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An Amphotericin B Derivative Equally Potent to Amphotericin B and with Increased Safety

机译:两性霉素B衍生物与两性霉素B具有相同的效力,并具有更高的安全性

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摘要

Amphotericin B is the most potent antimycotic known to date. However due to its large col- lateral toxicity, its use, although long standing, had been limited. Many attempts have been made to produce derivatives with reduced collateral damage. The molecular mechanism of polyene has also been closely studied for this purpose and understanding it would contrib- ute to the development of safe derivatives. Our study examined polyene action, including chemical synthesis, electrophysiology, pharmacology, toxicology and molecular dynamics. The results were used to support a novel Amphotericin B derivative with increased selectiv- ity: L-histidine methyl ester of Amphotericin B. We found that this derivative has the same form of action as Amphotericin B, i.e. pore formation in the cell membrane. Its reduced dimerization in solution, when compared to Amphotericin B, is at least partially responsible for its increased selectivity. Here we also present the results of preclinical tests, which show that the derivative is just as potent as Amphotericin B and has increased safety.
机译:两性霉素B是迄今为止已知的最有效的抗真菌药。但是,由于其较大的间接毒性,尽管使用时间长,但使用受到限制。已经进行了许多尝试来制备具有减少的附带损害的衍生物。为此,也已经对多烯的分子机理进行了深入研究,并且了解多烯的分子机理将有助于开发安全的衍生物。我们的研究检查了多烯的作用,包括化学合成,电生理,药理学,毒理学和分子动力学。结果被用于支持选择性提高的新型两性霉素B衍生物:两性霉素B的L-组氨酸甲酯。我们发现该衍生物具有与两性霉素B相同的作用形式,即在细胞膜中形成孔。与两性霉素B相比,其在溶液中减少的二聚化至少部分负责其选择性的提高。在这里,我们还介绍了临床前测试的结果,这些结果表明该衍生物与两性霉素B一样有效,并提高了安全性。

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