具有潜在抗癌活性的氨基胍腙衍生物的电化学评价:PAMAM修饰的玻碳/碳纳米管和金电极的研究

Marílya Palmeira Galdino da Silva, Ygor Mendes de Oliveira, A. Candido, J. Araújo-Júnior, Érica E. E. S. Rodrigues, K. L. Monteiro, T. M. Aquino, F. Abreu
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引用次数: 2

摘要

氨基胍腙(AGHs)是一类具有药理活性的化合物。它们与氨基胍来自相同的化学基团,因此在形成氢键时具有混合性质(受体和供体)。它的抗癌特性最近得到了强调,但这类分子在水溶液中的溶解度很低。通过电化学等简单、灵敏、低成本的技术来鉴定这类物质,并通过PAMAM树状大分子等试剂来评估其增溶过程,这是本文描述的主要目标。评价了LQM10 (AGH衍生物)的电化学响应,以及它在不同电化学传感器中的行为。电化学实验在缓冲液(pH为7.02的磷酸盐和pH为4.5的醋酸盐)中进行。LQM10有一个可逆氧化峰,电位为+0.22 V。在不同的电极测试(玻璃碳/碳纳米管,玻璃碳/碳纳米管/PAMAM)中有效地检测到它,这证明了电极在各种分析中的可行性,并确定了明显的恒定关联,表明在PAMAM包封剂的存在下,它与分析的相互作用更高。用MUA和PAMAM修饰金电极的结果证实了这一点。综上所述结果表明,电化学评价氨基胍腙衍生物的可能性,所采用电极的可行性以及在PAMAM树状大分子存在下LQM10的更大增溶性。
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Electrochemical Evaluation of Aminoguanidine Hydrazone Derivative with Potential Anticancer Activity: Studies of Glassy Carbon/CNT and Gold Electrodes Both Modified with PAMAM
Aminoguanidine hydrazones (AGHs) are a class of compounds that have interesting pharmacological activities. They are derived from the same chemical group as aminoguanidine, so it has mixed properties (receptor and donor) in the formation of hydrogen bonds. Its anticancer agent properties were recently highlighted, but the molecules of this class have solubility in aqueous solutions that can be considered low. The identification of this class, by a simple, sensitive and low-cost technique, such as electrochemistry, which also allows the evaluation of its solubilization process through agents such as PAMAM dendrimer is the main objective of the work described here. The electrochemical response of the LQM10 (AGH derivative) was evaluated, as well as its behavior in different electrochemical sensors. Electrochemical experiments were performed in buffered (phosphate at pH 7.02 and acetate at 4.5). LQM10 has a reversible oxidation peak with a potential of +0.22 V. It was efficiently detected in different electrodes tested (glass carbon/CNT, glass carbon/CNT/PAMAM), which proves the viability of the electrodes for various analyses and has the determination of the apparent constant association, indicating its interaction with the analysis that is higher in the presence of the PAMAM encapsulating agent. This was corroborated by the results for the modified gold electrode with MUA and PAMAM. The sum of the results shows the possibility of electrochemically evaluating the Aminoguanidine hydrazone derivative, the viability of electrodes employed and the greater solubilization of LQM10 in the presence of the PAMAM dendrimer.
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