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Semi-automated high-throughput fluorescent intercalator displacement-based discovery of cytotoxic DNA binding agents from a large compound library

机译:半自动化的高通量荧光嵌入剂基于位移的大型化合物库中细胞毒性DNA结合剂的发现

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摘要

High-throughput fluorescent intercalator displacement (HT–FID) was adapted to the semi-automated screening of a commercial compound library containing 60,000 molecules resulting in the discovery of cytotoxic DNA-targeted agents. Although commercial libraries are routinely screened in drug discovery efforts, the DNA binding potential of the compounds they contain has largely been overlooked. HT–FID led to the rapid identification of a number of compounds for which DNA binding properties were validated through demonstration of concentration-dependent DNA binding and increased thermal melting of A/T- or G/C-rich DNA sequences. Selected compounds were assayed further for cell proliferation inhibition in glioblastoma cells. Seven distinct compounds emerged from this screening procedure that represent structures unknown previously to be capable of targeting DNA leading to cell death. These agents may represent structures worthy of further modification to optimally explore their potential as cytotoxic anti-cancer agents. In addition, the general screening strategy described may find broader impact toward the rapid discovery of DNA targeted agents with biological activity.
机译:高通量荧光嵌入剂置换(HT-FID)适用于半自动筛选包含60,000个分子的商业化合物库,从而发现了细胞毒性DNA靶向剂。尽管通常在药物发现过程中对商业文库进行常规筛选,但很大程度上忽略了它们所含化合物的DNA结合潜力。 HT–FID导致快速鉴定出许多化合物,这些化合物的DNA结合特性通过证明浓度依赖的DNA结合和增加富含A / T或G / C的DNA序列的热熔解得到了验证。进一步分析所选化合物对胶质母细胞瘤细胞中细胞增殖的抑制作用。从该筛选过程中出现了七种不同的化合物,它们代表以前未知的能够靶向DNA导致细胞死亡的结构。这些药物可能代表了值得进一步修饰的结构,以最佳地探索其作为细胞毒性抗癌药物的潜力。此外,所描述的一般筛选策略可能对快速发现具有生物活性的DNA靶向药物产生更广泛的影响。

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