Cerebrospinal fluid cytochemical analysis from COVID-19 patients with neurological disorders

Background The COVID-19 pandemic caused by SARS-CoV-2 has affected millions of people worldwide. Most cytochemical studies of cerebrospinal fluid (CSF) in SARS-CoV-2-infected patients show abnormal results. We aimed to determine the physical, cytological, and chemical alterations in CSF from COVID-19 patients with neurological disorders in Peru. Methods An observational, cross-sectional study was conducted at the Hospital Edgardo Rebagliati Martins. Of 94 CSF samples obtained by lumbar puncture from inpatients, 30 from COVID-19 patients with neurological disorders were analyzed. Paired t-test and one-way ANOVA with Bonferroni post-hoc test were used to compare CSF biochemical markers. Results The most frequent neurological disorders were encephalopathy (43%) and brain tumor (23%). Cloudy and reddish fluids occurred in brain tumor and intracerebral hemorrhage; transparent fluids predominated in encephalopathy. CSF glucose >70 mg/dL occurred in 30% of encephalopathy and 13% of intracerebral hemorrhage patients. Proteins >45 mg/dL occurred in 20% of encephalopathy, 17% of intracerebral hemorrhage, and 13% of brain tumor patients. No differences were found in glucose concentration between neurological disorders (p > 0.05); however, protein concentration differed (p = 0.001). Leukocyte counts <5 cells/μL occurred in 33% of encephalopathy and 20% of brain tumor patients. Conclusion These findings suggest that the CSF characteristics may differ by neurological complication in COVID-19. However, patterns were nonspecific and may reflect underlying disorders, systemic inflammation, or blood-CSF barrier dysfunction rather than direct SARS-CoV-2 neuroinvasion. Early recognition and CSF evaluation may aid clinical diagnostic and therapeutic decisions, but further prospective, multicenter, longitudinal studies, including long COVID cohorts, are still needed.

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F1000Research
Published
2026-09-22
DOI
https://doi.org/10.12688/f1000research.139438.2
Primary Topic
Long-Term Effects of COVID-19
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article
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article

Cerebrospinal fluid cytochemical analysis from COVID-19 patients with neurological disorders

Gloría Cruz-Gonzales, Eder Walttuoni-Picón, Victor Rojas-Zumaran, David Quispe-Aranda et al.
F1000Research
Long-Term Effects of COVID-19
article

Cerebrospinal fluid cytochemical analysis from COVID-19 patients with neurological disorders

Gloría Cruz-Gonzales, Eder Walttuoni-Picón, Victor Rojas-Zumaran, David Quispe-Aranda, William Cruz-Gonzales, Arístides Hurtado-Concha, Jeel Moya-Salazar
article en

Abstract

Background The COVID-19 pandemic caused by SARS-CoV-2 has affected millions of people worldwide. Most cytochemical studies of cerebrospinal fluid (CSF) in SARS-CoV-2-infected patients show abnormal results. We aimed to determine the physical, cytological, and chemical alterations in CSF from COVID-19 patients with neurological disorders in Peru. Methods An observational, cross-sectional study was conducted at the Hospital Edgardo Rebagliati Martins. Of 94 CSF samples obtained by lumbar puncture from inpatients, 30 from COVID-19 patients with neurological disorders were analyzed. Paired t-test and one-way ANOVA with Bonferroni post-hoc test were used to compare CSF biochemical markers. Results The most frequent neurological disorders were encephalopathy (43%) and brain tumor (23%). Cloudy and reddish fluids occurred in brain tumor and intracerebral hemorrhage; transparent fluids predominated in encephalopathy. CSF glucose >70 mg/dL occurred in 30% of encephalopathy and 13% of intracerebral hemorrhage patients. Proteins >45 mg/dL occurred in 20% of encephalopathy, 17% of intracerebral hemorrhage, and 13% of brain tumor patients. No differences were found in glucose concentration between neurological disorders (p > 0.05); however, protein concentration differed (p = 0.001). Leukocyte counts <5 cells/μL occurred in 33% of encephalopathy and 20% of brain tumor patients. Conclusion These findings suggest that the CSF characteristics may differ by neurological complication in COVID-19. However, patterns were nonspecific and may reflect underlying disorders, systemic inflammation, or blood-CSF barrier dysfunction rather than direct SARS-CoV-2 neuroinvasion. Early recognition and CSF evaluation may aid clinical diagnostic and therapeutic decisions, but further prospective, multicenter, longitudinal studies, including long COVID cohorts, are still needed.

F1000ResearchVol. 12
Federico Villarreal National University (PE), Universidad Norbert Wiener (PE)
Good health and well-being
Openalex Percentile: Top 11%
Long-Term Effects of COVID-19
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