Hassan Hammed H A M, ELhusseiny Amel F
Chemistry Department, Faculty of Science, Alexandria University, P.O. Box 2-Moharam Bek, Alexandria, 21568, Egypt.
BMC Chem. 2023 May 3;17(1):44. doi: 10.1186/s13065-023-00958-7.
A new antimicrobial material incorporating Cu(I) and Cd(II) complexes of bisacylthiourea derivatives in a PVC film was successfully synthesized and characterized by IR, UV, NMR, SEM, and thermal analyses. The results revealed that on coordination, the electronic structure change of the ligand affects practically all their spectral vibrational pattern; however, within the complex pattern, some vibrations indicated that the thiourea derivative behaves as a neutral ligand, which coordinates the metal ion through the sulfur atom of the thiocarbonyl group. The greater affinity of the S atom for Cu played a role in Cu(II)→Cu(I) reduction, and the intramolecular hydrogen bonds of the type of (NH···Cl) further stabilized the obtained Cu(I) complex in dioxane. The antimicrobial activity shows that all investigated compounds exhibit excellent activity compared to standard antibiotics. The antibacterial power of the PVC/Cd composite is significantly superior against the most resistant species to both disinfectants and antibiotics compared to its PVC/Cu analogue; nevertheless, the latter exhibited activity equal to an average halo diameter of 29 ± 0.33 mm against pathogenic E. coli ATCC 25,922, indicating excellent G (-) activity. Interestingly, the PVC/Cd composite exhibited excellent activity against pathogenic C. albicans RCMB 005003 (1) ATCC 10,231, while its PVC/Cu analogue was inactive. These materials may be used to reduce infection in wounds either as a composite film or coated barrier dressings, and in addition, the results should open a new direction in antimicrobial surface engineering within the biomedical field. Further challenges are the development of reusable and broad-range antimicrobial polymers..
一种将双酰基硫脲衍生物的Cu(I)和Cd(II)配合物掺入PVC薄膜中的新型抗菌材料被成功合成,并通过红外光谱、紫外光谱、核磁共振、扫描电子显微镜和热分析进行了表征。结果表明,配位后,配体的电子结构变化实际上影响了其所有的光谱振动模式;然而,在配合物模式中,一些振动表明硫脲衍生物表现为中性配体,通过硫羰基的硫原子与金属离子配位。S原子对Cu的更大亲和力在Cu(II)→Cu(I)还原中起作用,(NH···Cl)类型的分子内氢键进一步稳定了在二氧六环中获得的Cu(I)配合物。抗菌活性表明,与标准抗生素相比,所有研究的化合物都表现出优异的活性。与PVC/Cu类似物相比,PVC/Cd复合材料对最耐消毒剂和抗生素的物种具有显著更强的抗菌能力;然而,后者对致病性大肠杆菌ATCC 25922表现出平均晕圈直径为29±0.33 mm的活性,表明其具有优异的G(-)活性。有趣的是,PVC/Cd复合材料对致病性白色念珠菌RCMB 005003(1)ATCC 10231表现出优异的活性,而其PVC/Cu类似物则无活性。这些材料可作为复合膜或涂层屏障敷料用于减少伤口感染,此外,这些结果应为生物医学领域的抗菌表面工程开辟新的方向。进一步的挑战是开发可重复使用的广谱抗菌聚合物。