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引用次数: 0
摘要
绿原酸(CHA)是一种酚类物质,存在于茶叶和绿咖啡提取物等多种可食用植物中。在临床前和临床环境中,这种化学物质在降低多种疾病的发病概率方面具有显著疗效。绿原酸(CHA)具有多种药理特性,如抗癌、保肝、抗菌、免疫抑制、抗氧化和抗糖尿病等活性。其应用领域涉及食品、化工、医药和保健等多个行业。研究表明,CHA 可以通过多种机制发挥抗癌作用。它可以阻碍细胞分裂过程,引发细胞凋亡,抑制癌细胞生长。为本研究进行的文献研究揭示了影响不同信号通路的各种分子和细胞过程。这些机制包括血管生成、侵袭和迁移、氧化应激、炎症、细胞周期停滞和增殖。然而,CHA 的使用存在重大问题,主要是由于其在动物模型中的生物利用度有限。本综述重点介绍 CHA 的化学成分、天然来源、药代动力学、基本作用机制及其在治疗癌症等危及生命的疾病中的临床应用。稿件还对新型制剂方法进行了深入探讨。
Exploring the Pharmacological Potential of Chlorogenic acid as an Anti-Cancer Agent and a Call for Advance Research.
Chlorogenic acid (CHA) is a phenolic substance found in various edible plants, such as tea and green coffee extracts. This chemical has demonstrated significant efficacy in reducing the probability of many diseases in preclinical and clinical environments. Chlorogenic acid (CHA) possesses several pharmacological attributes, such as anticancer, hepatoprotective, antimicrobial, immune-suppressant, antioxidant, and antidiabetic activities. Its applications extend to multiple industries, such as food, chemicals, medicine, and healthcare. Studies have shown that CHA can exert its anticancer effects through numerous mechanisms. It can hinder the process of cell division, trigger cell apoptosis, and suppress an increase in cancerous cell growth. The literature research conducted for this study revealed a variety of molecular and cellular processes influencing distinct signaling pathways. These mechanisms include angiogenesis, invasion and migration, oxidative stress, inflammation, cell cycle arrest, and proliferation.However, significant issues surround the use of CHA, primarily due to its limited bioavailability in animal models. This review focuses on the chemistry, natural sources, pharmacokinetics, and underlying mechanisms of action of CHA and its clinical utility in treating life-threatening diseases, such as cancer. The manuscript provides insight into novel formulation approaches.
期刊介绍:
Combinatorial Chemistry & High Throughput Screening (CCHTS) publishes full length original research articles and reviews/mini-reviews dealing with various topics related to chemical biology (High Throughput Screening, Combinatorial Chemistry, Chemoinformatics, Laboratory Automation and Compound management) in advancing drug discovery research. Original research articles and reviews in the following areas are of special interest to the readers of this journal:
Target identification and validation
Assay design, development, miniaturization and comparison
High throughput/high content/in silico screening and associated technologies
Label-free detection technologies and applications
Stem cell technologies
Biomarkers
ADMET/PK/PD methodologies and screening
Probe discovery and development, hit to lead optimization
Combinatorial chemistry (e.g. small molecules, peptide, nucleic acid or phage display libraries)
Chemical library design and chemical diversity
Chemo/bio-informatics, data mining
Compound management
Pharmacognosy
Natural Products Research (Chemistry, Biology and Pharmacology of Natural Products)
Natural Product Analytical Studies
Bipharmaceutical studies of Natural products
Drug repurposing
Data management and statistical analysis
Laboratory automation, robotics, microfluidics, signal detection technologies
Current & Future Institutional Research Profile
Technology transfer, legal and licensing issues
Patents.