2014Unpublished venueRequires access

P:77: Cross-flow Membrane Emulsification for Tunable-sized Monodisperse Microparticles

Sanchita Sharmin Chowdhury, Abdulrahman Baki, Omar Qutachi, Felicity R. A. J. Rose, Kevin M. Shakesheff, Cheryl V. Rahman

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Abstract

efficiency of the scaffold in terms of repeatable initial cell numbers per scaffold and eventually to have better control over the interpretation of experimental data, monodispersity in the microparticle size distribution is crucial. Cross-flow membrane (CFM) emulsification is a robust technique that has been used to fabricate monodisperse microparticles but mostly of mean size 36µm or below 4 . This study therefore aimed at preparing monodisperse microparticles of larger sizes that can be used as scaffold building blocks in TE applications using CFM emulsification technique. METHODS:

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What this paper is about

efficiency of the scaffold in terms of repeatable initial cell numbers per scaffold and eventually to have better control over the interpretation of experimental data, monodispersity in the microparticle size distribution is crucial. Cross-flow membrane (CFM) emulsification is a robust technique that has been used to fabricate monodisperse microparticles but mostly of mean size 36µm or below 4 . This study therefore aimed at preparing monodisperse microparticles of larger sizes that can be used as scaffold building blocks in TE applications using CFM emulsification technique. METHODS:

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Available abstract

efficiency of the scaffold in terms of repeatable initial cell numbers per scaffold and eventually to have better control over the interpretation of experimental data, monodispersity in the microparticle size distribution is crucial. Cross-flow membrane (CFM) emulsification is a robust technique that has been used to fabricate monodisperse microparticles but mostly of mean size 36µm or below 4 . This study therefore aimed at preparing monodisperse microparticles of larger sizes that can be used as scaffold building blocks in TE applications using CFM emulsification technique. METHODS:

Key concepts: Dispersity, Membrane emulsification, Microparticle, Materials science, Scaffold, Membrane, Nanotechnology, Chemical engineering

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