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https://www.sciencedirect.com/topics/materials-science/nanofabrication-process
The main goal of applying nanotechnology in transdermal devices is to conquer the skin barrier by means of (1) minimal invasiveness or noninvasiveness and reducing pain injection, (2) improved drug pharmacokinetics, and (3) targeted drug delivery. Micro- and nanofabrication methods have gained a lot of attention for making microneedles, one of ...
http://nanomelbourne.com/case-studies/drug-delivery/
Nano-engineered intelligent delivery systems. Multidrug resistance is a growing problem as methods of treatment that have been relied upon in the past are no longer effective. Together with MCN, researchers from Monash University are looking to develop an intelligent drug delivery system that combats multidrug resistance. Read more...
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3666043/
Nano- and microfabrication solutions to drug delivery challenges. There have been numerous papers that have reported biochemical approaches to mucosal adhesion using agents such as lectins and chitosan. 14,15 These chemicals have shown to be effective, but they are limited by batch-to-batch repeatability and are expensive to incorporate into a ...Author: Kimberly R. Kam, Tejal A. Desai
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2676643/
Micro- and nanofabrication techniques have revolutionized the pharmaceutical and medical fields as they offer the possibility for highly reproducible mass-fabrication of systems with complex geometries and functionalities, including novel drug delivery systems and bionsensors.Author: Tania Betancourt, Lisa Brannon-Peppas
https://www.engineering.cornell.edu/drug-delivery-and-nanomedicine
In addition, the Putnam group designs drug delivery systems to deliver more complex therapeutics, like bacteriophage, to help modulate the gut microbiome and to treat infections from antibiotic-resistant strains. Prof Ankur Singh’s research in drug delivery focus on developing nanoengineered technologies to modulate immune cells.
https://www.mdpi.com/journal/pharmaceutics/special_issues/fabrication
In particular, the increasingly close relationship between pharmaceutical scientists and engineers has led to an exciting range of micro- and nanofabrication techniques being used for drug delivery purposes.
https://www.sciencedirect.com/science/article/pii/S0169409X11002936
Microfabrication technologies for oral drug delivery. ... Microfabrication techniques are being explored for drug delivery applications due to their ability to combine several features such as precise shape and size into a single drug delivery vehicle. ... Micro/nanofabrication techniques have enabled development of miniaturized diagnostic ...Author: Shilpa Sant, Shilpa Sant, Shilpa Sant, Sarah L. Tao, Omar Z. Fisher, Qiaobing Xu, Nicholas A. Peppas...
https://www.mdpi.com/1996-1944/9/8/646/htm
Drug delivery systems have to face several hurdles. A first key challenge is the control of the released dose over time, which plays an essential role in medications that require a long-term therapy and/or a specific frequency of administration, as for instance insulin treatment for diabetes [].Additionally, resistance to a drug can be manifested by some individuals due to for example genetic ...Author: Brendan Koch, Ilaria Rubino, Fu-Shi Quan, Bongyoung Yoo, Hyo-Jick Choi
http://www.chalcogen.ro/Shrivastava.pdf
medical applications with focus on its use for drug delivery and tissue engineering. Specifically, we discuss bottom-up and topdown nanofabrication technologies and their use in various drug delivery and tissue engineering applications. 2. Nanotechnology for drug delivery Controlled drug-delivery strategies have made a dramatic impact in medicine.
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