Hunziker Daniel, Wyss Pierre-C, Angehrn Peter, Mueller Aranka, Marty Hans-Peter, Halm Remy, Kellenberger Laurenz, Bitsch Veronique, Biringer Gerard, Arnold Wolf, Stämpfli Andreas, Schmitt-Hoffmann Anne, Cousot Denis
F. Hoffmann-La Roche Ltd, Discovery Research, CH-4070 Basel, Switzerland.
Bioorg Med Chem. 2004 Jul 1;12(13):3503-19. doi: 10.1016/j.bmc.2004.04.039.
In an effort to find novel semisynthetic macrolides with extended antibacterial spectrum and improved activity we prepared a series of compounds based on commercially available clarithromycin, a potent and safe antimicrobial agent of outstanding clinical and commercial interest. According to the literature, improvement of antibacterial activity of erythromycin type antibiotics can be achieved by introduction of fused heterocycles such as cyclic carbonates or carbamates at positions 11 and 12 (such as in telithromycin). In the course of the work presented here, a similar, hitherto unprecedented set of compounds bearing a five-membered lactone ring fused to positions 11 and 12 was prepared based on carbon-carbon bond formation via intramolecular Michael addition of a [(hetero)arylalkylthio]acetic acid ester enolate to an alpha,beta-unsaturated ketone as the key step. Some of the ketolide compounds described in this paper were highly active against a representative set of erythromycin sensitive and erythromycin resistant test strains. The best compound showed a similar antimicrobial spectrum and comparable activity in vitro as well as in vivo as telithromycin. Furthermore, some physicochemical properties of these compounds were determined and are presented here. On the basis of these results, the novel ketolide lactones presented in this paper emerged as valuable lead compounds with comparable properties as the commercial ketolide antibacterial telithromycin (Ketek).
为了寻找具有更广泛抗菌谱和更高活性的新型半合成大环内酯类药物,我们以市售的克拉霉素为基础制备了一系列化合物,克拉霉素是一种强效且安全的抗菌剂,具有显著的临床和商业价值。根据文献报道,通过在11位和12位引入稠合杂环,如环状碳酸酯或氨基甲酸酯(如泰利霉素),可以提高红霉素类抗生素的抗菌活性。在本文所述的研究过程中,通过分子内迈克尔加成反应,以[(杂)芳基烷基硫代]乙酸酯烯醇盐与α,β-不饱和酮形成碳-碳键为关键步骤,制备了一组类似的、前所未有的化合物,这些化合物在11位和12位带有稠合的五元内酯环。本文所述的一些酮内酯化合物对一组具有代表性的红霉素敏感和耐药测试菌株具有高活性。最佳化合物在体外和体内均显示出与泰利霉素相似的抗菌谱和相当的活性。此外,还测定了这些化合物的一些物理化学性质并在此呈现。基于这些结果,本文所述的新型酮内酯类化合物成为有价值的先导化合物,其性质与市售酮内酯类抗菌药物泰利霉素(Ketek)相当。