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首页> 外文期刊>Journal of Medicinal Chemistry >Semisynthetic Macrolide Antibacterials Derived from Tylosin. Synthesis and Structure-Activity Relationshis of Novel Desmycosin Analogues
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Semisynthetic Macrolide Antibacterials Derived from Tylosin. Synthesis and Structure-Activity Relationshis of Novel Desmycosin Analogues

机译:来自泰乐菌素的半合成大环内酯类抗菌剂。新型脱麦芽孢素类似物的合成及其构效关系

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A series of 20-O-substituted and 3,20-di-O-substituted derivatives of desmycosin were synthesized and their biological properties were evaluated. In particular, we have synthesized numerous side chain modified analogues of desmycosin as well as some analogues possessing a combination of modified side chain and alternative C-3 substituents. Thus, α,β-unsaturated analogues of desmycosin (2), tylosin (1), 10,11,12,13-tetrahydrotylosin (11), and 2,3-didehydrodesmycosin (13) were prepared from the corresponding aldehydes by a Wittig reaction with the stabilized ylides (a-d), generating a trans-double bond, followed by modified Pfitzner-Moffat oxidation of the C-3 hydroxyl group. To evaluate the importance of the C-3 position of desmycosin for biological activity, the C-3 substituted derivatives were synthesized by a standard sequence of protective group chemistry followed by Wittig reaction and esterification as the key steps. For the attachment of the C-3 ester functionality, a mixed anhydride protocol was adopted. Reaction proceeded smoothly to give corresponding esters in yields ranging from 70 to 80%. Base- and acid-catalyzed rearrangement products including desmycosin 8,20-aldols (24a and 24b) and desmycosin 3,19-aldol (25) are also described. Parallel array synthesis and purification techniques allowed for the rapid exploration of structure-activity relationships within this class and for the improvement in potency. In vitro evaluation of these derivatives demonstrated good antimicrobial activity against Gram-positive bacteria for most of the compounds. The present derivatives of 16-membered macrolides were active against MLS_B-resistant strains that were inducibly resistant, but not those constitutively resistant to erythromycin.
机译:合成了一系列脱麦角菌素的20-O-取代和3,20-di-O-取代的衍生物,并评估了它们的生物学特性。特别地,我们已经合成了脱麦角菌素的许多侧链修饰的类似物,以及一些具有修饰的侧链和可替代的C-3取代基的类似物。因此,通过维蒂希(Wittig)从相应的醛制备了脱麦考菌素(2),泰乐菌素(1),10,11,12,13-四氢泰乐菌素(11)和2,3-二氢脱氢麦芽素(13)的α,β-不饱和类似物。与稳定的乙炔(ad)反应,生成反式双键,然后对C-3羟基进行修饰的Pfitzner-Moffat氧化。为了评估脱麦角菌素的C-3位置对生物活性的重要性,通过标准的保护基化学序列,然后进行Wittig反应和酯化反应,将C-3取代的衍生物合成为关键步骤。为了连接C-3酯官能团,采用了混合酸酐方案。反应平稳进行,得到相应的酯,产率为70-80%。还描述了碱和酸催化的重排产物,包括除麦草素8,20-醛醇(24a和24b)和除麦草素3,19-醛醇(25)。平行阵列合成和纯化技术可以快速探索此类中的结构-活性关系,并提高效能。这些衍生物的体外评估表明,对于大多数化合物而言,它们对革兰氏阳性细菌具有良好的抗菌活性。本发明的16元大环内酯类衍生物对具有诱导抗性的MLS_B抗性菌株具有活性,但对红霉素没有组成型抗性。

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