A fast and responsive turn-on fluorescent probe based on a quinone conjugated alkoxy derivative for biothiols and a cellular imaging study.

IF 1.4 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY Turkish Journal of Chemistry Pub Date : 2024-11-11 eCollection Date: 2024-01-01 DOI:10.55730/1300-0527.3702
Ulviyye Nemetova, Ayşe Nur Önem, Alev Er, Sefa Çelik, Ayşen E Özel, Sevim Akyüz, Mustafa Özyürek, Sibel Şahinler Ayla
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Abstract

The detection of intracellular biothiols (cysteine, N-acetyl cysteine, and glutathione) with high selectivity and sensitivity is important to reveal biological functions. In this study, a 2-(2-methoxy-4-methylphenoxy)-3-chloro-5,8-dihydroxynaphthalene-1,4-dione (DDN-O) compound (3) was newly synthesized and used as a fluorogenic probe (detector molecule) in the fluorometric method for the rapid, highly selective, and sensitive determination of biothiols. The intensity values (λex = 260 nm, λem = 620 nm) of the product were measured by adding biothiols to the reaction medium at varying concentrations and the glutathione equivalent thiol content values of each biothiol were calculated. Using compound 3, glutathione as the reference biothiol was detected in the linear concentration range of 10-70 μM and the LOD value was found to be 0.11 μM. Biothiol detection with structurally simple compound 3 was performed at the cellular level within 1 min and the probe was also successfully used in bioimaging with low cytotoxicity. It was concluded that this probe can serve as an alternative to existing fluorescence-based biothiol probes with applications in rapid biothiol detection at the cellular level for biological functions. To evaluate the molecular structure of 3, conformational analysis was performed using the PM3 semiempirical method. The most stable obtained molecular geometry was then optimized at the DFT/wb97xd/6-311++G(d,p) level of theory. Frontier molecular orbitals (HOMO and LUMO) and molecular electrostatic potential map analyses were performed for the optimized structure. Molecular docking studies demonstrated the interactions of 3 with HAS (1AO6) and FhGST (2FHE) target proteins.

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基于醌缀合烷氧基衍生物的生物硫醇的快速和响应的开启荧光探针和细胞成像研究。
细胞内生物硫醇(半胱氨酸、n -乙酰半胱氨酸和谷胱甘肽)的高选择性和高灵敏度检测对揭示生物功能具有重要意义。本研究新合成了一种2-(2-甲氧基-4-甲基苯氧基)-3-氯-5,8-二羟基萘-1,4-二酮(DDN-O)化合物(3),并将其作为荧光探针(检测分子)用于荧光法快速、高选择性、高灵敏度测定生物硫醇。通过向反应介质中添加不同浓度的生物硫醇,测定产物的强度值(λex = 260 nm, λem = 620 nm),并计算每种生物硫醇的谷胱甘肽当量硫醇含量值。以化合物3为参比生物硫醇,在10 ~ 70 μM的线性浓度范围内检测谷胱甘肽,LOD值为0.11 μM。结构简单的化合物3在1 min内完成细胞水平的生物硫醇检测,探针也成功地用于低细胞毒性的生物成像。该探针可作为现有荧光生物硫醇探针的替代品,应用于细胞水平的生物硫醇快速检测。为了评价3的分子结构,采用PM3半经验方法进行了构象分析。然后在DFT/wb97xd/6-311++G(d,p)理论水平上对得到的最稳定的分子几何结构进行优化。对优化后的结构进行了前沿分子轨道(HOMO和LUMO)和分子静电势图分析。分子对接研究表明,3与HAS (1AO6)和FhGST (2FHE)靶蛋白相互作用。
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来源期刊
Turkish Journal of Chemistry
Turkish Journal of Chemistry 化学-工程:化工
CiteScore
2.40
自引率
7.10%
发文量
87
审稿时长
3 months
期刊介绍: The Turkish Journal of Chemistry is a bimonthly multidisciplinary journal published by the Scientific and Technological Research Council of Turkey (TÜBİTAK). The journal is dedicated to dissemination of knowledge in all disciplines of chemistry (organic, inorganic, physical, polymeric, technical, theoretical and analytical chemistry) as well as research at the interface with other sciences especially in chemical engineering where molecular aspects are key to the findings. The journal accepts English-language original manuscripts and contribution is open to researchers of all nationalities. The journal publishes refereed original papers, reviews, letters to editor and issues devoted to special fields. All manuscripts are peer-reviewed and electronic processing ensures accurate reproduction of text and data, plus publication times as short as possible.
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