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Extracellular particles (EPs) are a heterogeneous pool of secreted messengers in cell-cell communication. The isolation of EPs from supernatants, biofluids, and solid tissues allows further research into understanding the role of EPs in physiological and pathological scenarios, which aids in the development of EP-based therapies in biomedicine. This article presents a straightforward, direct, and applicable method for isolating and characterizing EPs from three regions of the porcine brain: the cerebrum, cerebellum, and brainstem. The protocol is a method based on three steps: enzymatic treatment, differential centrifugation, and filtration/ultrafiltration to isolate the brain's EPs. Analysis by scanning electron microscopy (SEM) and nanoparticle tracking analysis (ZetaView) revealed the enrichment of the brain's EPs in the size range of 20-200 nm when isolated using this protocol. Additionally, CD63 and HSP70 expression was assessed by Western Blot without finding significant differences between the brain regions. This simple adapted method will help the understanding of extracellular ecosystems in the CNS and could have interesting implications in brain diagnosis and therapy.
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http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0329985 | PLOS |
Biol Proced Online
September 2025
Division of Surface Physics, Department of Physics and Earth System Sciences, University of Leipzig, Linnéstr. 5, 04103, Leipzig, Germany.
Background: Organotypic long-term cultivation of vascularized retina explants is a major challenge for application in drug development, drug screening, diagnostics and future personalized medicine. With this background, an assay and protocol for organotypic culture of vascularized retina explants in vitro with optimum tissue integrity preservation is developed and demonstrated.
Methods: Morphological, histologic and biochemical integrity as well as viability of vascularized retina explants are compared as function of cultivation time for differently structured nanotube scaffolds.
J Biomed Mater Res B Appl Biomater
September 2025
Contipro a.s., Czech Republic.
Drug delivery to the central nervous system (CNS) is primarily hindered by the blood-brain barrier (BBB). To address this, mucoadhesive formulations have been designed to prolong residence time at the application site. In this study, we comprehensively characterized the physicochemical and mucoadhesive properties of hyaluronic acid tyramine (HATA) photocrosslinked hydrogels using rheological methods, nanoindentation, contact angle goniometry, and advanced confocal microscopy.
View Article and Find Full Text PDFJ Neurotrauma
September 2025
The Max Harry Weil Institute for Critical Care Research and Innovation, University of Michigan, Ann Arbor, Michigan, USA.
Cerebrovascular autoregulation (CA) is a protective mechanism against brain injury. We present an ultrasound-based volumetric blood flow indices to monitor CA. Swine were instrumented under general anesthesia to monitor mean arterial blood pressure (MAP), intracranial pressure (ICP), and blood flow in the internal carotid artery (ICA) and femoral artery (FA) and flow velocity and volumetric flow in the middle cerebral artery (MCA) using transcranial Doppler.
View Article and Find Full Text PDFPLoS One
September 2025
Center of Emergency Medicine, University Hospital Essen, Essen, Germany.
Background: Survival of out-of-hospital cardiac arrest (OHCA) remains poor even when bystander cardiopulmonary resuscitation (CPR) with chest compression is initiated. Chest compressions provide only reduced cardiac output with limited perfusion of heart and brain and therfore may not avoid both death or poor neurological outcome in prolonged CPR. We investigated the impact of resuscitative endovascular balloon occlusion of the aorta (REBOA) on hemodynamics, gas exchange and return of spontanous circulation (ROSC) with short-term survival during mechanical CPR (mCPR) with chest compression synchronized-ventilation (CCSV) in an atraumatic pig model.
View Article and Find Full Text PDFBehav Brain Res
August 2025
Department of Psychiatry, University of Oxford, Oxford, United Kingdom. Electronic address:
This systematic review evaluated the effects of prebiotic and probiotic interventions on early-life cognitive development in animal models and humans. Following PRISMA 2020 guidelines, 39 studies published between 2015 and 2025 were included from PubMed, Scopus, and Web of Science. In rodents, probiotics -mainly Lactobacillus and Bifidobacterium strains- consistently improved spatial learning, working memory, and cognitive flexibility, particularly under conditions of early-life stress and neuroinflammation.
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