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Synthesis and antimicrobial properties of silver(I) N-heterocyclic carbene complexes.

机译:银(I)N-杂环卡宾配合物的合成及抗菌性能。

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摘要

New symmetric and asymmetric types of N-heterocyclic carbene (NHC) precursors, grouped into mono-dentate, bi-dentate and tri-dentate chelating ligands, were synthesized. The reaction of the carbene precursors with silver(I) oxide in methanol at room temperature affords the silver(I) N-heterocyclic carbene complexes. The solubility and stability of silver(I) NHC complexes in water depends on the ligand and counter anion. In-vitro test of water soluble silver(I) NHC complex, [AgC17N5O 2H21]+ [OH]- 3a shows antimicrobial activity as good as 0.5% AgNO3 using the same amount of silver on pathogenic bacteria and fungi of clinical importance. The encapsulation of Ag(I) NHC complexes, [Ag2C34N 10O4H]2+2[OH]- 6 and [Ag3C54N12O2H] 3+[Br]-2[OH]- 8a respectively by electrospinning technique, delivers bioactive nanosilver ions which improved the antimicrobial activity of the Ag(I) NHC over the un-encapsulated forms. The electrospun mat of 6 sustained the release of bioactive nanosilver ions for at least seven days. Electrospun fiber mat containing 75% of 6 showed improved antimicrobial efficacies in-vitro over silver sulfadiazine cream (SSD), with the rate of bactericidal activity six fold faster than SSD and ca. the same rate as 0.5% AgNO3. The amount of silver in the fiber mat is six times lower than SSD and 8 fold lower than 0.5% AgNO3. The size of the nanosilver ions of electrospun mat of 6 is 20 nm, while that of 8a is in the range of 50--100 nm. Electrospun fiber of 8a is lower in bactericidal activity than that of 6. The NHC precursors also showed antimicrobial activity at higher concentrations than corresponding Ag(I) NEC complex. The thermal stability of NEC precursor salt C26H23Br 3N6O 7a is ca. 304°C. This is relatively higher than most Ag(I) NHC complexes and imidazolium salts reported. Toxicity assessment of the NHC precursor 5 shows an LD50 of 100 mg/Kg in the rat.
机译:合成了新的对称和不对称类型的N-杂环卡宾(NHC)前体,分为单齿,双齿和三齿螯合配体。卡宾前体与甲醇中的氧化银(I)在室温下反应,得到银(I)N-杂环卡宾络合物。银(I)NHC络合物在水中的溶解度和稳定性取决于配体和抗衡阴离子。水溶性银(I)NHC复合物[AgC17N5O 2H21] + [OH] -3a的体外测试显示,使用等量的银对临床具有重要意义的致病细菌和真菌,其抗菌活性可高达0.5%AgNO3。 Ag(I)NHC配合物分别通过静电纺丝技术包封[Ag2C34N 10O4H] 2 + 2 [OH] -6和[Ag3C54N12O2H] 3+ [Br] -2 [OH] -8a,从而提供生物活性的纳米银离子,从而改善了Ag(I)NHC对未封装形式的抗菌活性。 6的静电纺丝垫可至少持续7天释放生物活性纳米银离子。含有75%的6的电纺纤维毡在体外具有比磺胺嘧啶银乳膏(SSD)更高的抗菌效果,杀菌速度比SSD和CA快六倍。与0.5%AgNO3的比率相同。纤维毡中的银含量比SSD低六倍,比0.5%AgNO3低八倍。电纺垫的纳米银离子的尺寸小于20 nm,而8a的尺寸在50--100 nm范围内。 8a的静电纺丝纤维的杀菌活性低于6的静电纺丝纤维。NHC前体在比相应的Ag(I)NEC复合物更高的浓度下也显示出抗菌活性。 NEC前体盐C26H23Br 3N6O 7a的热稳定性约为。 304℃。这相对高于大多数报道的Ag(I)NHC复合物和咪唑鎓盐。 NHC前体5的毒性评估显示,大鼠的LD50为100 mg / Kg。

著录项

  • 作者单位

    The University of Akron.;

  • 授予单位 The University of Akron.;
  • 学科 Chemistry Inorganic.; Chemistry Pharmaceutical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 260 p.
  • 总页数 260
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;药物化学;
  • 关键词

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