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Topic: Blood-Brain-Barrier

Seminar
10 seminars
Conference
1 conference
Conference · Neuroscience

Astrocytes: from molecules to systems

Apr 12–16, 2027

This EMBO Workshop brings together researchers studying astrocytes from molecular mechanisms to systems-level brain functions. The programme covers astrocyte roles in synapse assembly, circuit modulation, homeostasis, metabolism, memory, behavior, the blood-brain barrier, interactions with neurons and glia, and emerging therapeutic strategies.

Seminar · Pharmacology

Pharmacological exploitation of neurotrophins and their receptors to develop novel therapeutic approaches against neurodegenerative diseases and brain trauma

Ioannis Charalampopoulos · Professor of Pharmacology, Medical School, University of Crete & Affiliated Researcher, Institute of Molecular Biology & Biotechnology (IMBB), Foundation for Research and Technology Hellas (FORTH)

Fri, Mar 7, 2025 · 14:30 UTC

Neurotrophins (NGF, BDNF, NT-3) are endogenous growth factors that exert neuroprotective effects by preventing neuronal death and promoting neurogenesis. They act by binding to their respective high-affinity, pro-survival receptors TrkA, TrkB or TrkC, as well as to p75NTR death receptor. While these molecules have been shown to significantly slow or prevent neurodegeneration, their reduced bioavailability and inability to penetrate the blood-brain-barrier limit their use as potential therapeutics. To bypass these limitations, our research team has developed and patented small-sized, lipophilic

Seminar · Chronobiology

How are the epileptogenesis clocks ticking?

Cristina Reschke · RCSI

Wed, Apr 10, 2024 · 18:00 UTC

The epileptogenesis process is associated with large-scale changes in gene expression, which contribute to the remodelling of brain networks permanently altering excitability. About 80% of the protein coding genes are under the influence of the circadian rhythms. These are 24-hour endogenous rhythms that determine a large number of daily changes in physiology and behavior in our bodies. In the brain, the master clock regulates a large number of pathways that are important during epileptogenesis and established-epilepsy, such as neurotransmission, synaptic homeostasis, inflammation, blood-brain

Seminar · Medical Imaging

Blood-brain barrier dysfunction in epilepsy: Time for translation

Alon Friedman · Dalhousie University

Wed, Feb 28, 2024 · 18:00 UTC

The neurovascular unit (NVU) consists of cerebral blood vessels, neurons, astrocytes, microglia, and pericytes. It plays a vital role in regulating blood flow and ensuring the proper functioning of neural circuits. Among other, this is made possible by the blood-brain barrier (BBB), which acts as both a physical and functional barrier. Previous studies have shown that dysfunction of the BBB is common in most neurological disorders and is associated with neural dysfunction. Our studies have demonstrated that BBB dysfunction results in the transformation of astrocytes through transforming growth

Seminar · Developmental Neuroscience

Astrocyte reprogramming / activation and brain homeostasis

Thomaidou Dimitra · Department of Neurobiology, Hellenic Pasteur Institute, Athens, Greece

Wed, Dec 13, 2023 · 14:00 UTC

Astrocytes are multifunctional glial cells, implicated in neurogenesis and synaptogenesis, supporting and fine-tuning neuronal activity and maintaining brain homeostasis by controlling blood-brain barrier permeability. During the last years a number of studies have shown that astrocytes can also be converted into neurons if they force-express neurogenic transcription factors or miRNAs. Direct astrocytic reprogramming to induced-neurons (iNs) is a powerful approach for manipulating cell fate, as it takes advantage of the intrinsic neural stem cell (NSC) potential of brain resident reactive astr

Seminar · Brain Imaging

MBI Webinar on preclinical research into brain tumours and neurodegenerative disorders

