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The current global situation for tuberculous meningitis: epidemiology, diagnostics, treatment and outcomes
James A Seddon1,2, Lillian Tugume3, Regan Solomons4
1Department of Infectious Diseases, Imperial College London, London, W2 1PG, UK.
Abstract:
Tuberculous meningitis (TBM) results from dissemination of M. tuberculosis to the cerebrospinal fluid (CSF) and meninges. Ischaemia, hydrocephalus and raised intracranial pressure frequently result, leading to extensive brain injury and neurodisability. The global burden of TBM is unclear and it is likely that many cases are undiagnosed, with many treated cases unreported. Untreated, TBM is uniformly fatal, and even if treated, mortality and morbidity are high. Young age and human immunodeficiency virus (HIV) infection are potent risk factors for TBM, while Bacillus Calmette-Guérin (BCG) vaccination is protective, particularly in young children. Diagnosis of TBM usually relies on characteristic clinical symptoms and signs, together with consistent neuroimaging and CSF parameters. The ability to confirm the TBM diagnosis via CSF isolation of M. tuberculosis depends on the type of diagnostic tests available. In most cases, the diagnosis remains unconfirmed. GeneXpert MTB/RIF and the next generation Xpert Ultra offer improved sensitivity and rapid turnaround times, and while roll-out has scaled up, availability remains limited. Many locations rely only on acid fast bacilli smear, which is insensitive. Treatment regimens for TBM are based on evidence for pulmonary tuberculosis treatment, with little consideration to CSF penetration or mode of drug action required. The World Health Organization recommends a 12-month treatment course, although data on which to base this duration is lacking. New treatment regimens and drug dosages are under evaluation, with much higher dosages of rifampicin and the inclusion of fluoroquinolones and linezolid identified as promising innovations. The inclusion of corticosteroids at the start of treatment has been demonstrated to reduce mortality in HIV-negative individuals but whether they are universally beneficial is unclear. Other host-directed therapies show promise but evidence for widespread use is lacking. Finally, the management of TBM within health systems is sub-optimal, with drop-offs at every stage in the care cascade.
Insights
Tuberculous meningitis (TBM) is a severe infection of the brain lining. Early diagnosis and improved treatments, including new drug regimens and host-directed therapies, are crucial for reducing high mortality and neurodisability in TBM patients.
Area of Science:
- Neurology
- Infectious Diseases
- Public Health
Background:
- Tuberculous meningitis (TBM) arises from Mycobacterium tuberculosis spreading to the meninges and cerebrospinal fluid (CSF).
- TBM leads to significant brain injury, neurodisability, and high mortality, with its global burden underestimated due to underdiagnosis and underreporting.
- Risk factors include young age and HIV infection, while BCG vaccination offers protection.
Purpose of the Study:
- To review the current understanding of TBM, including its diagnosis, treatment, and management challenges.
- To highlight the limitations of existing diagnostic tools and the need for improved therapeutic strategies.
Main Methods:
- Review of current literature on TBM diagnosis and treatment.
- Analysis of diagnostic methods, including microscopy, GeneXpert MTB/RIF, and Xpert Ultra.
- Evaluation of current and emerging TBM treatment regimens, including drug dosages, duration, and adjunctive therapies like corticosteroids.
Main Results:
- Diagnosis often remains unconfirmed due to limitations in diagnostic sensitivity.
- GeneXpert MTB/RIF and Xpert Ultra show improved sensitivity but have limited availability.
- Current treatment regimens are based on pulmonary TB evidence, with limited consideration for CSF penetration; new regimens and higher dosages are under investigation.
- Corticosteroids reduce mortality in HIV-negative individuals, but universal benefit is unclear.
- Health system management of TBM is suboptimal, with care cascade drop-offs.
Conclusions:
- There is an urgent need for more sensitive and accessible diagnostic tools for TBM.
- Optimizing TBM treatment requires regimens tailored for CSF penetration and further research into novel drug combinations and host-directed therapies.
- Improving TBM care cascade management within health systems is essential to reduce morbidity and mortality.
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