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“minimal” and modular gene cascade to control MeCP2 re-expression and avoid any dosage drift. The thesis work will consist of designing and testing vectors containing gene cascades first during a first
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mangrove systems may be controlled by different mechanisms than in terrestrial systems. Therefore, we will analyze the molecular composition of soil organic matter associated with minerals to determine its
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mosquitoes and the pathogens they transmit, and on the basis of these results, designs new strategies to control disease transmission. The PhD student (M/F) will benefit from interactions with students and
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adult brains. These cells reside in tightly controlled microenvironments called “niches.” Objectives of the PhD project: The gestation and maternity periods in mammals open a window of important brain
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team “Spatial Control of Genome Integrity and Oncogenesis”, under the supervision of Dr. J. Basbous (DR2, CNRS). IGH is located on the Arnaud de Villeneuve campus and is part of the Objectif Employeur
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of atomristors. This project aims to develop methods for the controlled creation of defects smaller than 10 nm in order to manipulate the density of states of 2D materials. Advances in the fundamental
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for clarithromycin-induced resistance, which is the central pillar of multidrug therapy to control M. abscessus infections. Using wild-type (WT) and clarithromycin-resistant planktonic strains, we demonstrated
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on the use of zeolites as sacrificial templates to obtain structured carbon nitrides. These materials are expected to combine very high surface areas, controlled microporosity, and a high density of defects
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. These phenomena are based on the description of a complex flow formed by particles suspended in water, whose solid concentration is controlled both by soil erosion and by particle sedimentation processes
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of neural circuits essential for adaptation. The successful candidate will explore the dynamics of neural populations in key brain regions for decision-making and behavioral control: the frontal cortex and