New melatonin biphenyl-linked scaffold targeting colorectal cancer: design, synthesis, biological, and ADME-Tox modelling studies.

IF 3.6 4区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Mariluz Silva-García, Angie Herrera-Ramírez, Wilson Cardona-Galeano, Andrés F Yepes
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Abstract

A series of melatonin biphenyl-linked conjugates was designed and synthesized using a simple, cost-effective, and environmentally friendly method. All the new compounds were evaluated for their cytotoxic or cytostatic activity against SW480 human colorectal adenocarcinoma cells. Screening at 100 μM revealed that most compounds exhibited high activity (≥60% inhibition), with compounds 3b, 3h, 4f, 4g, and 4i-l also demonstrating subtle lethality. Based on these initial results, a subset of the most active hybrids was selected for further in-depth evaluation to calculate three key parameters of cell viability: GI50, TGI, and LC50 values. The results showed that most compounds, except 3c and 4d, significantly outperformed the parental compound (2 and melatonin) in inhibiting cancer cell proliferation, highlighting the efficacy of hybridization in improving cytotoxic potential. Besides, it is noticeable that hybrids 4f-l exhibited superior activity compared to 5-FU, as evidenced by lower GI50 values. Although hybrids 4f and 4g seemed to exert the greatest activity as demonstrated in the LC50 values (70.89 ± 11.72 μM and 68.03 ± 0.46 μM, respectively), we observed that only hybrids 4j and 4l showed significant selectivity, as revealed by higher GI50 concentrations over non-malignant cells (NCM460). The observed total growth inhibition and lack of LC50 values in 4j and 4l suggest their potential for a cytostatic effect. Lastly, theoretical evaluations of drug-likeness, pharmacokinetic behaviour, and toxicological parameters suggest that the most promising hybrids, compounds 4j and 4l, exhibit strong potential for advancement into preclinical studies. Our findings highlight the effectiveness of a novel melatonin biphenyl-linked scaffold, with 4j and 4l structures in particular serving as prototypes for future innovative adjuvant drugs.

针对结直肠癌的新型褪黑激素联苯支架:设计、合成、生物学和ADME-Tox模型研究
采用一种简单、经济、环保的方法,设计并合成了一系列褪黑素联苯缀合物。所有新化合物对SW480人结直肠癌细胞的细胞毒或细胞抑制活性进行了评价。在100 μM下筛选,大多数化合物表现出高活性(抑制率≥60%),化合物3b、3h、4f、4g和4i- 1也表现出轻微的致毒作用。基于这些初步结果,选择最活跃的杂种进行进一步深入评估,计算细胞活力的三个关键参数:GI50, TGI和LC50值。结果表明,除3c和4d外,大多数化合物在抑制癌细胞增殖方面明显优于亲本化合物(2和褪黑素),表明杂交在提高细胞毒性潜能方面的作用。此外,值得注意的是,杂种4f- 1比5-FU表现出更强的活性,GI50值更低。虽然杂种4f和4g在LC50值(分别为70.89±11.72 μM和68.03±0.46 μM)中表现出最大的活性,但我们观察到只有杂种4j和4l表现出显著的选择性,这表明对非恶性细胞(NCM460)具有更高的GI50浓度。在4j和4l中观察到的总生长抑制和LC50值的缺乏表明它们可能具有细胞抑制作用。最后,对药物相似性、药代动力学行为和毒理学参数的理论评估表明,最有希望的化合物4j和4l具有很强的临床前研究潜力。我们的研究结果强调了一种新型褪黑激素联苯连接支架的有效性,特别是4j和4l结构可以作为未来创新辅助药物的原型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.80
自引率
2.40%
发文量
129
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