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Gerd Meyer zu Hörste· University Clinic Münster, Germany
Wed, Sep 11, 2024 · 12:15
Adam Handel· Oxford University
Tue, Mar 26, 2024 · 18:00
Immune-mediated mechanisms are increasingly recognised as a cause of epilepsy even in the absence of an immune response against a specifical neuronal antigen. In some cases, these autoimmune processes are clearly pathogenic, for example acute seizures in autoimmune encephalitis, whereas in others this is less clear, for example autoimmune-associated epilepsy. Recent research has provided novel insights into the clinical, paraclinical and immunopathogenetic mechanisms in these conditions. I will provide an overview of clinical and paraclinical features of immune-associated seizures. Furthermore, I will describe specific immunopathogenic examples implicating lymphoid follicular autoimmunisation and intrathecal B cells in these conditions. These insights into immunopathogenesis may help to explain the role of current and immunotherapies in these conditions.
Angela Giangrande· IGBMC, CNRS UMR 7104 - Inserm U 1258, Illkirch, France
Tue, Feb 20, 2024 · 15:00
We are interested in the biology of macrophages, which represent the first line of defense against pathogens. In Drosophila, the embryonic hemocytes arise from the mesoderm whereas glial cells arise from multipotent precursors in the neurogenic region. These cell types represent, respectively, the macrophages located outside and within the nervous system (similar to vertebrate microglia). Thus, despite their different origin, hemocytes and glia display common functions. In addition, both cell types express the Glide/Gcm transcription factor, which plays an evolutionarily conserved role as an anti-inflammatory factor. Moreover, embryonic hemocytes play an evolutionarily conserved and fundamental role in development. The ability to migrate and to contact different tissues/organs most likely allow macrophages to function as signaling hubs. The function of macrophages beyond the recognition of the non-self calls for revisiting the biology of these heterogeneous and plastic cells in physiological and pathological conditions across evolution.
Nicoletta Caronni· SR-Tiget, Milan
Mon, Dec 11, 2023 · 12:00
Eleonora Aronica· Amsterdam UMC
Tue, Oct 24, 2023 · 18:00
Epileptogenesis is a gradual and dynamic process leading to difficult-to-treat seizures. Several cellular, molecular, and pathophysiologic mechanisms, including the activation of inflammatory processes. The use of human brain tissue represents a crucial strategy to advance our understanding of the underlying neuropathology and the molecular and cellular basis of epilepsy and related cognitive and behavioral comorbidities, The mounting evidence obtained during the past decade has emphasized the critical role of inflammation in the pathophysiological processes implicated in a large spectrum of genetic and acquired forms of focal epilepsies. Dissecting the cellular and molecular mediators of the pathological immune responses and their convergent and divergent mechanisms, is a major requisite for delineating their role in the establishment of epileptogenic networks. The role of small regulatory molecules involved in the regulation of specific pro- and anti-inflammatory pathways and the crosstalk between neuroinflammation and oxidative stress will be addressed. The observations supporting the activation of both innate and adaptive immune responses in human focal epilepsy will be discussed and elaborated, highlighting specific inflammatory pathways as potential targets for antiepileptic, disease-modifying therapeutic strategies.
Kyrargyri Vassiliki· Department of Immunology, Laboratory of Molecular Genetics, Hellenic Pasteur Institute, Athens, Greece
Tue, Oct 24, 2023 · 13:00
Microglia are the resident CNS macrophages of the brain parenchyma. They have many and opposing roles in health and disease, ranging from inflammatory to anti-inflammatory and protective functions, depending on the developmental stage and the disease context. In Multiple Sclerosis, microglia are involved to important hallmarks of the disease, such as inflammation, demyelination, axonal damage and remyelination, however the exact mechanisms controlling their transformation towards a protective or devastating phenotype during the disease progression remains largely unknown until now. We wish to understand how brain microglia respond to demyelinating insults and how their behaviour changes in recovery. To do so we developed a novel histopathological analysis approach in 3D and a cell-based analysis tool that when applied in the cuprizone model of demyelination revealed region- and disease- dependent changes in microglial dynamics in the brain grey matter during demyelination and remyelination. We now use similar approaches with the aim to unravel sensitive changes in microglial dynamics during neuroinflammation in the EAE model. Furthermore, we employ constitutive knockout and tamoxifen-inducible gene-targeting approaches, immunological techniques, genetics and bioinformatics and currently seek to clarify the specific role of the brain resident microglial NF-κB molecular pathway versus other tissue macrophages in EAE.
