Kinetic studies, molecular docking, and antioxidant activity of novel 1,3-diphenyl pyrazole-thiosemicarbazone with anti-tyrosinase and anti-melanogenesis properties

IF 4.5 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Bioorganic Chemistry Pub Date : 2024-08-13 DOI:10.1016/j.bioorg.2024.107722
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Abstract

This study reports the Design Hypothesis of a novel series of 1,3-diphenyl pyrazole-thiosemicarbazone as novel tyrosinase inhibitors (TYRI). The designed compounds were prepared and their TYRI activity and mechanisms were studied. The results showed that the selected compounds exhibited potent tyrosinase inhibitory activities greater than that of kojic acid (KA). Lead candidates, denoted as 6g and 6n, with a para-hydroxyphenyl group attached to the 3-position of the pyrazole ring demonstrated IC50 values of 2.09 and 3.18 µM, respectively. The potency of these compounds was approximately 5–8 times higher than that of KA. The in vitro melanin content of 6g or 6n-treated melanoma cells resulted in significant efficacy in melanin reduction. The DPPH assay result revealed that the tyrosinase inhibition mechanism for these derivatives was independent of a redox effect and corresponded to the interaction with tyrosinase. According to the Lineweaver-Burk plot, the most potent compounds, 6g and 6n, exhibit a mixed type of inhibition, primarily noncompetitive inhibition. In silico molecular docking studies were employed to determine the binding mode and explore the Design Hypothesis in detail. The results suggested that these compounds could be considered promising leads for the further development of novel inhibitors to treat disorders related to tyrosinase.

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具有抗酪氨酸酶和抗黑色素生成特性的新型 1,3-二苯基吡唑-硫代氨基甲酸唑酮的动力学研究、分子对接和抗氧化活性
本研究报告了作为新型酪氨酸酶抑制剂(TYRI)的新型 1,3-二苯基吡唑-硫代氨基甲酮系列的设计假设。研究人员制备了所设计的化合物,并对其 TYRI 活性和机制进行了研究。结果表明,所选化合物的酪氨酸酶抑制活性高于曲酸(KA)。在吡唑环的 3 位上连接有对羟基苯基的候选铅化合物 6g 和 6n,其 IC50 值分别为 2.09 和 3.18 µM。这些化合物的效力约为 KA 的 5-8 倍。经 6g 或 6n 处理的黑色素瘤细胞的体外黑色素含量显示,这些化合物具有显著的减少黑色素的功效。DPPH 分析结果表明,这些衍生物抑制酪氨酸酶的机制与氧化还原作用无关,而是与酪氨酸酶相互作用。根据 Lineweaver-Burk 图,最有效的化合物 6g 和 6n 表现出混合型抑制,主要是非竞争性抑制。为了确定化合物的结合模式并详细探讨 "设计假说",研究人员进行了分子对接研究。研究结果表明,这些化合物有望进一步开发新型抑制剂,用于治疗与酪氨酸酶有关的疾病。
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来源期刊
Bioorganic Chemistry
Bioorganic Chemistry 生物-生化与分子生物学
CiteScore
9.70
自引率
3.90%
发文量
679
审稿时长
31 days
期刊介绍: Bioorganic Chemistry publishes research that addresses biological questions at the molecular level, using organic chemistry and principles of physical organic chemistry. The scope of the journal covers a range of topics at the organic chemistry-biology interface, including: enzyme catalysis, biotransformation and enzyme inhibition; nucleic acids chemistry; medicinal chemistry; natural product chemistry, natural product synthesis and natural product biosynthesis; antimicrobial agents; lipid and peptide chemistry; biophysical chemistry; biological probes; bio-orthogonal chemistry and biomimetic chemistry. For manuscripts dealing with synthetic bioactive compounds, the Journal requires that the molecular target of the compounds described must be known, and must be demonstrated experimentally in the manuscript. For studies involving natural products, if the molecular target is unknown, some data beyond simple cell-based toxicity studies to provide insight into the mechanism of action is required. Studies supported by molecular docking are welcome, but must be supported by experimental data. The Journal does not consider manuscripts that are purely theoretical or computational in nature. The Journal publishes regular articles, short communications and reviews. Reviews are normally invited by Editors or Editorial Board members. Authors of unsolicited reviews should first contact an Editor or Editorial Board member to determine whether the proposed article is within the scope of the Journal.
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