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Green synthesis and biological evaluation of novel 5-fluorouracil derivatives as potent anticancer agents

机译:新型5-氟尿嘧啶衍生物作为有效抗癌剂的绿色合成和生物学评价

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摘要

This study reports the formation of 5-FU co-crystals with four different pharmacologically safe co-formers; Urea, Thiourea, Acetanilide and Aspirin using methanol as a solvent. Two fabrication schemes were followed i.e., solid-state grinding protocol, in which API and co-formers were mixed through vigorous grinding while in the other method separate solutions of both the components were made and mixed together. The adopted approaches offer easy fabrication protocols, no temperature maintenance requirements, no need of expensive solvents, hardly available apparatus, isolation and purification of the desired products. In addition, there is no byproducts formation, In fact, a phenomenon embracing the requirements of green synthesis. Through FTIR analysis; for API the N—H absorption frequency was recorded at 3409.02 cm and that of —C O was observed at 1647.77 cm . These characteristics peaks of 5-FU were significantly shifted and recorded at 3499.40 cm and 1649.62 cm for 5-FU-Ac (3B) and 3496.39 cm and 1659.30 cm for 5-FU-As (4B) co-crystals for N—H and —C O groups respectively. The structural differences between API and co-crystals were further confirmed through PXRD analysis. The characteristic peak of 5-FU at 2θ = 28.79918 was significantly shifted in the graphs of co-crystals not only in position but also with respect to intensity and FWHM values. In addition, new peaks were also recorded in all the spectra of co-formers confirming the structural differences between API and co-formers. In addition, percent growth inhibition was also observed by all the co-crystals through MTT assay against HCT 116 colorectal cell lines . At four different concentrations; 25, 50, 100 and 200 µg/mL, slightly different trends of the effectiveness of API and co-crystals were observed. However; among all the co-crystal forms, 5-FU-thiourea co-crystals obtained through solution method (2B) proved to be the most effective growth inhibitor at all the four above mentioned concentrations.
机译:这项研究报告了5-FU共结晶与四种不同药理安全的共形成物的形成。尿素,硫脲,乙酰苯胺和阿司匹林,以甲醇为溶剂。遵循两种制造方案,即固态研磨方案,其中通过剧烈研磨将API和共形成剂混合,而在另一种方法中,制备两种组分的单独溶液并混合在一起。所采用的方法提供了简单的制造方案,没有温度保持要求,不需要昂贵的溶剂,几乎没有可用的设备,所需产品的分离和纯化。另外,没有副产物形成,实际上是一种包含绿色合成要求的现象。通过FTIR分析;对于API,NH吸收频率记录为3409.02 cm,而-CO的吸收频率记录为1647.77 cm。 5-FU的这些特征峰发生了显着偏移,5-FU-Ac(3B)的3499.40 cm和1649.62 cm记录了N-H和5-FU-As(4B)的共晶体的3496.39 cm和1659.30 cm。 -CO组。通过PXRD分析进一步证实了API和共晶之间的结构差异。 5-FU在2θ= 28.79918处的特征峰不仅在位置上而且在强度和FWHM值方面均在共晶图中显着移动。另外,在共形成物的所有光谱中也记录了新的峰,证实了API和共形成物之间的结构差异。另外,通过MTT测定法针对HCT 116结直肠细胞系的所有共晶体也观察到生长抑制百分比。在四个不同的浓度;在25、50、100和200 µg / mL处,观察到API和共晶有效性的趋势略有不同。然而;在所有共晶形式中,通过溶液法(2B)获得的5-FU-硫脲共晶被证明是在所有上述四种浓度下最有效的生长抑制剂。

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