Université Lyon 1
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Accueil  >>  Master  >>  Nanosciences et nanotechnologies  >>  M1 Nanosciences et nanotechnologies  >>  Tissue and cell engineering
  • Domaine : Masters du domaine SCIENCES ET TECHNOLOGIES
  • Diplôme : Master
  • Mention : Nanosciences et nanotechnologies
  • Parcours : M1 Nanosciences et nanotechnologies
  • Unité d'enseignement : Tissue and cell engineering
Nombre de crédits de l'UE : 3
Code APOGEE : PHY2413M
    Responsabilité de l'UE :
RIEU JEAN-PAUL
 jean-paul.rieuuniv-lyon1.fr
04.72.43.11.42
    Type d'enseignement
Nb heures *
Cours Magistraux (CM)
12 h
Travaux Dirigés (TD)
18 h
Travaux Pratiques (TP)
0 h
Durée de projet en autonomie (PRJ)
0 h
Durée du stage
0 h
Effectif Cours magistraux (CM)
210 étudiants
Effectif Travaux dirigés (TD)
35 étudiants
Effectif Travaux pratiques (TP)
18 étudiants

* Ces horaires sont donnés à titre indicatif.

    Pré-requis :
Biomolecules, Cells, and Biomimetic Systems TU for NSE students or an equivalent introduction to biology for non biologists.
    Compétences attestées (transversales, spécifiques) :

*know the potential, advantages and principles of microfabrication of diagnostic and culture-on-chip devices

*know the main biomaterials used in tissue engineering (scaffolds, gels, implants)

* know the concepts of image analysis applied to the detection of biological objects from optical videomicroscopy images.
    Programme de l'UE / Thématiques abordées :

Cell and Tissue Engineering are rapidly growing fields using cells, biomaterials, biochemical factors and physical or mechanical stimulations to induce the growth of functional tissues for medical applications in developmental biology, cancer, regenerative medicine, medical repair and replacement, personal medicine. In this course, you will learn about how cell adhesion and migration are controlled by the cellular microenvironment. You will be trained in biomaterial, scaffold and implants as well as in microsystems and lab-on-a-chip and assessments of cellular and tissue responses. You will work on case studies on micro- and nanotechnologies used for probing, stimulating or analyzing single cell and tissues, on mecanobiology and biomaterial studies and on the image analysis of cell assemblies.

The three parts of the TU are:

Part A) Cell and tissue Mechanobiology and Microsystems  - introduction to the nanometer-scale sensing ability of cells – cell adhesion, cell migration, cell biomechanics -microsystems for cell culture, diagnosis, drug screening…

Part B) Biomaterials, hydrogels, implants, scaffolds

Part C) Basics of Image Analysis (theoretical courses with examples on a free software ImageJ - numerical project in tandem).

    Liste des autres Parcours / Spécialité / Filière / Option utilisant cette UE :
Date de la dernière mise-à-jour : 26/01/2024
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