipins. Curation of data was based on several databases and resources such as Scopus, PubMed, DrugBank and PubChem. Within the context of the scope and subject matter as guided by the objective, no exclusion and inclusion criteria were necessarily employed in the screening of articles.ResultsThe present review explores the origins, anti-cancer properties and functional mechanisms of phyto-oxylipins. The potential functional significance of new and poorly characterized plant oxylipins have also been highlighted. The prospects of plant oxylipins in research, medicine and biotechnology that could optimize their potential are also explored. Insights into the promising avenues that may originate from innovative therapeutic approaches are also discussed.ConclusionDespite the rich source of oxylipins in plants, much of their potential as therapeutic agents for cancer treatment remains to be fully established. Clinical investigations are also needed to determine safe doses and effective delivery methods. Research into phyto-oxylipins require significant attention due to the promise it may hold in addressing key challenges in biotechnology, health, and environmental sustainability.
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来源期刊
Natural Product Communications
Natural Product Communications 工程技术-食品科技
CiteScore
3.10
自引率
11.10%
发文量
254
审稿时长
2.7 months
期刊介绍: Natural Product Communications is a peer reviewed, open access journal studying all aspects of natural products, including isolation, characterization, spectroscopic properties, biological activities, synthesis, structure-activity, biotransformation, biosynthesis, tissue culture and fermentation. It covers the full breadth of chemistry, biochemistry, biotechnology, pharmacology, and chemical ecology of natural products. Natural Product Communications is a peer reviewed, open access journal studying all aspects of natural products, including isolation, characterization, spectroscopic properties, biological activities, synthesis, structure-activity, biotransformation, biosynthesis, tissue culture and fermentation. It covers the full breadth of chemistry, biochemistry, biotechnology, pharmacology, and chemical ecology of natural products. Natural Product Communications is a peer reviewed, open access journal studying all aspects of natural products, including isolation, characterization, spectroscopic properties, biological activities, synthesis, structure-activity, biotransformation, biosynthesis, tissue culture and fermentation. It covers the full breadth of chemistry, biochemistry, biotechnology, pharmacology, and chemical ecology of natural products.
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