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https://www.sciencedirect.com/science/article/pii/S0169409X03001935
Integrated microsystems for controlled drug delivery 1. Introduction. Microfabricated systems have revolutionized biology and medicine... 2. Challenges in drug delivery. Modern therapeutic techniques are based on rational design... 3. Photolithography and microfabrication. Microfluidic devices are ...Author: S. Zafar Razzacki, Prasanna K. Thwar, Ming Yang, Victor M. Ugaz, Mark A. Burns
https://www.sciencedirect.com/science/article/abs/pii/S0169409X03001935
Integrated microsystems that incorporate extremely fast sensory and actuation capabilities can fulfill this need for efficient drug delivery tools. Photolithographic technologies borrowed from the semiconductor industry enable mass production of such microsystems.Author: S. Zafar Razzacki, Prasanna K. Thwar, Ming Yang, Victor M. Ugaz, Mark A. Burns
https://www.researchgate.net/publication/8905053_Integrated_microsystems_for_controlled_drug_delivery
Efficient drug delivery and administration are needed to realize the full potential of molecular therapeutics. Integrated microsystems that incorporate extremely fast sensory and actuation ...
https://www.deepdyve.com/lp/elsevier/integrated-microsystems-for-controlled-drug-delivery-Hu1k8uQ73X
Feb 10, 2004 · Integrated microsystems for controlled drug delivery Integrated microsystems that incorporate extremely fast sensory and actuation capabilities can fulfill this need for efficient drug delivery …
https://www.sciencedirect.com/science/article/pii/S0169409X12000270
Inner ear drug delivery with implantable microsystems presents significant challenges and unique requirements, including accurate dosing at low flow rates, low voltage operation, a fluid flow path with controlled characteristics, and the ability to interface to infusion tubing.Author: Erin E. Leary Pararas, David A. Borkholder, Jeffrey T. Borenstein
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3576846/
The implementation of micro- and nano-technologies for implantable drug-delivery systems offer new possibilities in achieving control of in vivo drug release. Reservoir-based devices The simplest miniaturized implantable drug-delivery systems feature a reservoir with a membrane that controls the onset or rate of drug administration.Author: Ellis Meng, Tuan Hoang
https://www.elsevier.com/books/microfluidics-for-pharmaceutical-applications/santos/978-0-12-812659-2
Microfluidics for Pharmaceutical Applications: From Nano/Micro Systems Fabrication to Controlled Drug Delivery is a concept-orientated reference that features case studies on utilizing microfluidics for drug delivery applications. It is a valuable learning reference on microfluidics for drug delivery applications and assists practitioners developing novel drug delivery platforms using ...
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4142099/
Sep 28, 2014 · The controlled drug delivery technology has progressed over the last six decades. It began in 1952 with the introduction of the first sustained release formulation. The 1st generation (1950-1980) of drug delivery was focused on developing oral and transdermal sustained release systems and establishing the controlled drug release mechanisms.Author: Kinam Park
http://www.bioline.org.br/pdf?pr08028
Multiparticulate Drug Delivery Systems for Controlled Release NS Dey*, S Majumdar and MEB Rao Department of Pharmaceutics, Roland Institute of Pharmaceutical Sciences, Khodasinghi, Berhampur, Orissa760010, India Abstract Pharmaceutical invention and research are increasingly focusing on delivery systems which enhance
http://www.thepharmajournal.com/vol1Issue10/Issue_dec_2012/3.1.pdf
INTRODUCTION: Controlled drug delivery systems can include the maintenance of drug levels within a desired range, the need for fewer administrations, optimal use of the drug in question, and increased patient compliance. higher cost of controlled-release systems compared with …
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