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https://www.nibib.nih.gov/science-education/science-topics/drug-delivery-systems-getting-drugs-their-targets-controlled-manner
Drug delivery systems are engineered technologies for the targeted delivery and/or controlled release of therapeutic agents. Drugs have long been used to improve health and extend lives. The practice of drug delivery has changed dramatically in the past few decades and even greater changes are …
https://web.northeastern.edu/bajpayeelab/
Drug Delivery to Connective Tissues. Located at Northeastern University’s Interdisciplinary Science and Engineering Complex (ISEC), the Bajpayee lab works on drug delivery to connective and charged tissues such as cartilage, meniscus, intervertebral disc and mucosal membranes.Connective tissues are pervasive throughout the body and their degeneration affects 10% of the human population.
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2633627/
With the development of nanoparticles, barriers to drug delivery may be overcome at the organ, tissue, cellular, and subcellular levels. Nano drug delivery may occur through gold nanospheres and rods, nanowires, nanotriangles, nanostars, nanocubes, and nanorice. The size of these nano configurations varies from 1 to 100 nm.Author: Henry F. Edelhauser, Jeffrey H. Boatright, John M. Nickerson
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2667119/
Feb 27, 2009 · Delivery technologies that improve drug pharmacokinetics and facilitate localized delivery to target tissues strongly improve the efficacy of various therapies [1, 2]. In particular, an increasing number of nanoparticle-based drug delivery systems have been approved for human use or are currently being evaluated in clinical trials [3, 4].Author: Samuel K. Lai, Ying Ying Wang, Justin S Hanes
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2935937/
Sep 08, 2010 · The application of nanotechnology in medicine, referred to as nanomedicine, is offering numerous exciting possibilities in healthcare. Herein, we discuss two important aspects of nanomedicine—drug delivery and tissue engineering—highlighting the advances we have recently experienced, the challenges we are currently facing, and what we are likely to witness in the near future.Author: Jinjun Shi, Alexander R. Votruba, Omid C. Farokhzad, Robert Langer
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2895432/
May 01, 2010 · The most commonly applicable influx transporters for ocular drug delivery are amino acid and peptide transporters. These proteins may have a putative role in ocular drug delivery along with their physiological role of transporting various amino acids and nutrients into ocular tissues.Author: Ripal Gaudana, Hari Krishna Ananthula, Ashwin Parenky, Ashim K. Mitra
https://repository.upenn.edu/cgi/viewcontent.cgi?article=1129&context=vet_papers
Drug Delivery to Posterior Intraocular Tissues: Third Annual ARVO/Pfizer Ophthalmics Research Institute Conference Henry F. Edelhauser1, Jeffrey H. Boatright1, John M. Nickerson1, and Third ARVO/Pfizer Research Institute Working Group2 1From the Department of …Author: Henry F. Edelhauser, Jeffrey H. Boatright, John M. Nickerson
https://www.mattek.com/application/drug-delivery-2/
Drug Delivery. Utilize EpiAirway tissues to assess API permeation and flux, irritation potential and efficacy of nasal drug formulations. METHODS
https://www.engineering.cornell.edu/drug-delivery-and-nanomedicine
The faculty and students in Cornell biomedical engineering apply engineering principles to design systems that effectively control the spatial and temporal delivery of medicines, to investigate the effects of medicines on cells and tissues, and to evaluate their preclinical and clinical efficacy.
https://www.sciencedirect.com/topics/nursing-and-health-professions/drug-delivery-system
Drug Delivery System. A drug delivery system (DDS) is defined as a formulation or a device that enables the introduction of a therapeutic substance into the body and improves its efficacy and safety by controlling the rate, time, and place of release of drugs in the body.
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