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Updated: Jan 18, 2026

Visualization of Macrophage Lytic Cell Death During Mycobacterial Infection in Zebrafish Embryos via Intravital Microscopy
Published on: January 9, 2019
Transient vascular occlusions in a zebrafish model of mycobacterial brain infection
Megan I Hayes1, Sumedha Ravishankar1, Tariq Qayum1
1School of Biological Sciences, University of California, San Diego, La Jolla, United States of America.
Abstract:
Mycobacterial brain infection, for example tuberculous meningitis (TBM), caused by Mycobacterium tuberculosis, is a severe manifestation of tuberculosis that occurs when the bacteria invade the brain. In addition to extensive inflammation, vascular complications such as stroke frequently arise, significantly increasing the risk of disability and death. However, the mechanisms underlying these vascular complications remain poorly understood, as current knowledge is derived exclusively from human studies. To date, no animal model has been established to investigate the onset and progression of vascular pathology in TBM. Here, we use transparent zebrafish larvae to investigate vascular pathology during the early stages of TBM, establishing a model for studying vascular complications from mycobacterial brain infection. We find that mycobacteria preferentially attach to the lumen of vessel bifurcations and induce vessel enlargement. These attached microcolonies are sufficient to occlude brain blood vessels in the absence of an organized thrombus. The majority of microcolony-associated occlusions are transient and contribute to global hypoperfusion of the brain. These vascular disruptions lead to accumulation of oxidative stress and cell death in both the vasculature and neurons. Taken together, these findings demonstrate the occurrence of ischemic events during the early stages of mycobacterial brain infection and establish an animal model for studying vascular complications in TBM.
Insights
Tackling tuberculous meningitis (TBM) in the brain, this study reveals how Mycobacterium tuberculosis causes vascular issues. Zebrafish models show early bacterial colonization leads to blood vessel occlusion and brain damage.
Area of Science:
- Neuroscience
- Infectious Diseases
- Vascular Biology
Background:
- Tuberculous meningitis (TBM) is a severe form of tuberculosis affecting the brain.
- Vascular complications like stroke are common in TBM, increasing mortality and disability.
- Mechanisms of TBM vascular pathology are poorly understood due to lack of animal models.
Purpose of the Study:
- Establish a zebrafish model to study early vascular pathology in TBM.
- Investigate how Mycobacterium tuberculosis impacts brain vasculature during infection.
Main Methods:
- Utilized transparent zebrafish larvae for in vivo imaging.
- Observed mycobacteria-induced vascular changes and occlusions.
- Assessed oxidative stress and cell death in brain vasculature and neurons.
Main Results:
- Mycobacteria were found to attach to vessel bifurcations, causing enlargement and occlusion without thrombus formation.
- Microcolony-induced occlusions were often transient, leading to global brain hypoperfusion.
- Observed increased oxidative stress and cell death in vasculature and neurons.
Conclusions:
- Mycobacterial brain infection causes early ischemic events.
- The zebrafish model effectively demonstrates vascular complications in TBM.
- This model facilitates further research into TBM vascular pathology and potential treatments.

