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苯基异硫氰酸酯吉拉德T衍生金属配合物的设计、光谱、分子建模、抗有丝分裂、分析及作用机制研究

Design, spectral, molecular modeling, antimitotic, analytical and mechanism studies of phenyl isothiocyanate Girard's T derived metal complexes.

作者信息

Akl Magda A, El Mahdy Nora A, Elbadrawy Zizi, El-Zeny Abdelrahman S, Mostafa Mohsen M

机构信息

Chemistry Department, Faculty of Science, Mansoura, University, Mansoura, 35516, Egypt.

出版信息

BMC Chem. 2023 Nov 12;17(1):153. doi: 10.1186/s13065-023-01033-x.

Abstract

The ligand N-{[(phenyl amino) thioxomethyl] hydrazino carbonyl methyl} trimethyl ammonium chloride (PTHAC) was prepared by the refluxing phenyl isothiocyanate and Girard-T (trimethyl ammonium-acethydrazide) in a molar ratio (1:1). The metal complexes derived from NiCl.6HO, CuCl.2HO and Co(CHCOO).6HO were synthesized and purified. The PTHAC and its Cu(II), Co(II), and Ni(II) metal complexes(1-3) were characterized using a variety of various instrumental performances such as elemental analysis, magnetic moment, spectra (IR, UV-Vis, H NMR, mass) and thermal analysis (TGA and DTG).The results of element analysis, magnetic moment, spectra (IR, UV-Vis, H NMR, mass), and thermal (TGA and DTA) analyses provide the structures of the produced ligand and its (1-3) complexes. According to the spectroscopic results, PTHAC acts as an O, N and S tridentate donor, creating a mononuclear complex with copper(II), cobalt(II), and nickel(II) ions with an octahedral geometry. All of the atomic properties, including bond lengths, bond angles, HOMO, LUMO, dipole moments, and charges, have been determined. The cytotoxic activities of the PTHAC and the produced (1-3) complexes against breast carcinoma cells have been studied and correlated to the molecular modeling. When compared to the free ligand, CoII-L, and NiII-L, the CuII-L complex inhibits breast cancer cell growth more effectively. Furthermore, the PTHAC ligand was successfully applied for separation via flotation and spectrophotometric determination of Co(II) in several natural water, certified ore and pharmaceutical samples using oleic acid surfactant (HOL). At pH 6.5, PTHAC reacted with Co(II) to create a dark green (1:1) Co(II):PTHAC complex that was floated significantly using oleic acid (HOL) surfactant. The different experimental variable affecting the separation procedure e.g. pH, concentration of Co(II), HOL, PTHAC, temperature etc.…, were investigated. Co(II) had a linear range of (0.1-7.0) mgL. In the aqueous and scum layers, the molar absorptivities for the coloured complex are 0.14 × 10 and 0.16 × 10Lmol cm, respectively. The LOD was 0.04 mgL, which is related to Sandell sensitivity of 3.7 × 10 µg cm with a preconcentration factor of 200 and a RSD, % (n = 5) less than 4.2%. In addition, the mechanisms involved in the process of coordination of PTHAC with Cu(II), Co(II) and Ni(II) and the mechanism involved in the process of flotation of the PTHAC-Co(II) complex using HOL surfactant were elucidated.

摘要

配体N-{[(苯基氨基)硫代甲基]肼基羰基甲基}三甲基氯化铵(PTHAC)通过将异硫氰酸苯酯与吉拉德-T(三甲基铵-乙酰肼)以摩尔比(1:1)回流制备而成。由六水合氯化镍、二水合氯化铜和六水合乙酸钴衍生得到的金属配合物被合成并纯化。使用多种仪器性能,如元素分析、磁矩、光谱(红外、紫外-可见、氢核磁共振、质谱)和热分析(热重分析和微商热重分析)对PTHAC及其铜(II)、钴(II)和镍(II)金属配合物(1-3)进行了表征。元素分析、磁矩、光谱(红外、紫外-可见、氢核磁共振、质谱)和热(热重分析和差热分析)分析的结果给出了所制备配体及其(1-3)配合物的结构。根据光谱结果,PTHAC作为一种氧、氮和硫三齿供体,与铜(II)、钴(II)和镍(II)离子形成具有八面体几何构型的单核配合物。所有原子性质,包括键长、键角、最高占据分子轨道、最低未占分子轨道、偶极矩和电荷,均已确定。研究了PTHAC和所制备的(1-3)配合物对乳腺癌细胞的细胞毒性活性,并将其与分子模拟相关联。与游离配体、钴(II)-配体和镍(II)-配体相比,铜(II)-配体配合物更有效地抑制乳腺癌细胞生长。此外,PTHAC配体成功应用于浮选分离,并使用油酸表面活性剂(HOL)通过分光光度法测定了几种天然水、认证矿石和药物样品中的钴(II)。在pH 为6.5时,PTHAC与钴(II)反应形成深绿色(1:1)的钴(II):PTHAC配合物,该配合物使用油酸(HOL)表面活性剂可显著浮选。研究了影响分离过程的不同实验变量,如pH、钴(II)浓度、HOL、PTHAC、温度等。钴(II)的线性范围为(0.1-7.0)mg/L。在水相和浮渣层中,有色配合物的摩尔吸光系数分别为0.14×10和0.16×10L·mol⁻¹·cm⁻¹。检测限为0.04 mg/L,与桑德尔灵敏度3.7×10μg/cm²相关,预富集因子为200,相对标准偏差%(n = 5)小于4.2%。此外,阐明了PTHAC与铜(II)、钴(II)和镍(II)配位过程中涉及的机制以及使用HOL表面活性剂浮选PTHAC-钴(II)配合物过程中涉及的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2ec/10642003/d78322907f5a/13065_2023_1033_Sch1_HTML.jpg

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