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小檗碱通过靶向致癌信号通路治疗结直肠癌。

Targeting of oncogenic signaling pathways by berberine for treatment of colorectal cancer.

机构信息

Department of Biochemistry and Nutrition, Research Center for Evidence-Based Health Management, Maragheh University of Medical Sciences, Maragheh, Iran.

Research Center for Biochemistry and Nutrition in Metabolic Diseases, Kashan University of Medical Sciences, Kashan, Islamic Republic of Iran.

出版信息

Med Oncol. 2020 Apr 17;37(6):49. doi: 10.1007/s12032-020-01367-9.

Abstract

Studies indicate that inhibiting a single signaling pathway or one single product of a gene is insufficient for the prevention and treatment of cancer. This is due to the fact that dysregulation must occur in more than 500 genes in order to produce a cancerous phenotype. Despite this evidence, available drugs used for cancer treatment focus on a single target. Meanwhile, berberine as a nutraceutical is capable of targeting various processes involved in tumor development including proliferation, invasion, angiogenesis, and metastasis. In comparison with synthetic agents, berberine is cheaper, safer, and more available. Berberine has shown anti-inflammatory properties which make it an ideal option in order to prevent inflammation-associated cancers. Colorectal cancer is one of the most common cancers all over the world and its incidence is increasing each day. Therefore, further investigations about berberine could be helpful in the discovery of novel agents for preventing and/or treating colorectal cancer. This review emphasizes the studies investigating the roles of berberine in colorectal cancer such as controlling cell signaling pathways, inducing apoptosis, regulating microRNAs, attenuating oxidative stress, and affecting inflammation.

摘要

研究表明,抑制单一信号通路或单一基因产物不足以预防和治疗癌症。这是因为要产生癌症表型,必须有超过 500 个基因发生失调。尽管有这些证据,但用于癌症治疗的现有药物仅针对单一靶点。相比之下,黄连素作为一种营养保健品,能够针对肿瘤发展过程中的多个环节,包括增殖、浸润、血管生成和转移。与合成药物相比,黄连素更便宜、更安全、更易得。黄连素具有抗炎特性,使其成为预防炎症相关癌症的理想选择。结直肠癌是全世界最常见的癌症之一,其发病率每天都在增加。因此,对黄连素的进一步研究可能有助于发现预防和/或治疗结直肠癌的新型药物。本综述强调了研究黄连素在结直肠癌中的作用,如控制细胞信号通路、诱导细胞凋亡、调节 microRNAs、减轻氧化应激和影响炎症。

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