GET THE APP

Nanopharmaeuticals for drug delivery: Characterization and its ap | 34367
Journal of Pharmaceutical Care & Health Systems

Journal of Pharmaceutical Care & Health Systems
Open Access

ISSN: 2376-0419

Nanopharmaeuticals for drug delivery: Characterization and its applications for bioavailability enhancement and targeted drug delivery


8th Annual Pharma Middle East Congress

October 10-12, 2016 Dubai, UAE

Asha Patel

Anand Pharmacy College, India

Posters & Accepted Abstracts: J Pharma Care Health Sys

Abstract :

The current advancement in nanotechnology will have profound impact on ingested medicines through different routes. Day-by-day this improvisation in the techniques and a lot of work is ongoing in the fabrication, characterization, and application of novel techniques for controlling shape and size at nanometer scale to develop highly advanced drug delivery system to design better pharmaceutical products. Research conducted on Novel nanostructure like biodegradable nanoparticles, nanomicelles for inhalational targeted drug delivery as well as nanoemulsions, self nanoemulsifying drug delivery system for ocular, oral as well topical route of administration with multifunctional attribute had been focused on to resolve issues of solubility and permeability to achieve highest bioavailability and targeted drug delivery system containing different molecules. The size of nanoparticles/ nanodroplet (less than 100nm) enables penetration over biological barriers and extended bioavailability in organ tissues. The more lucrative feature of nanoformulations is that it��?s possible to control the properties of nanoparticles including size, shape, and surface characteristics illustrated that the developed nanoemulsion is a promising formulation for improving oral absorption of drug with poor aqueous solubility. Targeted nanomedicine delivery system raises hopes for a number of clinical disorders for which the satisfactory treatment is currently not available. The most outstanding feature is it can act at a molecular level.

Biography :

Email: patelasha1405@gmail.com

Top