Ciprofloxacin Metal Complexes–Silica Nanoparticles: Characterization, Spectroscopic Study, DNA Interaction and Biological Activity

IF 1.4 4区 化学 Q4 CHEMISTRY, PHYSICAL Journal of Solution Chemistry Pub Date : 2024-05-02 DOI:10.1007/s10953-024-01375-7
Mustafa S. Abd El-Zahir, Sayed M. Saleh, Hamdy A. ElKady, Adel S. Orabi
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Abstract

Ciprofloxacin (CIPH) was classified as one of the most effective quinolone antibiotics, which is commonly used to cure a wide range of infections resulting from Gram-negative and Gram-positive microorganisms. The complexes which formed due to the interaction of Ni(II), Zn(II), Cu(II), Gd(III) and Sm(III) with ciprofloxacin were characterized by CHN% analysis, conductivity, FTIR, electronic spectra, fluorescence measurements, and magnetic susceptibility, besides studying the complex–DNA interaction. Meanwhile, the molar conductance values (0.001 mol·L−1 in DMSO) revealed the electrolytic behavior of the complexes and could be designated with the AB+ formula. In addition, the geometry of the compounds was confirmed from the electronic transitions as well as the μeff values as octahedral for all complexes. The postulated formula could be generally assigned as [M(CIP)a(CIPH)b(H2O)c](NO3)(H2O)n(C2H5OH)m. Moreover, the interaction between metal complexes and DNA revealed that the Cu complex had the highest binding constant. Nanotechnology was applied to synthesized compounds using silica nanoparticles (SiNPs), which were prepared using a sol–gel process. The silica nanoparticles were chemically functionalized for binding the ligand and its metal complexes; this enables the as-prepared compounds to enhance their features as a drug delivery platform. Meanwhile, the antimicrobial activity was tested for the free complexes and SiNPs composites. Collectively, Sm complex gave the largest zone of inhibition, while the Cu(II)–SiNPs composite showed the strongest potential to reduce the bacterial activity. Furthermore, the fluorescence data of CIPH, ligand–metal mixture and the effect of silica nanoparticles on them were studied.

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环丙沙星金属络合物-二氧化硅纳米颗粒:表征、光谱研究、DNA 相互作用和生物活性
环丙沙星(CIPH)被列为最有效的喹诺酮类抗生素之一,常用于治疗革兰氏阴性和革兰氏阳性微生物引起的各种感染。除了研究复合物与 DNA 的相互作用外,还通过 CHN% 分析、电导率、傅立叶变换红外光谱、电子能谱、荧光测量和磁感应强度对 Ni(II)、Zn(II)、Cu(II)、Gd(III) 和 Sm(III) 与环丙沙星相互作用形成的复合物进行了表征。同时,摩尔电导值(0.001 mol-L-1 in DMSO)显示了配合物的电解行为,并可指定为 A-B+ 式。此外,所有配合物的电子跃迁和 μeff 值都证实了其几何形状为八面体。推测的化学式一般可归纳为[M(CIP)a(CIPH)b(H2O)c](NO3)(H2O)n(C2H5OH)m。此外,金属配合物与 DNA 的相互作用表明,铜配合物的结合常数最高。利用溶胶-凝胶工艺制备的二氧化硅纳米颗粒(SiNPs)被应用于合成化合物的纳米技术。对二氧化硅纳米粒子进行了化学功能化处理,以结合配体及其金属复合物;这使得制备的化合物能够增强其作为给药平台的功能。同时,还测试了游离配合物和 SiNPs 复合材料的抗菌活性。总的来说,Sm 复合物的抑菌面积最大,而 Cu(II)-SiNPs 复合物则具有最强的降低细菌活性的潜力。此外,还研究了 CIPH、配体-金属混合物的荧光数据以及二氧化硅纳米粒子对它们的影响。
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来源期刊
Journal of Solution Chemistry
Journal of Solution Chemistry 化学-物理化学
CiteScore
2.30
自引率
0.00%
发文量
87
审稿时长
3-8 weeks
期刊介绍: Journal of Solution Chemistry offers a forum for research on the physical chemistry of liquid solutions in such fields as physical chemistry, chemical physics, molecular biology, statistical mechanics, biochemistry, and biophysics. The emphasis is on papers in which the solvent plays a dominant rather than incidental role. Featured topics include experimental investigations of the dielectric, spectroscopic, thermodynamic, transport, or relaxation properties of both electrolytes and nonelectrolytes in liquid solutions.
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