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Updated: Oct 6, 2026

Intravital Imaging of Attenuated Auxotrophic Mycobacterium tuberculosis in Murine Lung during Early Intravascular Infection
Published on: June 30, 2026
Morphological plasticity facilitates lung adaptation and dynamic immune remodeling in Mycobacterium abscessus
Yu Chen1,2, Qing Miao1, Lijuan Hu1
1Department of Infectious Diseases, Zhongshan Hospital, Fudan University, Shanghai, China.
Abstract:
Mycobacterium abscessus pulmonary disease (Mab-PD) shows rising global incidence and low cure rates. Mab exhibits marked phenotypic heterogeneity, with infection outcomes likely dependent on strain-specific host interactions. Through in vivo morphotype switching, we obtained a rough strain (Mab-R) that showed higher virulence, bacterial loads, and lung pathology than the smooth morphotype. Transcriptomic analysis revealed that Mab-R adapts to macrophage functional states by modulating virulence and metabolic genes, promoting intracellular survival. Single-cell RNA sequencing uncovered dynamic macrophage reprogramming during infection. In acute infection, alveolar macrophages and C1qa+ interstitial macrophages cleared Mab-R via programmed cell death, while newly recruited monocytes showed strong phagocytic capacity but incomplete bacterial clearance. During chronic infection, enhanced T cell immunity and resident-like macrophage dominance facilitated inflammation resolution. These findings reveal host-pathogen interplay driving Mab-R persistence and identify bacterial metabolic adaptation and macrophage reprogramming as potential therapeutic targets for chronic Mab-PD.
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