Department of Chemistry, Biochemistry and Biophysics, Institute of Biophysics, University of Veterinary Medicine and Pharmacy, Košice, Slovak Republic.
Physiol Res. 2019 Dec 30;68(Suppl 4):S459-S466. doi: 10.33549/physiolres.934385.
The application of pesticides and chemical fertilizers constitutes a potential risk to human and animals due to the presence of their residues in the food. Thiacloprid belongs to a group of neonicotinoid insecticides. It shows a cytotoxic/cytostatic effect in human peripheral blood lymphocytes probably due to DNA damage. The use of thiacloprid is increasingly widespread worldwide, therefore is very important the assessment of its possible genotoxic and cytotoxic effects on a living organism. That is the reason why we studied the thiacloprid influence on the structure and stability of DNA in presented work. We have been studied the thiacloprid interaction with calf thymus DNA. Association constant was determined by fluorescence spectroscopy using equilibrium receptor-ligand binding analysis. The thermal denaturation of DNA was used to identify the mode of interaction. Viscosity changes were recorded to confirm/disconfirm the intercalation mode of interaction. Given the results, we can conclude that neonicotinoid pesticide thiacloprid destabilizes DNA. It changes the structure and stability of DNA through binding into the minor groove by hydrophobic or hydrogen interactions.
由于其残留物存在于食物中,农药和化肥的应用对人类和动物构成了潜在的风险。噻虫啉属于新烟碱类杀虫剂的一组。它在人外周血淋巴细胞中表现出细胞毒性/细胞抑制作用,可能是由于 DNA 损伤所致。噻虫啉的使用在全球范围内越来越广泛,因此评估其对生物体可能的遗传毒性和细胞毒性影响非常重要。这就是我们在本工作中研究噻虫啉对 DNA 结构和稳定性影响的原因。我们研究了噻虫啉与小牛胸腺 DNA 的相互作用。通过荧光光谱法使用平衡受体-配体结合分析确定结合常数。使用 DNA 的热变性来确定相互作用模式。记录粘度变化以确认/否定相互作用的嵌入模式。根据结果,我们可以得出结论,新烟碱类杀虫剂噻虫啉使 DNA 不稳定。它通过疏水或氢键相互作用结合到小沟中,从而改变 DNA 的结构和稳定性。