Development of PVDF micro and nanostructures for cell culture studies

Tissue engineering aims at repairing damaged tissues and recovering the lost or degraded biological functions with artificial scaffolds. In order to meet the requirement for more complex functionality such as peripheral nerve reconstruction, new types of scaffold materials are needed. In this work, we developed several micro- and nanofabrication techniques to pattern polyvinylidene fluoride (PVDF), a highly non-reactive, piezoelectric, thermoplastic fluoropolymer, which can serve as new constituents for advanced tissue engineering. We first studied the feasibility of PVDF patterning using conventional photolithography, soft lithography and microcontact printing. The fabricated patterns were systematically characterized by surface analysis techniques (FTIR, XRD) and used for cell culture studies. Then, we developed a study on electrospinning of PVDF nanofibers. Our results showed that the fabricated PVDF nanofibers were compatible with cell-based assays. Finally, we doped electrospun PVDF nanofibers with magnetic nanoparticles, which should make them excitable with a remote magnetic field

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Source https://theses.hal.science/tel-00790208
Author Lhoste, Kévin
Maintainer CCSD
Last Updated May 14, 2026, 09:28 (UTC)
Created May 14, 2026, 09:28 (UTC)
Identifier NNT: 2012PA05T053
Language en
Rights https://about.hal.science/hal-authorisation-v1/
contributor École normale supérieure - Cachan (ENS Cachan)
creator Lhoste, Kévin
date 2012-11-30T00:00:00
harvest_object_id 6f0a386f-c320-4339-b2af-dad114c821f8
harvest_source_id 3374d638-d20b-4672-ba96-a23232d55657
harvest_source_title test moissonnage SELUNE
metadata_modified 2026-03-31T00:00:00
set_spec type:THESE