Pasinetti Giulio Maria· Mount Sinai Health System, Department of Neurology, New York, NY, USA / Basic and Biomedical Research and Training Program, Geriatric Research and Clinical Center (GRECC)
Mon, Sep 25, 2023 · 12:00
Dr. Pasinetti is the Saunders Family Chair and Professor of Neurology at Icahn School of medicine at Mount Sinai, New York. His studies allowed him to develop novel therapeutic approaches through investigation of preventable risk factors including mood disorders in the promotion of resilience against neurodegenerative disorder. In his presentation Dr. Pasinetti will discuss novel concepts about the gut-brain axis in mechanisms associated to peripheral adaptive immunity as therapeutic targets to mitigate the onset and the progression of Alzheimer’s disease and other form of dementia.
Maria Cecilia Campos Canesso· Rockfeller University
Wed, May 31, 2023 · 12:00
Caroline Williams-Gray· Department of Clinical Neurosciences, University of Cambridge
Mon, May 29, 2023 · 16:00
Caroline Williams-Gray is a Principal Research Associate in the Department of Clinical Neurosciences, University of Cambridge, and an honorary consultant neurologist specializing in Parkinson’s disease and movement disorders. She leads a translational research group investigating the clinical and biological heterogeneity of PD, with the ultimate goal of developing more targeted therapies for different Parkinson’s subtypes. Her recent work has focused on the theory that the immune system plays a significant role in mediating the heterogeneity of PD and its progression. Her lab is investigating this using blood and CSF -based immune markers, PET neuroimaging and neuropathology in stratified PD cohorts; and she is leading the first randomized controlled trial repurposing a peripheral immunosuppressive drug (azathioprine) to slow the progression of PD.
Ryohichi Sugimura· University of Hong Kong
Wed, May 24, 2023 · 10:00
Margaret L. Axelrod· Vanderbilt University Medical Center
Wed, Mar 22, 2023 · 12:30
Nataliya Prokhnevska· MSKCC
Wed, Mar 22, 2023 · 12:00
Xin Li· UT Southwestern Medical Center
Wed, Feb 22, 2023 · 11:00
Rejane Rua· Aix Marseille Université, Inserm
Mon, Jan 16, 2023 · 12:00
https://doi.org/10.1016/j.immuni.2022.10.005
David Posner and Colin YC Lee· Wellcome Sanger Institute
Mon, Jan 16, 2023 · 12:00
https://www.cnsbordercellatlas.org/
Kenichiro Motomura & Nuriban Valero-Pacheco· Wayne State University and Rutgers University
Wed, Dec 7, 2022 · 17:00
Talk(1): Fetal and maternal NLRP3 signaling is required for preterm labor and birth. (DOI: 10.1172/jci.insight.158238) Talk(2): Maternal IL-33 critically regulates tissue remodeling and type 2 immune responses in the uterus during early pregnancy in mice (DOI: 10.1073/pnas.2123267119)
Anne-Kathrin Proebste· Biomedical Department, University Hospital Basel, Switzerland
Wed, Sep 15, 2021 · 12:00
Shenshen Wang· UC Los Angeles
Thu, Aug 12, 2021 · 11:30
Lisa Sevenich· Georg-Speyer-Haus, Institute for Tumor Biology and Experimental Therapy, Frankfurt
Wed, Jun 30, 2021 · 17:00
Michal Schwartz· Weizmann Institute of Science, Israel
Wed, Jun 9, 2021 · 16:00