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Routes of Synthesis of Carbapenems for Optimizing Both the Inactivation of l,d‑Transpeptidase LdtMt1 of Mycobacterium tuberculosis and the Stability toward Hydrolysis by β‑Lactamase BlaC

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Figshare2016-04-14 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Routes_of_Synthesis_of_Carbapenems_for_Optimizing_Both_the_Inactivation_of_l_d_Transpeptidase_Ldt_sub_Mt1_sub_of_Mycobacterium_tuberculosis_and_the_Stability_toward_Hydrolysis_by_Lactamase_BlaC/3119161
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Combinations of β-lactams of the carbapenem class, such as meropenem, with clavulanate, a β-lactamase inhibitor, are being evaluated for the treatment of drug-resistant tuberculosis. However, carbapenems approved for human use have never been optimized for inactivation of the unusual β-lactam targets of Mycobacterium tuberculosis or for escaping to hydrolysis by broad-spectrum β-lactamase BlaC. Here, we report three routes of synthesis for modification of the two side chains carried by the β-lactam and the five-membered rings of the carbapenem core. In particular, we show that the azide–alkyne Huisgen cycloaddition reaction catalyzed by copper­(I) is fully compatible with the highly unstable β-lactam ring of carbapenems and that the triazole ring generated by this reaction is well tolerated for inactivation of the l,d-transpeptidase LdtMt1 target. Several of our new carbapenems are superior to meropenem both with respect to the efficiency of in vitro inactivation of LdtMt1 and reduced hydrolysis by BlaC.
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2016-04-14
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