首页> 外文期刊>Cancer letters >Cancer chemotherapy with indole-3-carbinol, bis(3'-indolyl)methane and synthetic analogs.
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Cancer chemotherapy with indole-3-carbinol, bis(3'-indolyl)methane and synthetic analogs.

机译:用吲哚-3-甲醇,双(3'-吲哚基)甲烷和合成类似物进行癌症化学疗法。

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摘要

Indole-3-carbinol (I3C) conjugates are phytochemicals expressed in brassica vegetables and have been associated with the anticancer activities of vegetable consumption. I3C and its metabolite bis(3'-indolyl)methane (DIM) induce overlapping and unique responses in multiple cancer cell lines and tumors, and these include growth inhibition, apoptosis and antiangiogenic activities. The mechanisms of these responses are complex and dependent on cell context. I3C and/or DIM activate or inactivate multiple nuclear receptors, induce endoplasmic reticulum stress, decrease mitochondrial membrane potential, and modulate multiple signaling pathways including kinases. DIM has been used as a template to synthesize a series of 1,1-bis(3'indolyl)-1-(substituted aromatic)methanes (i.e. C-DIMs) which are also cytotoxic to cancer cells and tumors. Some of the effects of C-DIMs resemble those reported for DIM analogs; however, structure-activity studies with the aromatic ring has resulted in generation of highly unique receptor agonists. For example, p-trifluoromethylphenyl, p-t-butylphenyl and p-biphenyl analogs activate peroxisome proliferator-activated receptor gamma (PPARgamma), and p-methoxyphenyl and p-phenyl compounds activate nerve growth factor-induced-Balpha (NGFI-Balpha, Nur77) orphan nuclear receptor. The effects of C-DIMs on PPARgamma and Nur77 coupled with their receptor-independent activities has resulted in the development of a novel group of multi-targeted anticancer drugs with excellent potential for clinical treatment of cancer.
机译:吲哚-3-甲醇(I3C)缀合物是在芸苔属蔬菜中表达的植物化学物质,与蔬菜食用的抗癌活性有关。 I3C及其代谢物双(3'-吲哚基)甲烷(DIM)在多种癌细胞系和肿瘤中诱导重叠和独特的应答,这些应答包括生长抑制,凋亡和抗血管生成活性。这些响应的机制很复杂,并且取决于细胞环境。 I3C和/或DIM激活或灭活多个核受体,诱导内质网应激,降低线粒体膜电位,并调节包括激酶在内的多种信号通路。 DIM已被用作模板来合成一系列对癌细胞和肿瘤具有细胞毒性的1,1-双(3'吲哚基)-1-(取代的芳族)甲烷(即C-DIM)。 C-DIM的某些作用类似于DIM类似物所报道的作用。然而,对芳香环的结构活性研究导致产生了高度独特的受体激动剂。例如,对三氟甲基苯基,对丁基苯基和对联苯基类似物激活过氧化物酶体增殖物激活的受体γ(PPARgamma),对甲氧基苯基和对苯基化合物激活神经生长因子诱导的Balpha(NGFI-Balpha,Nur77)孤儿核受体。 C-DIM对PPARgamma和Nur77的影响及其受体非依赖性活性已导致开发出一组新型的多靶点抗癌药物,在临床上具有极好的临床治疗潜力。

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