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新型硝基苯并唑并[3,2-]喹啉鎓盐通过涉及DNA损伤、细胞周期变化和线粒体通透性改变的机制诱导细胞死亡。

Novel Nitrobenzazolo[3,2-]quinolinium Salts Induce Cell Death through a Mechanism Involving DNA Damage, Cell Cycle Changes, and Mitochondrial Permeabilization.

作者信息

Vélez Christian, Cox Osvaldo, Rosado-Berrios Carlos A, Molina Dennise, Arroyo Luz, Carro Sujey, Filikov Anton, Kumar Vineet, Malhotra Sanjay V, Cordero Marisol, Zayas Beatriz

机构信息

Universidad Metropolitana, San Juan, Puerto Rico.

Arkansas State University, Jonesboro, USA.

出版信息

Open J Apoptosis. 2013 Apr 29;2(2):13-22. doi: 10.4236/ojapo.2013.22002.

Abstract

This study reports the capacity of three nitro substituted benzazolo[3,2-]quinolinium salts NBQs: NBQ 95 (NSC-763304), NBQ 38 (NSC 763305), and NBQ 97 (NSC-763306) as potential antitumor agents. NBQ's are unnatural alkaloids possessing a positive charge that could facilitate interaction with cell organelles. The anticancer activities of these compounds were evaluated through the National Cancer Institute (NCI) 60 cell line screening which represents diverse histologies. The screening was performed at 10 µM on all cell lines. Results from the NCI screening indicated cytotoxicity activity on six cell lines. In order to explore a possible mechanism of action, a detailed biological activity study of NBQ 95 and NBQ 38 was performed on A431 human epidermoid carcinoma cells to determine an apoptotic pathway involving, cell cycle changes, DNA fragmentation, mutations, mitochondrial membrane permeabilization and caspases activation. DNA fragmentation, cell cycle effects, mutagenesis, mitochondrial permeabilization and activation of caspases were determined by fluorimetry and differential imaging. Our data showed that A431 growth was inhibited with an average IC of 30 µM. In terms of the mechanism, these compounds interacted with DNA causing fragmentation and cell cycle arrest at sub G/G stage. Mutagenesis was higher for NBQ 38 and moderate for NBQ 95 Mitochon-drial permeabilization was observed with NBQ 38 and slightly for NBQ 95. Both compounds caused activation of Caspases 3 and 7 suggesting an apoptotic cell death pathway through an intrinsic mechanism. This study reports evidence of the toxicity of these novel compounds with overlapping structural and mechanistic similarities to ellipticine, a known anti-tumor compound.

摘要

本研究报告了三种硝基取代的苯并唑并[3,2 - ]喹啉鎓盐(NBQs):NBQ 95(NSC - 763304)、NBQ 38(NSC 763305)和NBQ 97(NSC - 763306)作为潜在抗肿瘤药物的能力。NBQs是具有正电荷的非天然生物碱,这可能有助于与细胞器相互作用。这些化合物的抗癌活性通过美国国立癌症研究所(NCI)的60种细胞系筛选进行评估,这些细胞系代表了不同的组织学类型。筛选在所有细胞系上以10 μM的浓度进行。NCI筛选结果表明对六种细胞系具有细胞毒性活性。为了探索可能的作用机制,对A431人表皮样癌细胞进行了NBQ 95和NBQ 38的详细生物活性研究,以确定涉及细胞周期变化、DNA片段化、突变、线粒体膜通透性和半胱天冬酶激活的凋亡途径。通过荧光测定法和差异成像确定DNA片段化、细胞周期效应、诱变、线粒体通透性和半胱天冬酶的激活。我们的数据表明,A431细胞的生长受到抑制,平均IC为30 μM。就作用机制而言,这些化合物与DNA相互作用,导致片段化并使细胞周期停滞在亚G / G期。NBQ 38的诱变率较高,NBQ 95的诱变率适中。观察到NBQ 38可使线粒体通透性增加,NBQ 95则略有增加。两种化合物均导致半胱天冬酶3和7激活,表明通过内在机制的凋亡细胞死亡途径。本研究报告了这些新型化合物的毒性证据,它们在结构和机制上与已知的抗肿瘤化合物椭圆玫瑰树碱具有重叠的相似性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca6f/4169051/928e7bc8a89d/nihms579234f1.jpg

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