A novel hydrophobic chitosan derivative, octanoyl chitosan (OC) with improved organic solubility was synthesized, characterized, and employed for the preparation of rifampicin (Rif) encapsulated nanoparticle formulations for pulmonary delivery. OC was characterized to confirm acyl group substitution and cytotoxicity in A549 epithelial lung cells. OC nanoparticles were produced by the double emulsion solvent evaporation technique without cross-linking and characterized for particle size distribution, morphology, crystallinity, thermal stability, aerosol delivery, and drug release rate. OC was successfully synthesized with substitution degree of 44.05 ± 1.75%, and solubility in a range of organic solvents. Preliminary cytotoxicity studies of ...
The effects of lipid concentration and composition on the physicochemical properties, aerosol perfor...
AbstractThe aim of the present work is to develop rifampicin loaded phospholipid lipospheres contain...
Despite research efforts full potential of siRNA-based therapeutics has not yet been fully realized ...
The study investigated aerosolization, pulmonary inhalation, intracellular trafficking potential in ...
AbstractDuring recent years, the implication of nanoparticles (NPs) as drug delivery systems has gai...
The study investigated the aerosolization and inhalation profiles of rifampicin-oleic acid first gen...
Copyright © 2013 Bhavin K. Patel et al.This is an open access article distributed under the Creative...
Rifampicin loaded glycerosomes, vesicles composed of phospholipids, glycerol and water, were combine...
Pulmospheres of Rifampicin were prepared successfully with cyclodextrin using olibanum gum resin as ...
This study aimed to prepare and evaluate rifampicin microparticles for the lung delivery of rifampic...
Salma M Mohyeldin, Mohammed M Mehanna, Nazik A Elgindy Department of Industrial Pharmacy, Faculty o...
The potential of amphiphilic chitosan formed by grafting octanoyl chains on the chitosan backbone fo...
The aim of this study was to design a nanocarrier system for inhalation delivery of rifampicin (RIF)...
The direct delivery of antibiotics to the lung has been considered an effective approach to treat pu...
Rifampicin is a naturally made, non-peptide antibiotic. It is bactericidal, killing by disabling the...
The effects of lipid concentration and composition on the physicochemical properties, aerosol perfor...
AbstractThe aim of the present work is to develop rifampicin loaded phospholipid lipospheres contain...
Despite research efforts full potential of siRNA-based therapeutics has not yet been fully realized ...
The study investigated aerosolization, pulmonary inhalation, intracellular trafficking potential in ...
AbstractDuring recent years, the implication of nanoparticles (NPs) as drug delivery systems has gai...
The study investigated the aerosolization and inhalation profiles of rifampicin-oleic acid first gen...
Copyright © 2013 Bhavin K. Patel et al.This is an open access article distributed under the Creative...
Rifampicin loaded glycerosomes, vesicles composed of phospholipids, glycerol and water, were combine...
Pulmospheres of Rifampicin were prepared successfully with cyclodextrin using olibanum gum resin as ...
This study aimed to prepare and evaluate rifampicin microparticles for the lung delivery of rifampic...
Salma M Mohyeldin, Mohammed M Mehanna, Nazik A Elgindy Department of Industrial Pharmacy, Faculty o...
The potential of amphiphilic chitosan formed by grafting octanoyl chains on the chitosan backbone fo...
The aim of this study was to design a nanocarrier system for inhalation delivery of rifampicin (RIF)...
The direct delivery of antibiotics to the lung has been considered an effective approach to treat pu...
Rifampicin is a naturally made, non-peptide antibiotic. It is bactericidal, killing by disabling the...
The effects of lipid concentration and composition on the physicochemical properties, aerosol perfor...
AbstractThe aim of the present work is to develop rifampicin loaded phospholipid lipospheres contain...
Despite research efforts full potential of siRNA-based therapeutics has not yet been fully realized ...