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槲皮素对癌细胞的治疗潜力和靶向策略:挑战与未来前景。

Therapeutic potentials and targeting strategies of quercetin on cancer cells: Challenges and future prospects.

机构信息

Department of Chemistry, School of Advanced Science, Vellore Institute of Technology, Vellore, 632014 Tamil Nadu, India.

Department of Chemistry, School of Advanced Science, Vellore Institute of Technology, Vellore, 632014 Tamil Nadu, India.

出版信息

Phytomedicine. 2024 Oct;133:155902. doi: 10.1016/j.phymed.2024.155902. Epub 2024 Jul 22.

Abstract

BACKGROUND

Every cell in the human body is vital because it maintains equilibrium and carries out a variety of tasks, including growth and development. These activities are carried out by a set of instructions carried by many different genes and organized into DNA. It is well recognized that some lifestyle decisions, like using tobacco, alcohol, UV, or multiple sexual partners, might increase one's risk of developing cancer. The advantages of natural products for any health issue are well known, and researchers are making attempts to separate flavonoid-containing substances from plants. Various parts of plants contain a phenolic compound called flavonoid. Quercetin, which belongs to the class of compounds known as flavones with chromone skeletal structure, has anti-cancer activity.

PURPOSE

The study was aimed at investigating the therapeutic action of the flavonoid quercetin on various cancer cells.

METHODS

The phrases quercetin, anti-cancer, nanoparticles, and cell line were used to search the data using online resources such as PubMed, and Google Scholar. Several critical previous studies have been included.

RESULTS

Quercetin inhibits various dysregulated signaling pathways that cause cancer cells to undergo apoptosis to exercise its anticancer effects. Numerous signaling pathways are impacted by quercetin, such as the Hedgehog system, Akt, NF-κB pathway, downregulated mutant p53, JAK/STAT, G1 phase arrest, Wnt/β-Catenin, and MAPK. There are downsides to quercetin, like hydrophobicity, first-pass effect, instability in the gastrointestinal tract, etc., because of which it is not well-established in the pharmaceutical industry. The solution to these drawbacks in the future is using bio-nanomaterials like chitosan, PLGA, liposomes, and silk fibroin as carriers, which can enhance the target specificity of quercetin. The first section of this review covers the specifics of flavonoids and quercetin; the second section covers the anti-cancer activity of quercetin; and the third section explains the drawbacks and conjugation of quercetin with nanoparticles for drug delivery by overcoming quercetin's drawback.

CONCLUSIONS

Overall, this review presented details about quercetin, which is a plant derivative with a promising molecular mechanism of action. They inhibit cancer by various mechanisms with little or no side effects. It is anticipated that plant-based materials will become increasingly relevant in the treatment of cancer.

摘要

背景

人体的每个细胞都至关重要,因为它维持着平衡并执行着各种任务,包括生长和发育。这些活动由许多不同的基因携带的一组指令进行,并组织成 DNA。人们已经认识到,一些生活方式的决定,如使用烟草、酒精、紫外线或多个性伴侣,可能会增加患癌症的风险。天然产物对任何健康问题的好处是众所周知的,研究人员正在尝试从植物中分离出含有类黄酮的物质。植物的各个部分都含有一种叫做类黄酮的酚类化合物。槲皮素属于具有色酮骨架结构的类黄酮化合物,具有抗癌活性。

目的

本研究旨在探讨类黄酮槲皮素对各种癌细胞的治疗作用。

方法

使用PubMed 和 Google Scholar 等在线资源,使用“quercetin(槲皮素)”、“anti-cancer(抗癌)”、“nanoparticles(纳米粒子)”和“cell line(细胞系)”等短语搜索数据。纳入了几项先前的关键研究。

结果

槲皮素通过抑制导致癌细胞凋亡的各种失调信号通路来发挥其抗癌作用。许多信号通路受到槲皮素的影响,如 Hedgehog 系统、Akt、NF-κB 途径、下调突变型 p53、JAK/STAT、G1 期阻滞、Wnt/β-Catenin 和 MAPK。槲皮素存在一些缺点,如疏水性、首过效应、在胃肠道中不稳定等,这使得它在制药行业中没有得到很好的应用。未来解决这些缺点的方法是使用生物纳米材料,如壳聚糖、PLGA、脂质体和丝素蛋白作为载体,这可以提高槲皮素的靶向特异性。这篇综述的第一部分涵盖了类黄酮和槲皮素的具体细节;第二部分涵盖了槲皮素的抗癌活性;第三部分解释了槲皮素与纳米粒子结合克服槲皮素的缺点用于药物递送的缺点和共轭。

结论

总的来说,本综述介绍了槲皮素作为一种具有有前途的分子作用机制的植物衍生化合物的详细信息。它们通过各种机制抑制癌症,几乎没有或没有副作用。预计植物性材料将在癌症治疗中变得越来越重要。

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