具有更高水溶性和生物利用度的新型齐聚物咪唑啉酮:合成、抗癌活性和分子对接

Chemistry Pub Date : 2023-11-21 DOI:10.3390/chemistry5040169
Saber Abu-Jabal, Ahmad Ghareeb, Derar Smadi, Othman Hamed, M. Assali, Avni Berisha, N. Abutaha, Waseem Mansour, Ameed Omairah, Alaa Janem, Ataa Jaser
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摘要

寻找一种有效的抗癌药物来对抗癌细胞的耐药性仍然是一项挑战。在此,我们合成了一系列新的咪唑啉酮衍生物 4a-4i,并评估了它们对肝癌细胞(Hep3B)、Hela 细胞和正常 LX2 细胞的抗癌活性。这些咪唑啉衍生物是以天然产物香草醛为起始原料,通过缩合环化反应合成的。在合成的咪唑啉酮衍生物中,硫酸烷基咪唑啉酮衍生物具有水溶性,对测试的癌细胞具有更强的抗癌活性。抗癌测试结果表明,苯环第 4 位含有 NO2 基团的化合物 4d 优于其他化合物;它对 Hep3B 细胞的 IC50 值为 134.2 ± 4.4 µM,而含有吡啶基的化合物 4h 对 Hela 细胞的细胞毒性最高,IC50 值为 85.1 ± 2.1 µM。一些咪唑啉酮类化合物的抗癌活性因添加了使其更具极性和水溶性的齐聚物特性而大大增强。对化合物 4a1、4d 和 4g 进行的 DNA 结合研究表明,其对接得分约为 -6.8 至 -8.7 kcal/mol。这可能归因于分子与 DNA 结合位点之间出色的相互作用,这种相互作用主要依赖于其固有的建立氢键的能力,氧原子和药物氨基上存在的电子对促进了氢键的建立。总之,具有齐聚物功能的水溶性咪唑啉酮可能是开发抗癌药物的一种有前途的工具。要勾勒出所研究的化合物的总体思路和作用关系,以及它们的作用机理,还需要进一步的广泛研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New Zwitterionic Imidazolones with Enhanced Water Solubility and Bioavailability: Synthesis, Anticancer Activity, and Molecular Docking
Finding an effective anticancer drug to combat cancer cell resistance remains a challenge. Herein, we synthesized a new series of imidazolone derivatives 4a–4i and assessed their anticancer activities against liver cancer cells (Hep3B), Hela cells, and normal LX2 cells. The imidazolne derivatives were synthesized by the condensation cyclization reaction using the natural product vanillin as a starting material. Among the synthesized imidazolones are those with an alkyl sulfate moiety that are water-soluble and showed enhanced anticancer activity against the tested cancer cells. The anticancer testing results showed that compound 4d with the NO2 group at position 4 of the benzene ring was superior to the other compounds; it showed an IC50 value of 134.2 ± 4.4 µM against Hep3B cells, while compound 4h with the pyridyl moiety showed the highest cytotoxicity against Hela cells with an IC50 of 85.1 ± 2.1 µM. The anticancer activity of some imidazolones was greatly enhanced by adding to them the zwitterionic properties that made them more polar and water-soluble. DNA binding studies with compounds 4a1, 4d, and 4g indicated a docking score ranging from approximately −6.8 to −8.7 kcal/mol. This could be attributed to the outstanding interaction between the molecule and the DNA binding sites, which primarily relies on its inherent capability to establish hydrogen bonds, facilitated by the electron pair present at the oxygen atoms and the drug’s amino group. In conclusion, water-soluble imidazolone with zwitterionic functionality could be a promising tool for the development of anticancer medication. To outline the general idea and the relationships for the effect of the developed compounds under study, as well as their mechanism of action, further extensive research is also necessary.
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