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Design of Novel Oligomeric Mixed Ligand Complexes: Preparation Biological Applications and the First Example of Their Nanosized Scale

机译:新型低聚物混合配体配合物的设计:制备生物学应用和其纳米级规模的第一个例子。

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摘要

A successful oligomerization of ternary metal complexes, cobalt (II), nickel (II), copper (II), zinc (II), chromium (III) and ferric sulfate (III) with nitrilotriacetic acid (NTA) as a primary ligand and glutamic acid as a secondary ligand, has been demonstrated. The formation of oligomers arose from the presence of the sulfate moiety, which operates as a bridged bidentate ligand that coordinates with other metal moieties. The novel oligomers exhibited octahedral structures, which bonded together through the sulfate moiety. In silico predictions were conducted to gauge the bioactivity, physico-chemical and pharmacokinetic properties. The biological activities of these oligomers as well as their tumor inhibitory behavior have been explored. This work also presents a facile and novel method of preparing these materials in nanosize, using Cetyltrimethylammonium bromide (CTAB) and polyvinyl alcohol (PVA) as capping ligands. The size and shape of the nanomaterials have been confirmed using the transmission electron microscope (TEM) and the scanning electron microscope (SEM).
机译:以次氮基三乙酸(NTA)为主要配体和谷氨酸成功地将三元金属配合物钴(II),镍(II),铜(II),锌(II),铬(III)和硫酸铁(III)进行低聚作为第二配体的酸已经被证明。低聚物的形成是由硫酸盐部分的存在引起的,该硫酸盐部分作为与其他金属部分配位的桥联二齿配体起作用。新的低聚物表现出八面体结构,其通过硫酸盐部分结合在一起。在计算机上进行了预测以评估生物活性,理化和药代动力学特性。已经研究了这些寡聚物的生物学活性以及它们的肿瘤抑制行为。这项工作还提出了一种简便,新颖的方法,使用十六烷基三甲基溴化铵(CTAB)和聚乙烯醇(PVA)作为封盖配体,以纳米尺寸制备这些材料。使用透射电子显微镜(TEM)和扫描电子显微镜(SEM)已经确认了纳米材料的尺寸和形状。

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