Intracerebral haemorrhage is a debilitating stroke sub-type with high morbidity and mortality rates. For survivors, rehabilitation is a long process, and with no available therapeutics to limit the immediate pathophysiology of the haemorrhage, recovery is dependent on individual neuroplasticity. We have previously shown that zebrafish larvae can be used to model spontaneous brain haemorrhage. Zebrafish exhibit innate recovery mechanisms and are often used as a model system for investigation into regeneration after injury, including injury to the nervous system. Here, we investigate the spontaneous and immediate recovery in zebrafish larvae following an intracerebral haemorrhage at 2 days post-fertilisation, during pre-protected stages and over the first 3 weeks of life. We have shown that following the onset of bleed at ∼2 days post-fertilisation zebrafish are capable of clearing the haematoma through the ventricles. Brain cell damage associated with intracerebral haemorrhage is resolved within 48 h, and this recovery is associated with survival rates equal to wildtype and non-haemorrhaged sibling control animals. Larvae express more nestin-positive neural progenitor cells 24 h after injury when the most damage is observed, and through mass spectrometry analysis, we have determined that these cells are highly proliferative and may specially differentiate into oligodendrocytes. This study provides an insight into the haematoma resolution processes in a live, intact organism, and may suggest potential therapeutic approaches to support the recovery of intracerebral haemorrhage patients.
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http://dx.doi.org/10.1093/braincomms/fcae310 | DOI Listing |
J Neurosurg
January 2025
Departments of1Neurosurgery.
Objective: Intraventricular hemorrhage (IVH) is a serious condition with high mortality rates and poor functional outcome in survivors. Treatment includes external ventricular drains (EVDs), which are associated with several complications. This study reports the clinical outcome and complication rate in patients with primary IVH (pIVH) and secondary IVH treated with EVDs.
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December 2024
Chiang Mai University/Neurophysiology Unit/Cardiac Electrophysiology Research and Training Center, Faculty of Medicine, Chiang Mai, Thailand.
Background: Our studies suggest that iron-overloaded rats developed neurotoxicity and cognitive impairment (1,2). An increase in brain mitochondrial fission and brain mitophagy have been considered as one of underlying mechanisms in brain with iron-overloaded condition (3,4). Hence, a pharmacological intervention focused on preventing brain mitochondrial pathologies is required.
View Article and Find Full Text PDFAlzheimers Dement
December 2024
Indiana University School of Medicine, Stark Neurosciences Research Institute, Department of Neurology, Indianapolis, IN, USA.
Anti-amyloid immunotherapy holds great promise for our patients and their families as the first disease-modifying therapy for the treatment of Alzheimer's disease (AD) to be approved. Positive clinical trials for lecanamab and donanemab showed significant and rapid lowering of brain amyloid burden and a significant slowing of cognitive decline. Amyloid-related imaging abnormalities (ARIA) in the form of vasogenic edema (ARIA-E) and micro - and macro- hemorrhages (ARIA-H) remain the major obstacle to broad use of these agents.
View Article and Find Full Text PDFAlzheimers Dement
December 2024
University of Milano - Bicocca, Monza, Monza, Italy, iCAB International Network, University of Milano - Bicocca, Monza, Italy.
ARIA-E/H (amyloid-related imaging abnormalities-Edema/Hemorrhage) is an umbrella term that defines the radiographic appearance of MRI images abnormality during treatments with Aβ-lowering monoclonal antibodies (mAbs) for Alzheimer's disease immunotherapy. Today, it is well-recognized that ARIA-E events can also occur spontaneously in patients with cerebral amyloid angiopathy-related inflammation (CAA-ri), a rare autoimmune encephalopathy associated with raised cerebrospinal fluid (CSF) concentrations of spontaneous auto-antibodies against Aβ (aAbs). In this framework, the last years of research and experience of the iCAB international Network generated an increased consensus that therapy-induced ARIA is the iatrogenic manifestation of CAA-ri.
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