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Updated: Jun 7, 2025

Enrichment of Native and Recombinant Extracellular Vesicles of Mycobacteria
Published on: December 8, 2023
The role of antibiotic-derived mycobacterial vesicles in tuberculosis pathogenesis
C J Davids1, K Umashankar-Rao1, J Kassaliete1
1Department of Microbiology, Immunology and Glycobiology, Institution of Laboratory Medicine, Lund University, Lund, Sweden.
Abstract:
Pulmonary tuberculosis (TB) causes progressive and irreversible damage to lung tissue, a damage that may not fully resolve after treatment. Mycobacterial vesicles (MVs), which are poorly understood, may contribute to TB pathology. This study investigated the effects of stress, such as treatment with conventional TB antibiotics rifampicin, isoniazid, ethambutol, or treatment with an antimycobacterial peptide (NZX), on mycobacterial vesiculation. Stress from minimal inhibitory concentrations of antibiotics, or peptide all increased MV formation. Electron microscopy and lipid profiling revealed that these vesicles, about 40 nm in size, were released from the bacterial inner membrane and consisted of apolar lipids. Using mass spectrometry, the study identified key differences in MVs protein cargo dependent on the antibiotic used, especially with ethambutol-induced MVs that contained proteins from several mycobacterial pathways. Additionally, toxicology analysis using different concentrations of MVs on primary human macrophages and the monocytic cells indicated that MVs from the different treatments were not toxic to human cells, however induced specific inflammatory profiles. In conclusion, this study identified mycobacterial vesicles to be a potential contributor to tuberculosis pathology.
Insights
Mycobacterial vesicles (MVs) increase during tuberculosis treatment with antibiotics or a peptide. These MVs, containing apolar lipids and proteins, are not toxic but induce inflammatory responses, suggesting a role in TB pathology.
Area of Science:
- Microbiology
- Immunology
- Pathology
Background:
- Pulmonary tuberculosis (TB) causes lasting lung damage.
- The role of mycobacterial vesicles (MVs) in TB pathology is unclear.
Purpose of the Study:
- Investigate how stress (antibiotics, peptide) affects MV formation.
- Characterize MVs and their impact on human cells.
Main Methods:
- Exposed Mycobacterium tuberculosis to antibiotics (rifampicin, isoniazid, ethambutol) and peptide (NZX).
- Analyzed MVs using electron microscopy, lipid profiling, and mass spectrometry.
- Assessed MV toxicology and inflammatory effects on macrophages and monocytic cells.
Main Results:
- Antibiotic and peptide treatments increased MV formation.
- MVs are ~40 nm, released from the inner membrane, and contain apolar lipids.
- MV protein cargo varied by treatment; ethambutol-induced MVs contained diverse mycobacterial proteins.
- MVs were not toxic to human cells but induced specific inflammatory profiles.
Conclusions:
- Mycobacterial vesiculation is induced by stress conditions relevant to TB treatment.
- Mycobacterial vesicles may contribute to tuberculosis pathology through inflammatory signaling.
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