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Topic: Gut–brain axis

Seminar
9 seminars
Seminar · Immunology

From the guts to the brain through adaptive immunity in the prevention of Alzheimer’ disease

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)

Tue, Sep 26, 2023 · 13:00 UTC

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.

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 · Neuroscience

Microbiome and behaviour: Exploring underlying mechanisms

Sarah-Jane Leigh · APC Microbiome Ireland

Sat, Jul 10, 2021 · 19:00 UTC

Environmental insults alter brain function and behaviour inboth rodents and people. One putative underlying mechanism that has receivedsubstantial attention recently is the gut microbiota, the ecosystem ofsymbiotic microorganisms that populate the intestinal tract, which is known toplay a role in brain health and function via the gut-brain axis. Two keyenvironmental insults known to affect both brain function and behaviour, andthe gut microbiome, are poor diet and psychological stress. While there isstrong evidence for interactions between the microbiome and host physiology inthe context of ch

Seminar · Microbiology

Interactions between the microbiome and nervous system during early development

Elaine Hsiao · UCLA Department of Integrative Biology and Physiology

Thu, Dec 10, 2020 · 14:00 UTC

The gut microbiota is emerging as an important modulator of brain function and behavior, as several recent discoveries reveal substantial effects of the microbiome on neurophysiology, neuroimmunity and animal behavior. Despite these findings supporting a “microbiome-gut-brain axis”, the molecular and cellular mechanisms that underlie interactions between the gut microbiota and brain remain poorly understood. To uncover these, the Hsiao laboratory is mining the human microbiota for microbial modulators of host neuroactive molecules, investigating the impact of microbiota-immune system interacti

Seminar · Neuroscience

Sex, guts and babies: the plasticity of the adult intestine and its neurons

Irene Miguel-Aliaga · Imperial College London

Mon, Sep 14, 2020 · 15:00 UTC

Internal organs constantly exchange signals, and can respond with striking anatomical and functional transformations, even in fully developed organisms. We are exploring the mechanisms that drive and sustain such plasticity using the intestine and its neurons as experimental systems. I will present some of our recent work, which has characterised the enteric nervous system of Drosophila, and has explored its physiological plasticity as well as that of the intestine itself. This work has uncovered unexpected sexual dimorphisms, intestinal contributions to reproductive success and metabolic cros

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