Fluid Dynamics Optimization of Microfluidic Diffusion Systems for Assessment of Transdermal Drug Del...
Fluid Dynamics Optimization of Microfluidic Diffusion Systems for Assessment of Transdermal Drug Delivery: An Experimental and Simulation Study
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Basel: MDPI AG
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English
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Basel: MDPI AG
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Contents
Organ-on-a-chip technologies show exponential growth driven by the need to reduce the number of experimental animals and develop physiologically relevant human models for testing drugs. In vitro, microfluidic devices should be carefully designed and fabricated to provide reliable tools for modeling physiological or pathological conditions and asses...
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Fluid Dynamics Optimization of Microfluidic Diffusion Systems for Assessment of Transdermal Drug Delivery: An Experimental and Simulation Study
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TN_cdi_doaj_primary_oai_doaj_org_article_ea0980236beb400080383eb5034f6059
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https://devfeature-collection.sl.nsw.gov.au/record/TN_cdi_doaj_primary_oai_doaj_org_article_ea0980236beb400080383eb5034f6059
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ISSN
2218-0532,0036-8709
E-ISSN
2218-0532
DOI
10.3390/scipharm92020035