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Neural Cells

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neural cells

Discover seminars, jobs, and research tagged with neural cells across World Wide.
5 curated items3 Seminars2 ePosters
Updated about 2 years ago
5 items · neural cells
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SeminarNeuroscience

Metabolic Remodelling in the Developing Forebrain in Health and Disease

Gaia Novarino
Institute of Science and Technology Austria
Oct 30, 2023

Little is known about the critical metabolic changes that neural cells have to undergo during development and how temporary shifts in this program can influence brain circuitries and behavior. Motivated by the identification of autism-associated mutations in SLC7A5, a transporter for metabolically essential large neutral amino acids (LNAAs), we utilized metabolomic profiling to investigate the metabolic states of the cerebral cortex across various developmental stages. Our findings reveal significant metabolic restructuring occurring in the forebrain throughout development, with specific groups of metabolites exhibiting stage-specific changes. Through the manipulation of Slc7a5 expression in neural cells, we discovered an interconnected relationship between the metabolism of LNAAs and lipids within the cortex. Neuronal deletion of Slc7a5 influences the postnatal metabolic state, resulting in a shift in lipid metabolism and a cell-type-specific modification in neuronal activity patterns. This ultimately gives rise to enduring circuit dysfunction.

SeminarNeuroscienceRecording

Gene-free landscape models for development

Meritxell Sáez
Briscoe lab, Francis Crick Institute; IQS Barcelona
Jun 28, 2022

Fate decisions in developing tissues involve cells transitioning between a set of discrete cell states. Geometric models, often referred to as Waddington landscapes, are an appealing way to describe differentiation dynamics and developmental decisions. We consider the differentiation of neural and mesodermal cells from pluripotent mouse embryonic stem cells exposed to different combinations and durations of signalling factors. We developed a principled statistical approach using flow cytometry data to quantify differentiating cell states. Then, using a framework based on Catastrophe Theory and approximate Bayesian computation, we constructed the corresponding dynamical landscape. The result was a quantitative model that accurately predicted the proportions of neural and mesodermal cells differentiating in response to specific signalling regimes. Taken together, the approach we describe is broadly applicable for the quantitative analysis of differentiation dynamics and for determining the logic of developmental cell fate decisions.

SeminarNeuroscience

Investigating genetic risk for psychiatric diseases in human neural cells

Nan Yang
Icahn School of Medicine at Mount Sinai
Dec 7, 2021
ePoster

NR5A2 coordinately regulates hypoxia response and metabolism in neural cells: Implications for nervous system-related diseases

Dimitrios Gkikas, Milioti Panagiota, Markidi Eliana, Nomikou Angeliki, Stergiopoulos Athanasios, Rozani Ismini, Kaltezioti Valeria, Vatselas Giannis, Valakos Dimitrios, Politis Panagiotis K.

FENS Forum 2024

ePoster

Sturge-Weber syndrome-associated Gαq protein modulates metastatic suppressor KAI1 (CD82) expression in neural cells

Rakesh Mani, Anna Maria Ernst, Mirjana Malnar, Christine Deisl, Jan Pruszak

FENS Forum 2024