Articles liés à Microemulsion Encapsulation Technology

Microemulsion Encapsulation Technology - Couverture souple

Nazar, Muhammad Faizan; Shah, Syed Sakhawat

 
9783659562464: Microemulsion Encapsulation Technology

Synopsis

The study has highlighted some key challenges facing the pharmaceuticals to optimally enhance the capacity building initiative via microemulsion encapsulation technology.Research on the microencapsulation technology for local improvement has grown rapidly in the recent years. The specific goal of this technology is to design, develop and test a portfolio of tools for the joint identification & exploitation of pharmacological research in targeted domains of pharmaceutical interest. The work reported covers various investigations carried out under microemulsion conditions. More specifically it includes the encapsulation of nonsteroid anti-inflammatory drug (piroxicam) and the preparation and recovery of cetyltrimethylammonium chloride (CTACl) capped metal nanoparticles (Au, Pd, SiO2). Microemulsions are colloidal self-assembly fluids, function as nanoreactors and are suitable replacement for enhancing the loading capacity of drugs and recovery of nanoparticles. It was found that high loading capacity of piroxicam (1 wt%) and paramount recovery of nanoparticles (upto 98%) highlight the proficiency of the microemulsions in pharmaceuticals and in separation science

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Présentation de l'éditeur

The study has highlighted some key challenges facing the pharmaceuticals to optimally enhance the capacity building initiative via microemulsion encapsulation technology.Research on the microencapsulation technology for local improvement has grown rapidly in the recent years. The specific goal of this technology is to design, develop and test a portfolio of tools for the joint identification & exploitation of pharmacological research in targeted domains of pharmaceutical interest. The work reported covers various investigations carried out under microemulsion conditions. More specifically it includes the encapsulation of nonsteroid anti-inflammatory drug (piroxicam) and the preparation and recovery of cetyltrimethylammonium chloride (CTACl) capped metal nanoparticles (Au, Pd, SiO2). Microemulsions are colloidal self-assembly fluids, function as nanoreactors and are suitable replacement for enhancing the loading capacity of drugs and recovery of nanoparticles. It was found that high loading capacity of piroxicam (1 wt%) and paramount recovery of nanoparticles (upto 98%) highlight the proficiency of the microemulsions in pharmaceuticals and in separation science

Biographie de l'auteur

Dr. Muhammad Faizan Nazar has obtained his PhD degree in Physical Chemistry in 2011. He has a high international reputation in the fields of colloids and interface science and to date he has published 28 research articles. Currently, he is working as Assistant Professor at Department of Chemistry, University of Gujrat, Gujrat-50700, Pakistan.

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