Spectroscopic, docking, antiproliferative, and anticancer activity of novel metal derivatives of phenylacetohydrazide Schiff base on different human cancer cell lines

IF 4.3 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Manal A. Afifi, Anas A. Rasmy, Emad M. Elzayat, Samir M. El-Medani, Mohamed R. Shehata, Fatma M. Elantabli
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Abstract

In the last two decades, many Schiff bases have been investigated due to the importance of their metal complexes in the medical field and drug industry. The Schiff base metal complexes have several applications as anticancer agents because they have a high binding ability to nucleic acids (DNA and RNA). The Schiff base H2L, derived from the condensation of 2-phenylacetohydrazide and 2-hydroxynaphthaldehyde, was reacted with Fe2+, Zn2+, Cd2+, and Pt2+ to form the unique metal complexes [Fe(HL)2], [Zn2(HL)2](CH3COO)2, [Cd2(HL)2](CH3COO)2, and [Pt(H2L)Cl2]. Various analytical and spectroscopic techniques were used to characterize the newly reported compounds. The elemental and spectroscopic analysis revealed that the platinum complex was a square planar with 2.5 water molecules in the crystal lattice, whereas the iron complex had an octahedral geometry. The thermogravimetric analysis demonstrated the stability of the complexes and validated the dimerization of zinc and cadmium complexes. DFT calculations were investigated to obtain the optimized structure of the ligand and its complexes. Biological screening and molecular docking studies of the ligand and complexes were reported to explore their potential application as therapeutic drugs. Among the tested complexes, [Cd2(HL)2](CH3COO)2 complex showed the best cytotoxic effect, especially on the human colorectal cancer cell line (HCT116, IC50 = 0.329 µg/ml) as compared to normal human skin fibroblast (HSF, IC50 = 5.240 µg/ml) and selectivity index (SI) = 15.93. It represents a promising anticancer drug compared to Cisplatin (IC50 = 2.25µg/ml, SI = 4.92). The biological studies and molecular docking were correlated to each other.

苯基乙酰肼席夫碱新型金属衍生物在不同人类癌细胞系上的光谱、对接、抗增殖和抗癌活性
在过去的二十年中,由于其金属配合物在医学领域和药物工业中的重要性,许多希夫碱已经被研究。希夫碱金属配合物由于具有与核酸(DNA和RNA)的高结合能力,在抗癌方面有多种应用。由2-苯基乙酰肼和2-羟基萘乙醛缩合而成的希夫碱H2L与Fe2+、Zn2+、Cd2+和Pt2+反应形成独特的金属配合物[Fe(HL)2]、[Zn2(HL)2](CH3COO)2、[Cd2(HL)2](CH3COO)2和[Pt(H2L)Cl2]。利用各种分析和光谱技术对新报道的化合物进行了表征。元素分析和光谱分析表明,铂配合物为方形平面,晶格中有2.5个水分子,而铁配合物为八面体。热重分析证实了配合物的稳定性,并证实了锌镉配合物的二聚化作用。通过DFT计算得到了配体及其配合物的优化结构。报道了配体和复合物的生物学筛选和分子对接研究,以探索其作为治疗药物的潜在应用。其中,[Cd2(HL)2](CH3COO)2复合物对人结直肠癌细胞系(HCT116, IC50 = 0.329µg/ml)的细胞毒作用优于正常人皮肤成纤维细胞(HSF, IC50 = 5.240µg/ml),选择性指数(SI) = 15.93。与顺铂相比,它是一种有前景的抗癌药物(IC50 = 2.25µg/ml, SI = 4.92)。生物学研究与分子对接是相互关联的。
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来源期刊
BMC Chemistry
BMC Chemistry Chemistry-General Chemistry
CiteScore
5.30
自引率
2.20%
发文量
92
审稿时长
27 weeks
期刊介绍: BMC Chemistry, formerly known as Chemistry Central Journal, is now part of the BMC series journals family. Chemistry Central Journal has served the chemistry community as a trusted open access resource for more than 10 years – and we are delighted to announce the next step on its journey. In January 2019 the journal has been renamed BMC Chemistry and now strengthens the BMC series footprint in the physical sciences by publishing quality articles and by pushing the boundaries of open chemistry.
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