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https://www.researchgate.net/publication/6556854_Particle_Engineering_for_Pulmonary_Drug_Delivery
The present review is intended to provide a critical account of the current goals and technologies of particle engineering for the development of pulmonary drug delivery systems.
https://www.hovione.com/products-and-services/contract-manufacturing-services/particle-engineering/technologies
We specialize in particle engineering technologies to address oral bioavailability, lung delivery, modified release and taste masking. In each technology we can support you from proof of …
http://www.pharmtech.com/need-particle-engineering-increases
Sep 17, 2014 · Particle size is crucial for pulmonary delivery because particles that are too large (> 5 micron) will not go deep into the lungs and those that are too small (< 1 micron) may be exhaled (1). Micronization using jet mills is the most common method of particle size reduction for drug particle engineering, for both oral solid-dosage and inhaled ...
https://www.hovione.com/products-and-services/contract-manufacturing-services/particle-engineering/drug-delivery-platforms
Employing several innovative platform technologies particles can now be engineered to provide an: improvement in oral bioavailability, patient acceptability or to provide for modified release or enhanced delivery. Hovione can also offer customized Particle Engineering services to …
https://link.springer.com/article/10.1007/s11095-006-9174-3
Jan 24, 2007 · To cope with this formulation demand, a wide variety of novel particle technologies have emerged over the past decade. The present review is intended to provide a critical account of the current goals and technologies of particle engineering for the development of pulmonary drug delivery systems.Author: Albert H. L. Chow, Henry H. Y. Tong, Pratibhash Chattopadhyay, Boris Y. Shekunov
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2527668/
A conceptual understanding of biological responses to nanomaterials is needed to develop and apply safe nanomaterials in drug delivery in the future. Furthermore a close collaboration between those working in drug delivery and particle toxicology is necessary for the exchange of concepts, methods and know-how to move this issue ahead.Author: Wim H De Jong, Paul Ja Borm
https://www.sciencedirect.com/science/article/pii/S0009250917307509
Here we present the microfluidic approach to engineer polymeric Janus particles using solvent dissolution for potential drug delivery applications. Unlike the polymerization based particle generation techniques, this method does not suffer from potential toxicity concerns for drug delivery.Author: Pavithra Sundararajan, Jianbin Wang, Lawrence A. Rosen, Adam Procopio, Kenneth Rosenberg
http://www.crystecpharma.com/
CrystecPharma is a crystal and particle engineering company applying proprietary modified supercritical fluid (SCF) technologies to improve the performance of medicines. Our technology enables drug molecules to be crystallised in new forms and novel particles to be manufactured in ways that greatly enhance their therapeutic performance.
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4009069/
Aug 16, 2007 · These results offer yet another tool to further expand the possibilities for drug delivery particle design. There is obviously a great deal of work to be done in this field and contributions from materials, engineering, biology, immunology, anatomy, pharmaceutics and medicine will all be required.Author: Julie A. Champion, Yogesh K. Katare, Samir Mitragotri
https://www.researchgate.net/publication/226859524_Particle_Engineering_Technologies_for_Pulmonary_Drug_Delivery
Particle engineering has seen many applications in the field of pulmonary drug delivery due to the intimate relationship between particle physicochemistry and aerosol product performance.
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