Monk Brian C, Goffeau Andre
Department of Oral Sciences, Faculty of Dentistry, University of Otago, Post Office Box 647, Dunedin, New Zealand.
Science. 2008 Jul 18;321(5887):367-9. doi: 10.1126/science.1159746.
The economic cost of fungal infection and its mortality associated with multidrug resistance remain unacceptably high. Recent understanding of the transcriptional regulation of plasma membrane efflux pumps of modest specificity provides new avenues for the development of broad-spectrum fungicides. Together with improved diagnosis and indirect intervention via inhibition of the energy supply for drug efflux, we envisage multifunctional azole analogs that inhibit not only ergosterol biosynthesis and drug efflux-pump activity but also activation of the transcriptional machinery that induces drug efflux-pump expression.
真菌感染的经济成本及其与多重耐药性相关的死亡率仍然高得令人无法接受。最近对中等特异性质膜外排泵转录调控的认识为广谱杀菌剂的开发提供了新途径。结合改进的诊断以及通过抑制药物外排的能量供应进行间接干预,我们设想开发多功能唑类类似物,其不仅能抑制麦角固醇生物合成和药物外排泵活性,还能抑制诱导药物外排泵表达的转录机制的激活。