S100B has been described as a marker of brain injury. However, not much is known regarding change in plasma S100B and its relation with mortality after spontaneous intracerebral hemorrhage (ICH).Thus, we sought to investigate change in plasma S100B level after ICH and to evaluate its relation with disease outcome. Thirty healthy controls and 86 patients with acute ICH were included. Plasma samples were obtained on admission and at days 1, 2, 3, 5, and 7 after ICH. Its concentration was measured by enzyme-linked immunosorbent assay. After ICH, plasma S100B level in patients increased during the 6-h period immediately, peaked in 24 h, plateaued at day 2, decreased gradually thereafter, and was substantially higher than that in healthy controls during the 7-day period. Plasma S100B levels were highly associated with Glasgow Coma Scale scores, ICH volumes, presences of intraventricular hemorrhage, and survival rates (all P < 0.05). Multivariate analysis showed baseline plasma S100B level as a good predictor for 1-week mortality (odds ratio, 1.046; 95%confidence interval, 1.014 - 1.078; P = 0.004). A receiver operating characteristic curve identified plasma S100B cutoff level (192.5 pg/mL) that predicted 1-week mortality with the high sensitivity (93.8%) and specificity (70.4%) values (P < 0.001). The differences between areas under curves of plasma S100B levels and those of Glasgow Coma Scale scores and ICH volumes were not statistically significant (both P > 0.05). Increased S100B level is found after ICH and may contribute to the inflammatory process of ICH, in association with a poor clinical outcome.
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http://dx.doi.org/10.1097/SHK.0b013e3181ad5c88 | DOI Listing |
Background: Non-invasive biofluid and MRI measures of blood-brain-barrier (BBB) dysfunction may aid early detection of cerebral small vessel disease (cSVD). Plasma markers of astrocytic function and injury, such as S100 calcium-binding protein B (S100b), have gained increased attention in relation to BBB integrity and cognition. Here we explored the inter-relationships between plasma S100b levels, an MRI measure of water exchange rate across the BBB (kw), and cognitive performance among older adults.
View Article and Find Full Text PDFAlzheimers Dement
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Barcelonaβeta Brain Research Center (BBRC), Pasqual Maragall Foundation, Barcelona, Spain.
Background: Leukocyte telomere length (LTL) serves as a proxy for tissue-specific TL and peripheral immune aging. Its association with aging-related brain endophenotypes, cognitive functioning, and Alzheimer's disease (AD) risk is established, but the underlying molecular mechanisms remain elusive. Investigating LTL's association with AD biomarkers is crucial for identifying its role in brain resilience and disease progression.
View Article and Find Full Text PDFBrain Sci
December 2024
Canadian Forces Environmental Medicine Establishment, Toronto, ON M3K 2C9, Canada.
Background/objectives: Military aviators can be exposed to extreme physiological stressors, including decompression stress, G-forces, as well as intermittent hypoxia and/or hyperoxia, which may contribute to neurobiological dysfunction/damage. This study aimed to investigate the levels of neurological biomarkers in military aviators to assess the potential risk of long-term brain injury and neurodegeneration.
Methods: This cross-sectional study involved 48 Canadian Armed Forces (CAF) aviators and 48 non-aviator CAF controls.
BMJ Open
December 2024
The Yancheng Clinical College of Xuzhou Medical University, The First People's Hospital of Yancheng, Yancheng, Jiangsu, China
Introduction: Prone positioning with head rotation can influence cerebral haemodynamics, potentially affecting cerebral perfusion and oxygenation. Elderly patients with impaired brain perfusion and oxygenation are at an increased risk of developing postoperative delirium (POD). Despite this, few studies have explored whether head orientation during prone positioning contributes to POD in older adults, an aspect often overlooked by clinicians.
View Article and Find Full Text PDFJ Infect Dis
December 2024
Department of Infection Biology, London School of Hygiene and Tropical Medicine, United Kingdom.
Background: Malaria remains a major public health concern with substantial morbidity and mortality worldwide. In Malaysia, the emergence of Plasmodium knowlesi has led to a surge in zoonotic malaria cases and deaths in recent years. Signs of cerebral involvement have been observed in a noncomatose, fatal case of knowlesi infection, but the potential impact of this malaria species on the brain remains unexplored.
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