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使用硝酸镧作为催化剂合成β-咔啉-苯并咪唑缀合物及其生物评价。

Synthesis of β-carboline-benzimidazole conjugates using lanthanum nitrate as a catalyst and their biological evaluation.

机构信息

Medicinal Chemistry and Pharmacology, CSIR - Indian Institute of Chemical Technology, Hyderabad 500 007, India.

出版信息

Org Biomol Chem. 2014 Apr 21;12(15):2370-87. doi: 10.1039/c3ob42236d.

Abstract

A series of β-carboline-benzimidazole conjugates bearing a substituted benzimidazole and an aryl ring at C3 and C1 respectively were designed and synthesized. The key step of their preparation was determined to involve condensation of substituted o-phenylenediamines with 1-(substituted phenyl)-9H-pyrido[3,4-b]indole-3-carbaldehyde using La(NO3)3·6H2O as a catalyst and their cytotoxic potential was evaluated. Conjugates 5a, 5d, 5h and 5r showed enhanced cytotoxic activity (GI50 values range from 0.3 to 7.1 μM in most of the human cancer cell lines) in comparison to some of the previously reported β-carboline derivatives. To substantiate the cytotoxic activity and to understand the nature of interaction of these conjugates with DNA, spectroscopy, DNA photocleavage and DNA topoisomerase I inhibition (topo-I) studies were performed. These conjugates (5a, 5d and 5r) effectively cleave pBR322 plasmid DNA in the presence of UV light. In addition, the effect of these conjugates on DNA Topo I inhibition was studied. The mode of binding of these new conjugates with DNA was also examined by using both biophysical as well as molecular docking studies, which supported their multiple modes of interaction with DNA. Moreover, an in silico study of these β-carboline-benzimidazole conjugates reveals that they possess drug-like properties.

摘要

一系列分别在 C3 和 C1 位带有取代苯并咪唑和芳基环的β-咔啉-苯并咪唑缀合物被设计和合成。其制备的关键步骤被确定为使用 La(NO3)3·6H2O 作为催化剂,使取代的邻苯二胺与 1-(取代苯基)-9H-吡啶并[3,4-b]吲哚-3-甲醛缩合,并评估了它们的细胞毒性潜力。与一些先前报道的β-咔啉衍生物相比,缀合物 5a、5d、5h 和 5r 表现出增强的细胞毒性活性(在大多数人癌细胞系中,GI50 值范围为 0.3 至 7.1 μM)。为了证实细胞毒性活性并了解这些缀合物与 DNA 的相互作用性质,进行了光谱学、DNA 光解和 DNA 拓扑异构酶 I 抑制(topo-I)研究。这些缀合物(5a、5d 和 5r)在存在紫外光的情况下有效地切割 pBR322 质粒 DNA。此外,还研究了这些缀合物对 DNA Topo I 抑制的影响。还通过使用生物物理和分子对接研究检查了这些新缀合物与 DNA 的结合方式,这支持了它们与 DNA 的多种相互作用模式。此外,这些β-咔啉-苯并咪唑缀合物的计算机模拟研究表明它们具有类药性。

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