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https://www.sciencedirect.com/science/article/pii/S1359028602000323
The biocompatibility of the materials used to fabricate the drug delivery device and other BioMEMS is an important materials selection parameter. On these microreservoir devices, silicon is used as a substrate and structural material, gold is used for electrodes, and silicon dioxide, silicon nitride, and SU-8 ® are candidate dielectrics and provide mechanical integrity to the drug delivery device.Author: Rebecca S Shawgo, Amy C Richards Grayson, Yawen Li, Michael J Cima
https://www.sciencedirect.com/science/article/pii/S0169409X13001579
Perhaps the greatest impact of BioMEMS on drug delivery to-date has been in the field of transdermal delivery. Many drugs are either destroyed in the digestive tract, pass through it unabsorbed, or are absorbed but immediately metabolized by the liver before reaching their site of action.Author: Eric Nuxoll
https://www.researchgate.net/publication/284510409_BioMEMs_for_drug_delivery_applications
This chapter discusses the use of biological microelectromechanical systems (bioMEMs) in drug delivery applications. Microfabricated platforms and nanofabricated devices are used to dramatically improve the efficacy of therapeutics by increasing their bioavailability, biodistribution,...
https://ieeexplore.ieee.org/document/4747721/
Jan 13, 2009 · BioMEMS devices for drug delivery Abstract: Successful therapeutic outcomes following the administration of drugs, including small molecules and large biomolecules, require not only the selection of a proper drug but also its delivery to the proper site …Author: E. Nuxoll, R. Siegel
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4719786/
Dec 23, 2013 · BioMEMS is the emerging approach in the field of oral drug delivery systems. They have significant potential to overcome some of the barriers of oral drug delivery through fabrication of asymmetrical devices with precise control over size and shape.Author: Rishad R. Jivani, Gaurang J. Lakhtaria, Dhaval D. Patadiya, Laxman D. Patel, Nurrudin P. Jivani, Bha...
http://www.scme-nm.org/files/SCME_MNT_BioMEMS_Workshop.pdf
BioMEMS -Areas of Applications BioMEMS are being researched for possible applications in a variety of areas, but have already led to multiple applications in the following areas: Detection Analysis Diagnosis Therapeutics Drug delivery Cell culture Detection Analysis Diagnostics Therapeutics Drug Delivery Cell Culture New EmergingFile Size: 2MB
http://biomems.usc.edu/publications/2012/2012-TDE-micronano-drug-delivery.pdf
ments in implantable drug-delivery systems that are enabled by micro- and nano-fabrication technologies. Implantable drug-delivery devices Implantable drug infusion pumps have been in use for many years and for both preclinical and clinical applications. Typical implantable sys-tems possess three fundamental components:Location: microfluidics
https://spie.org/samples/PM153.pdf
familiarity with MEMS technology. For the purpose of teaching bioMEMS, the following subjects will be covered: (1) Microfabrication of silicon, glass, and polymer devices (2) Microfluidics and electrokinetics (3) Sensors, actuators, and drug-delivery systems (4) Micro-total-analysis systems (mTAS) and lab-on-a-chip devices (LOC)
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