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Miniaturized fluidized bed for the efficient capture of patogens


Thesis topic details

General information

Organisation

The French Alternative Energies and Atomic Energy Commission (CEA) is a key player in research, development and innovation in four main areas :
• defence and security,
• nuclear energy (fission and fusion),
• technological research for industry,
• fundamental research in the physical sciences and life sciences.

Drawing on its widely acknowledged expertise, and thanks to its 16000 technicians, engineers, researchers and staff, the CEA actively participates in collaborative projects with a large number of academic and industrial partners.

The CEA is established in ten centers spread throughout France
  

Reference

SL-DRF-25-0407  

Direction

DRF

Thesis topic details

Category

Technological challenges

Thesis topics

Miniaturized fluidized bed for the efficient capture of patogens

Contract

Thèse

Job description

Sepsis is a generalized, inappropriate immune response to the presence of microorganisms in the blood. This condition is a major public health problem, accounting for over 11 million deaths worldwide every year. One of the reasons for this high mortality rate is the difficulty in rapidly identifying the pathogen involved, thus delaying the rapid administration of appropriate treatment.
This thesis project, in conjunction with the IHU PROMETHEUS, focuses on the development of miniaturized fluidized beds to concentrate blood biomarkers of sepsis, present in trace amounts in biological matrices. This method, based on the use of microfluidic technology, has the potential to replace lengthy blood culture methods, enabling rapid capture and subsequent identification of enriched targets. Thanks to their high flow rates, very large capture surface area and rapid exchange kinetics, the fluidized beds developed for nucleic acid capture will revolutionize the rapid diagnosis of sepsis.
We propose to develop three axes during this thesis project: 1) development and characterization of the miniaturized fluidized bed; 2) analysis of the system's performance with synthetic DNA; 3) validation of the developed system with model biological samples containing bacterial DNA. This DNA analysis system will pave the way for microfluidic analysis of other sepsis biomarkers.

University / doctoral school

Physique et Ingénierie: électrons, photons et sciences du vivant (EOBE)
Paris-Saclay

Thesis topic location

Site

Saclay

Requester

Position start date

01/10/2025

Person to be contacted by the applicant

PEREZ TORALLA Karla karla.pereztoralla@cea.fr
CEA
DRF/Joliot/DMTS/SPI/LERI
CEA Saclay
DRF/Joliot/DMTS/SPI/LERI
Bat 136
91191 Gif sur Yvette cedex

01 69 08 40 35

Tutor / Responsible thesis director

Malloggi Florent florent.malloggi@cea.fr
CEA
DSM/IRAMIS/NIMBE/LIONS
Florent Malloggi Dr
CEA Saclay
UMR 3685 CEA/CNRS
DRF/IRAMIS/NIMBE-LIONS
Bât.125
91191 Gif-sur Yvette, France
Tel: +33 16908 6328


+3316908 6328

En savoir plus


http://joliot.cea.fr/drf/joliot/Pages/Entites_de_recherche/medicaments_technologies_sante/SPI/leri.aspx
https://iramis.cea.fr/nimbe/lions/