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具有抗癌活性的新型3-氨基-6-氯-7-(唑-2或5-基)-1,1-二氧代-1,4,2-苯并二噻嗪衍生物:合成与定量构效关系研究

Novel 3-Amino-6-chloro-7-(azol-2 or 5-yl)-1,1-dioxo-1,4,2-benzodithiazine Derivatives with Anticancer Activity: Synthesis and QSAR Study.

作者信息

Pogorzelska Aneta, Sławiński Jarosław, Brożewicz Kamil, Ulenberg Szymon, Bączek Tomasz

机构信息

Department of Organic Chemistry, Medical University of Gdańsk, Al. Gen. J. Hallera 107, 80-416 Gdańsk, Poland.

Department of Pharmaceutical Chemistry, Medical University of Gdańsk, Al. Gen. J. Hallera 107, 80-416 Gdańsk, Poland.

出版信息

Molecules. 2015 Dec 9;20(12):21960-70. doi: 10.3390/molecules201219821.

Abstract

A series of new 3-amino-6-chloro-7-(azol-2 or 5-yl)-1,1-dioxo-1,4,2-benzodithiazine derivatives 5a-j have been synthesized and evaluated in vitro for their antiproliferative activity at the U.S. National Cancer Institute. The most active compound 5h showed significant cytotoxic effects against ovarian (OVCAR-3) and breast (MDA-MB-468) cancer (10% and 47% cancer cell death, respectively) as well as a good selectivity toward prostate (DU-145), colon (SW-620) and renal (TK-10) cancer cell lines. To obtain a deeper insight into the structure-activity relationships of the new compounds 5a-j QSAR studies have been applied. Theoretical calculations allowed the identification of molecular descriptors belonging to the RDF (RDF055p and RDF145m in the MOLT-4 and UO-31 QSAR models, respectively) and 3D-MorSE (Mor32m and Mor16e for MOLT-4 and UO-31 QSAR models) descriptor classes. Based on these data, QSAR models with good robustness and predictive ability have been obtained.

摘要

一系列新的3-氨基-6-氯-7-(唑-2或5-基)-1,1-二氧代-1,4,2-苯并二噻嗪衍生物5a-j已被合成,并在美国国立癌症研究所进行了体外抗增殖活性评估。活性最强的化合物5h对卵巢癌(OVCAR-3)和乳腺癌(MDA-MB-468)显示出显著的细胞毒性作用(分别导致10%和47%的癌细胞死亡),并且对前列腺癌(DU-145)、结肠癌(SW-620)和肾癌细胞系(TK-10)具有良好的选择性。为了更深入地了解新化合物5a-j的构效关系,已应用了定量构效关系(QSAR)研究。理论计算能够识别属于RDF(在MOLT-4和UO-31 QSAR模型中分别为RDF055p和RDF145m)和3D-MorSE(对于MOLT-4和UO-31 QSAR模型分别为Mor32m和Mor16e)描述符类别的分子描述符。基于这些数据,获得了具有良好稳健性和预测能力的QSAR模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc12/6332169/9137e03850ac/molecules-20-19821-g001.jpg

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