Seal Ishita, Sil Sidhanta, Das Abhijit, Roy Souvik
Department of Pharmacy, NSHM Knowledge Campus Kolkata-Group of Institution, 124 B.L. Saha Road, Tara Park, Behala, 700053 West Bengal India.
Toxicol Res. 2022 Dec 12;39(2):213-229. doi: 10.1007/s43188-022-00158-w. eCollection 2023 Apr.
Throughout the last decades flavonoids have been considered as a powerful bioactive molecule. Complexation of these flavonoids with metal ions demonstrated the genesis of unique organometallic complexes which provide improved pharmacological and therapeutic activities. In this research, the fisetin ruthenium-p-cymene complex was synthesized and characterized via different analytical methods like UV-visible spectroscopy, Fourier-transform infrared spectroscopy, mass spectroscopy, and scanning electron microscope. The toxicological profile of the complex was evaluated by acute and sub-acute toxicity. Additionally, the mutagenic and genotoxic activity of the complex was assessed by Ames test, chromosomal aberration test, and micronucleus based assay in Swiss albino mice. The acute oral toxicity study exhibited the LD of the complex at 500 mg/kg and subsequently, the sub-acute doses were selected. In sub-acute toxicity study, the hematology and serum biochemistry of the 400 mg/kg group showed upregulated white blood cells, aspartate aminotransferase, alanine aminotransferase, alkaline phosphatase, creatinine, glucose and cholesterol. However, there was no treatment related alteration of hematological and serum biochemical parameters in the 50, 100, and 200 mg/kg group. In the histopathological analysis, the 50, 100, and 200 mg/kg groups were not associated with any toxicological alterations, whereas the 400 mg/kg group showed prominent toxicological incidences. Nevertheless, the treatment with fisetin ruthenium-p-cymene complex did not exhibit any mutagenic and genotoxic effect in Swiss albino mice. Thus, the safe dose of this novel organometallic complex was determined as 50, 100, and 200 mg/kg without any toxicological and genotoxic potential.
在过去几十年里,黄酮类化合物一直被视为一种强大的生物活性分子。这些黄酮类化合物与金属离子的络合作用证明了独特有机金属络合物的形成,这些络合物具有更好的药理和治疗活性。在本研究中,合成了非瑟酮钌-对异丙基苯络合物,并通过紫外可见光谱、傅里叶变换红外光谱、质谱和扫描电子显微镜等不同分析方法对其进行了表征。通过急性和亚急性毒性评估了该络合物的毒理学特征。此外,通过艾姆斯试验、染色体畸变试验和基于微核的试验在瑞士白化小鼠中评估了该络合物的诱变和遗传毒性活性。急性口服毒性研究显示该络合物的半数致死量为500mg/kg,随后选择了亚急性剂量。在亚急性毒性研究中,400mg/kg组的血液学和血清生化指标显示白细胞、天冬氨酸转氨酶、丙氨酸转氨酶、碱性磷酸酶、肌酐、葡萄糖和胆固醇上调。然而,50、100和200mg/kg组的血液学和血清生化参数没有与治疗相关的改变。在组织病理学分析中,50、100和200mg/kg组没有任何毒理学改变,而400mg/kg组显示出明显的毒理学发生率。尽管如此,非瑟酮钌-对异丙基苯络合物的治疗在瑞士白化小鼠中没有表现出任何诱变和遗传毒性作用。因此,这种新型有机金属络合物的安全剂量被确定为50、100和200mg/kg,没有任何毒理学和遗传毒性潜力。