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Should students take smart drugs?
The Philosophers' Magazine, 2013Darian Meacham picks through the facts and argues that an investigation of human flourishing must play a role in the debate over the ethics of using 'smart drugs'.
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Smart Polymeric Nanocarriers for Drug Delivery
2014Smart polymeric nanocarriers are an important emerging area in drug delivery research. They are capable of releasing their payload in response to a specific stimulus, either present in the body or externally applied. We review the most important and extensively studied stimuli-responsive carriers, with special focus on their in vitro/in vivo ...
Talelli, M +3 more
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Science's STKE, 2007
A promising class of "smart" cancer drugs work by inhibiting specific tyrosine kinases linked to uncontrolled growth. Gefitinib and erlotinib, drugs that target the kinase activity of the epidermal growth factor receptor (EGFR), can be very effective when initially administered to lung cancer patients whose tumors contain activating ...
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A promising class of "smart" cancer drugs work by inhibiting specific tyrosine kinases linked to uncontrolled growth. Gefitinib and erlotinib, drugs that target the kinase activity of the epidermal growth factor receptor (EGFR), can be very effective when initially administered to lung cancer patients whose tumors contain activating ...
openaire +2 more sources
Smart materials: applications of nanotechnology in drug delivery and drug targeting
Proceedings International Conference on MEMS, NANO and Smart Systems, 2004This presentation will give an overview of the current use of nanoparticles as drug carriers and will discuss their future use in drug targeting and drug delivery of active molecules. Today's progress in cell biology and biotechnology enables scientists to synthesize highly active molecules to target specific intra-cellular receptors.
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2014
In previous chapters, we identified the nature of the pharmacokinetic profile for a series of controlled-release systems. The zero-order release represented a simple, idealized, gradual release response, which allowed for a predicted dosage to be delivered over a predictable time regime. As we shifted our discussion to encapsulated and targeted systems,
Eric P. Holowka, Sujata K. Bhatia
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In previous chapters, we identified the nature of the pharmacokinetic profile for a series of controlled-release systems. The zero-order release represented a simple, idealized, gradual release response, which allowed for a predicted dosage to be delivered over a predictable time regime. As we shifted our discussion to encapsulated and targeted systems,
Eric P. Holowka, Sujata K. Bhatia
openaire +1 more source
Smart Materials for Drug Delivery
2013Smart materials, which can change properties when an external stimulus is applied, can be used for the targeted drug delivery of an active molecule to a specific site in the correct dosage. Different materials such as liposomes, polymeric systems, nanomaterials and hydrogels can respond to different stimuli such as pH, temperature and light and these ...
Carmen Alvarez-Lorenzo, Angel Concheiro
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Smart Polymeric Micelles for Anticancer Hydrophobic Drugs
Cancers, 2023Luis Javier Cruz, Gaston Fuentes
exaly
Antibody–drug conjugates: Smart chemotherapy delivery across tumor histologies
Ca-A Cancer Journal for Clinicians, 2022Shanu Modi +2 more
exaly