Ekaterina (Caty) Salimova and Ms Sanjeevini Babu Reddiar

Wed, Apr 13, 2022 · 20:30 UTC

WEBINAR 1 Breaking the barrier: Using focused ultrasound for the development of targeted therapies for brain tumours presented by Dr Ekaterina (Caty) Salimova, Monash Biomedical Imaging Glioblastoma multiforme (GBM) - brain cancer - is aggressive and difficult to treat as systemic therapies are hindered by the blood-brain barrier (BBB). Focused ultrasound (FUS) - a non-invasive technique that can induce targeted temporary disruption of the BBB – is a promising tool to improve GBM treatments. In this webinar, Dr Ekaterina Salimova will discuss the MRI-guided FUS modality at MBI and her research

Seminar · Biomedical Engineering

In vitro bioelectronic models of the gut-brain axis

Róisín Owens · Department of Chemical Engineering and Biotechnology, University of Cambridge

Tue, Oct 19, 2021 · 15:00 UTC

The human gut microbiome has emerged as a key player in the bidirectional communication of the gut-brain axis, affecting various aspects of homeostasis and pathophysiology. Until recently, the majority of studies that seek to explore the mechanisms underlying the microbiome-gut-brain axis cross-talk relied almost exclusively on animal models, and particularly gnotobiotic mice. Despite the great progress made with these models, various limitations, including ethical considerations and interspecies differences that limit the translatability of data to human systems, pushed researchers to seek fo

Seminar · Chronobiology

Why we all need a good night’s sleep

Amita Sehgal · University of Pennsylvania

Mon, Jul 12, 2021 · 15:00 UTC

We seek to determine how circadian rhythms and sleep are integrated with physiological processes to provide optimal fitness and health. Using initially a Drosophila model, and more recently also mammalian models, we have found that aspects of the blood brain barrier (BBB) are controlled by the circadian clock. BBB properties are also influenced by sleep:wake state in Drosophila, and, in fact, appear to be contribute to functions of sleep. This and other work, which implicates sleep in the regulation of metabolic processes, is providing insights into sleep function

Seminar · Brain Imaging

Magnetic Resonance Measures of Brain Blood Vessels, Metabolic Activity, and Pathology in Multiple Sclerosis

William Rooney · Oregon Health & Science University

Tue, Apr 6, 2021 · 10:00 UTC

The normally functioning blood-brain barrier (BBB) regulates the transfer of material between blood and brain. BBB dysfunction has long been recognized in multiple sclerosis (MS), and there is considerable interest in quantifying functional aspects of brain blood vessels and their role in disease progression. Parenchymal water content and its association with volume regulation is important for proper brain function, and is one of the key roles of the BBB. There is convincing evidence that the astrocyte is critical in establishing and maintaining a functional BBB and providing metabolic support

Seminar · Genetic Engineering

Gene Therapy for Neurodegeneration

Ronald G. Crystal · Cornell Research

Mon, Feb 1, 2021 · 15:00 UTC

One of the major challenges in developing therapeutics for the neurodegenerative disorders is the blood-brain barrier, limiting the availability of systemically administered therapies such as recombinant proteins or monoclonal antibodies from reaching the brain. Direct central nervous system (CNS) gene therapy using adeno-associated virus vectors expressing a therapeutic protein, monoclonal antibody or inhibiting RNA-coding sequences has two characteristics ideal for therapy of neurodegenerative disorders: circumventing the blood-brain barrier by directly expressing the therapy in the brain an

Seminar · Neuroscience

Glia neuron metabolic interactions in Drosophila

Stephanie Schirmeier · University of Munster

Mon, Sep 28, 2020 · 15:00 UTC

To function properly, the nervous system consumes vast amounts of energy, which is mostly provided by carbohydrate metabolism. Neurons are very sensitive to changes in the extracellular fluid surrounding them, which necessitated shielding of the nervous system from fluctuating solute concentrations in circulation. This is achieved by the blood-brain barrier (BBB) that prevents paracellular diffusion of solutes into the nervous system. This in turn also means that all nutrients that are needed e.g. for sufficient energy supply need to be transported over the BBB. We use Drosophila as a model sy

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