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some bacteria under stress conditions. Specific features of spores include a high degree of dehydration
Alteration of protein modification in nerve cells may lead to developmental defects and therefore to intellectual disabilities.
siphophages. Furthermore, some of these structural features are shared with other phages (Myoviridae) or even
The ARCHIZ project seeks to provide a synthetic vision of the scientific archives on Émile Zola's work (texts, images, manuscripts…). Its practical objective is to create a web site which, in one single location, provides all these archives and makes them accessible for the general public, teachers and professors, as well as the research community. It aims to create both a tool of documentation and a reference site for research.
Combinatorics: permutations and symmetric functions
Nanoswimmers in microfluidics studies the design, wireless propulsions, swimming performance characterizations, contact/non-contact manipulation strategies to demonstrate their feasibility toward lab-on-a-chip biologic applications.
Organic micro-resonators as label-free chemio- and bio-sensors in micro-fluidic environment – MIRODE
The aim of this project is focused on the design, fabrication and validation of e new type of optofluidic label-free sensor based on organic materials, and adapted to chemical and biological applications, in particular for real-time investigations of the dynamics of specific proteins on one hand, and for the detection of heavy ions in water on the other hand
In a context of increasingly compelling environmental and sustainability issues, this project is seeking to develop cost-effective alternatives to the use of noble metals in catalytic processes.
Our project aims at investigating the impact of the mosquito aquatic environment on its vectorial capacity and particularly the role of bacterial communities present in larval habitats and mosquito midguts.
Comparative analysis of signal transduction factors controlling cell cycle regulation in the alpha-proteobacteria – CASTACC
In the bacterial model species Caulobacter crescentus and Sinorhizobium meliloti the cell cycle, that is the coordination of DNA replication and asymmetric cell division, is controlled by a complex circuit composed by many regulators. In the project CASTACC, the two regulatory networks of these two species are compared using a multidisciplinary molecular approach.