4.5 Article

Synthesis and Biological Characterization of Fluorescent Cyclipostins and Cyclophostin Analogues: New Insights for the Diagnosis of Mycobacterial-Related Diseases br

期刊

ACS INFECTIOUS DISEASES
卷 8, 期 12, 页码 2564-2578

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsinfecdis.2c00448

关键词

drug susceptibility; fluorescence microscopy; M; abscessus; probes

资金

  1. Centre National de la Recherche Scientifique (CNRS)
  2. Aix-Marseille University (AMU)
  3. Association Gregory Lemarchal and Vaincre la Mucoviscidose [RF20190502466]
  4. Agence Nationale de la Recherche (LipInTB project ) [ANR-19-CE44-0011]

向作者/读者索取更多资源

Patients with cystic fibrosis (CF) are at a higher risk of acquiring non-tuberculous mycobacteria infections, particularly Mycobacterium abscessus. This study provides new insights into the mechanism of action of cyclipostins and cyclophostin analogues against intramacrophagic M. abscessus cells, highlighting the importance of intracellular accumulation and disruption of endolysosomal pH. The fluorescent compounds synthesized in this study may also serve as efficient probes for labeling mycobacterial species.
Patients with cystic fibrosis (CF) have a significantly higher risk of acquiring nontuberculous mycobacteria infections, predominantly due to Mycobacterium abscessus, than the healthy population. Because M. abscessus infections are a major cause of clinical decline and morbidity in CF patients, improving treatment and the detection of this mycobacterium in the context of a polymicrobial culture represents a critical component to better manage patient care. We report here the synthesis of fluorescent Dansyl derivatives of four active cyclipostins and cyclophostin analogues (CyCs) and provide new insights regarding the CyC's lack of activity against Gram-negative and Gram-positive bacteria, and above all into their mode of action against intramacrophagic M. abscessus cells. Our results pointed out that the intracellularly active CyC accumulate in acidic compartments within macrophage cells, that this accumulation appears to be essential for their delivery to mycobacteria-containing phagosomes, and consequently, for their antimicrobial effect against intracellular replicating M. abscessus, and that modification of such intracellular localization via disruption of endolysosomal pH strongly affects the CyC accumulation and efficacy. Moreover, we discovered that these fluorescent compounds could become efficient probes to specifically label mycobacterial species with high sensitivity, including M. abscessus in the presence several other pathogens like Pseudomonas aeruginosa and Staphylococcus aureus. Collectively, all present and previous data emphasized the therapeutic potential of unlabeled CyCs and the attractiveness of the fluorescent CyC as a potential new efficient diagnostic tool to be exploited in future diagnostic developments against mycobacterial-related infections, especially against M. abscessus .

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