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甾体吡喃类衍生物的合成及生物研究。

Synthesis and biological studies of steroidal pyran based derivatives.

机构信息

Department of Chemistry, Aligarh Muslim University, Aligarh 202002, India.

出版信息

J Photochem Photobiol B. 2013 Dec 5;129:36-47. doi: 10.1016/j.jphotobiol.2013.09.004. Epub 2013 Oct 8.

Abstract

Steroid based cancer chemotherapeutic agents of the type 2'-amino-3'-cyanocholest-6-eno[5,7-de]4H-pyrans (1c-3c) have been synthesized and characterized by the various spectroscopic and analytical techniques. The DNA binding studies of compounds (1c-3c) with CT DNA were carried out by UV-vis and fluorescence spectroscopy and gel electrophoresis. The compounds (1c-3c) bind to DNA preferentially through electrostatic and hydrophobic interactions with Kb values found to be 5.4 × 10(3), 2.3 × 10(3)M(-1) and 1.97 × 10(3)M(-1), respectively indicating the higher binding affinity of compound (1c) towards DNA. The molecular docking study suggested that the electrostatic interaction of compounds (1c-3c) in between the nucleotide base pairs is due to the presence of pyran moiety in steroid molecule. All the compounds (1c-3c) cleave supercoiled pBR322 DNA via hydrolytic pathway, as validated by T4 DNA ligase assay. The compounds (1c-3c) were screened for in vitro cytotoxicity against the cancer and non-cancer cells SW480, A549, HepG2, HeLa, MCF-7, HL-60, DU-145, NL-20, HPC and HPLF by MTT assay. The compounds (1c-3c) were tested for genotoxicity (comet assay) involving apoptotic degradation of DNA and was analyzed by agarose gel electrophoresis and visualized by ethidium bromide staining. The results revealed that compound (1c) has better prospectus to act as cancer chemotherapeutic candidate which warrants further in vivo anticancer investigations.

摘要

已经合成了 2'-氨基-3'-氰基胆甾-6-烯[5,7-de]4H-吡喃(1c-3c)类型的基于类固醇的癌症化学治疗剂,并通过各种光谱和分析技术对其进行了表征。通过紫外可见光谱法和荧光光谱法以及凝胶电泳法研究了化合物(1c-3c)与 CT-DNA 的 DNA 结合。这些化合物(1c-3c)通过静电和疏水相互作用优先与 DNA 结合,Kb 值分别为 5.4×10(3)、2.3×10(3)M(-1)和 1.97×10(3)M(-1),表明化合物(1c)对 DNA 的结合亲和力更高。分子对接研究表明,化合物(1c-3c)在核苷酸碱基对之间的静电相互作用是由于甾体分子中吡喃部分的存在。所有化合物(1c-3c)均通过水解途径切割超螺旋 pBR322 DNA,这通过 T4 DNA 连接酶测定得到了验证。通过 MTT 测定法,在体外对 SW480、A549、HepG2、HeLa、MCF-7、HL-60、DU-145、NL-20、HPC 和 HPLF 等癌细胞和非癌细胞对化合物(1c-3c)进行了细胞毒性筛选。通过琼脂糖凝胶电泳分析和溴化乙锭染色进行分析,对化合物(1c-3c)的遗传毒性(彗星试验)进行了测试,涉及 DNA 的凋亡降解。结果表明,化合物(1c)具有作为癌症化学治疗候选物的更好前景,这需要进一步进行体内抗癌研究。

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