首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >New series of metal complexes by amphiphilic biopolymeric Schiff bases from modified chitosans: Preparation, characterization and effect of molecular weight on its biological applications
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New series of metal complexes by amphiphilic biopolymeric Schiff bases from modified chitosans: Preparation, characterization and effect of molecular weight on its biological applications

机译:通过改性壳聚糖的两亲生物聚合物席克夫基地新的金属络合物系列:分子量对其生物应用的制备,表征和效果

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摘要

To improve biological activity of chitosans, new Zn(II), Pd(II) and Pt(II) complexes with biopolymeric amphiphilic Schiff bases anchored in different molecular weight chitosans matrices modified with salicylaldehyde and glycidol were prepared. Salicylaldehyde was introduced to generate complexing Schiff base sites in the chitosans matrix while glycidol is intended to increase the water solubility of the resulting biopolymeric complexes. These novel complexes were characterized using various techniques and assayed for antimicrobial and antitumor activity. The effectiveness of modification was evaluated using FTIR spectroscopy, and thermal behavior of the complexes by TG/DTG-DTA. XPRD showed that the crystallinity of the ligand diminished after the metal complexation. Surface morphologies, investigated by SEM, revealed that the complexes are rougher than chitosan matrix, and the presence of metallic ions was confirmed by EDX. Electronic spectra suggested square planar geometry for Pd(II) and Pt(II) complexes. Concerning antimicrobial activity, the novel complexes exhibited higher antibacterial efficiency against Pseudomonas syringae than against the Fusarium graminearum fungi regarding the free ligand. Complexes also exhibited high antitumor effects against the MCF-7 breast cancer cells, with certain selectivity regarding non-tumor cells (Balb/C 3T3 clone A31) depending on concentration and molar mass, indicating that they could potentially be used for antitumor applications.
机译:为了改善壳聚糖的生物活性,制备与用水杨醛和缩水甘油改性的不同分子量壳聚糖基质锚定的生物聚糖两亲席克岩碱的新Zn(II),Pd(II)和Pt(II)络合物。引入水杨醛以在壳聚糖基质中产生络合的席夫基地位点,而缩水甘油旨在增加所得的生物聚合物复合物的水溶性。使用各种技术表征这些新型配合物,并测定抗微生物和抗肿瘤活性。使用FTIR光谱评估修饰的有效性,并通过TG / DTG-DTA的复合物的热行为。 XPRD表明,金属络合后,配体的结晶度降低。由SEM研究的表面形态显示,复合物比壳聚糖基质更粗糙,并且通过EDX确认金属离子的存在。电子光谱建议PD(II)和Pt(II)配合物的方形平面几何形状。关于抗微生物活性,新型复合物对假鼠霉素的抗菌效率高于针对自由配体的镰刀酸纤维真菌。复合物还表现出对MCF-7乳腺癌细胞的高抗肿瘤作用,这是关于非肿瘤细胞(BALB / C 3T3克隆A31)的一定选择性,这取决于浓度和摩尔质量,表明它们可能用于抗肿瘤应用。

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