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首页> 外文期刊>New Journal of Chemistry >Polyethylene glycol-bonded triethylammoniuml-prolinate: a new biodegradable amino-acid-based ionic liquid for the one-pot synthesis of bis(pyrazolyl)methanes as DNA binding agents
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Polyethylene glycol-bonded triethylammoniuml-prolinate: a new biodegradable amino-acid-based ionic liquid for the one-pot synthesis of bis(pyrazolyl)methanes as DNA binding agents

机译:聚乙二醇键合三甲基铵:一种新的生物降解的氨基酸基离子液,用于单盆合成双(吡唑基)甲烷作为DNA结合剂

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摘要

Polyethylene glycol-bonded triethylammoniuml-prolinate ([PEG-TEA]LP) was prepared as a new, highly efficient, reusable and biodegradable amino-acid-based ionic liquid catalyst using cheap and easily accessible starting materials. The [PEG-TEA]LP chemical structure was characterizedviaFT-IR and(1)H-NMR. [PEG-TEA]LP biodegradability was also assessed based on the ability ofEscherichia colibacteria to make use of this ionic liquid as a nutrient. In continuation, [PEG-TEA]LP was successfully applied as a catalyst for the one-pot pseudo-five-component synthesis of bis(pyrazolyl)methanes. High synthesized product diversity was obtained with good to excellent yields and short reaction times. Also, some bis-products of bis(pyrazolyl)methanes as more complex products were prepared to show the generality and practical efficiency of the presented strategy. The cytotoxicity of the synthesized bis(pyrazolyl)methanes against the K562 cancerous cell line was also checked and, in some cases, they were more cytotoxic than cisplatin. The DNA binding ability of the synthesized compounds was also studiedviaa UV-visible spectroscopic method, and the obtained results proved their interaction with DNA minor grooves.
机译:使用廉价且易于接近的起始材料制备聚乙二醇键合的三乙基铵基 - 脯氨酸(π)作为一种新的,高效,可重复使用和可生物降解的氨基酸类离子液体催化剂。 [PEG-TEA] LP化学结构是特征性血泡 - IR和(1)H-NMR。还基于Cherichia Coibacteria作为营养素使用这种离子液体的能力来评估LP生物降解性。在延续中,[PEG-TEA] LP被成功地用作双(吡唑基)甲烷的单壶伪五组分合成的催化剂。获得高合成产物的多样性,良好至优异的产率和较短的反应时间。此外,制备了一些双(吡唑基)甲烷的双产物,以更加复杂的产物制备呈现出呈现的策略的一般性和实际效率。还检查了合成的双(吡唑基)甲烷对K562癌细胞系的细胞毒性,并且在某些情况下,它们比顺铂更多的细胞毒性。合成化合物的DNA结合能力也研究了viaa紫外纹光谱法,并得到了与DNA轻微凹槽的相互作用。

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