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Advances in synthetic approach to and antifungal activity of triazoles

机译:三唑类化合物的合成方法及其抗真菌活性研究进展

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Several five membered ring systems, e.g., triazole, oxadiazole dithiazole and thiadiazole with three heteroatoms at symmetrical or asymmetrical positions have been studied because of their interesting pharmacological properties. In this article our emphasis is on synthetic development and pharmacological activity of the triazole moiety which exhibit a broad spectrum of pharmacological activity such as antifungal, antibacterial, anti-inflammatory and anticancer etc. Triazoles have increased our ability to treat many fungal infections, for example, candidiasis, cryptococcal meningitis, aspergillosis etc. However, mortality due to these infections even with antifungal therapy is still unacceptably high. Therefore, the development of new antifungal agents targeting specific fungal structures or functions is being actively pursued. Rapid developments in molecular mycology have led to a concentrated search for more target antifungals. Although we are entering a new era of antifungal therapy in which we will continue to be challenged by systemic fungal diseases, the options for treatment will have greatly expanded.
机译:由于它们有趣的药理特性,已经研究了几种五元环系统,例如三唑,恶二唑二噻唑和噻二唑,在对称或不对称位置具有三个杂原子。在本文中,我们的重点是三唑部分的合成开发和药理活性,三唑部分具有广谱的药理活性,例如抗真菌,抗菌,抗炎和抗癌等。三唑增强了我们治疗许多真菌感染的能力,念珠菌病,隐球菌性脑膜炎,曲霉病等。然而,即使使用抗真菌治疗,由于这些感染而导致的死亡率仍然很高。因此,正在积极地开发针对特定真菌结构或功能的新抗真菌剂。分子真菌学的快速发展导致人们集中寻找更多的目标抗真菌药。尽管我们正在进入抗真菌治疗的新时代,在该时代中,我们将继续受到系统性真菌病的挑战,但治疗的选择将大大扩展。

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