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Cerebrospinal fluid pleocytosis in immunocompromised patients: Can it be Cryptococcus
Ridhi Sood1, Ruchita Tyagi2, Pavneet Selhi2
1Department of Pathology, Dayanand Medical College and Hospital, Ludhiana.
Insights
Pleocytosis in cerebrospinal fluid (CSF) of immunocompromised patients can indicate cryptococcal meningitis. Vigilance is crucial for early diagnosis and treatment of this opportunistic infection.
Area of Science:
- Infectious Diseases
- Neurology
- Clinical Pathology
Background:
- Cryptococcal meningitis is a serious opportunistic infection primarily affecting immunocompromised individuals.
- Clinical presentation can be varied, making diagnosis challenging.
- Cerebrospinal fluid (CSF) analysis is critical for diagnosis.
Purpose of the Study:
- To retrospectively analyze CSF findings in immunocompromised patients diagnosed with cryptococcal meningitis.
- To determine the diagnostic utility of pleocytosis in CSF for identifying cryptococcal meningitis in this population.
Main Methods:
- Retrospective analysis of CSF cytospin slides from immunocompromised patients with pleocytosis.
- Microscopic examination for Cryptococcus spores.
- India Ink Preparation and Gomori Methenamine Silver staining.
- Agglutination-based cryptococcal antigen assay.
Main Results:
- Out of 932 CSF samples, 10 showed pleocytosis; 5 of these confirmed Cryptococcus.
- All confirmed cases were in immunocompromised patients with CSF leukocytosis.
- Cryptococcus spores were identified in all confirmed cases.
- Cryptococcal antigen assay was positive in all but one case.
Conclusions:
- Pleocytosis in the CSF of an immunocompromised patient strongly suggests cryptococcal meningitis.
- Pathologists and clinicians must maintain high suspicion and investigate thoroughly for opportunistic infections.
- Early detection and management are vital for improving patient outcomes.
Abstract:
Cryptococcal meningitis commonly affects immunocompromised cases and can have varied presentation. In some instances, the presence of a plethora of inflammatory cells on cerebrospinal fluid (CSF) in an immunosuppressed patient can lead to further investigations, which unravel the presence of cryptococcal meningitis. The aim of this retrospective study was to analyze the spectrum of CSF findings of immunosuppressed patients who were diagnosed to have cryptococcal meningitis. Retrospective analysis of CSF cytospin slides exhibiting pleocytosis and belonging to immunocompromised patients was performed, and these cases were found to have cryptococcal meningitis. Out of 932 cases of CSF (January 2016-July 2017), 10 had pleocytosis and 5 of these 10 cases demonstrated spores of Cryptococcus. Male-to-female ratio was 1:1.5. All the patients were immunocompromised and had CSF leukocytosis. Lymphocytes and monocytes were present in all samples while only one case showed plasma cells. Spores of Cryptococcus were also noted in all the cases and highlighted on India Ink Preparation and Gomori Methenamine Silver stain. All the cases were positive for agglutination-based cryptococcal antigen assay, except one where the test was not done. All immunosuppressed patients having pleocytosis in CSF were found to have cryptococcal infection. Therefore, pleocytosis in CSF in any immunosuppressed patient should raise the suspicion of cryptococcal meningitis. The pathologist and the clinician need to be vigilant in such scenarios to rule out any opportunistic infection and investigate the patient thoroughly for any underlying immunosuppression.
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