A new approach for the preparation of hydrophilic chitosan nanoparticles (CS2NPs), based on an ionic gelation process, was established which was extremely mild and involved the mixture of two aqueous phases at room temperature. One phase contained polysaccharide chitosan (CS) and polyethylene oxide(PEO), and the other polyanion sodium tripolyphosphate (TPP). Size and zeta potential of the NPs could be modulated by varying the conditions for the preparation1 The new NPs prepared in our experiment showed great entrapment efficiency of insulin up to 90% and various factors had an influence on it. This hydrophilic system might be a very promising carrier for administration of therapeutic proteins and other macromolecules that were susceptible t...
[[abstract]]The oral route is considered to be the most convenient and comfortable means of drug adm...
The smart self-regulated drug delivery systems for insulin administration are desirable to achieve g...
AbstractIn an answer to the challenge of enzymatic instability and low oral bioavailability of prote...
A nanoparticle insulin delivery system was prepared by complexation of dextran sulfate and chitosan ...
[[abstract]]Nanoparticles (NPs) composed of chitosan (CS) and poly(gamma-glutamic acid) (gamma-PGA) ...
Chitosan and chitosan derivative-based nanoparticles loaded with insulin were prepared by self-assem...
WOS: 000390500600019In this study, we aimed to develop a novel protein - nanoencapsulated system for...
Insulin is a polypeptide hormone and usually administered for treatment of diabetic patients subcuta...
Understanding the atomic interaction mechanism between chitosan and insulin at different pH levels i...
Purpose: To optimize the preparation of insulin-chitosan nanoparticles (ICNS) using response surface...
A number of innovative techniques were developed for the extra-vascular delivery of insulin, of whic...
Objectives: To formulate chitosan nanoparticles with specific combinations of molecular weight and d...
Mucoadhesive chitosan based films, incorporated with insulin loaded nanoparticles (NPs) made of poly...
Insulin therapy has been the best choice for the clinical management of diabetes mellitus. The curre...
Research into responsive polymeric insulin delivery systems for the management of diabetes mellitus ...
[[abstract]]The oral route is considered to be the most convenient and comfortable means of drug adm...
The smart self-regulated drug delivery systems for insulin administration are desirable to achieve g...
AbstractIn an answer to the challenge of enzymatic instability and low oral bioavailability of prote...
A nanoparticle insulin delivery system was prepared by complexation of dextran sulfate and chitosan ...
[[abstract]]Nanoparticles (NPs) composed of chitosan (CS) and poly(gamma-glutamic acid) (gamma-PGA) ...
Chitosan and chitosan derivative-based nanoparticles loaded with insulin were prepared by self-assem...
WOS: 000390500600019In this study, we aimed to develop a novel protein - nanoencapsulated system for...
Insulin is a polypeptide hormone and usually administered for treatment of diabetic patients subcuta...
Understanding the atomic interaction mechanism between chitosan and insulin at different pH levels i...
Purpose: To optimize the preparation of insulin-chitosan nanoparticles (ICNS) using response surface...
A number of innovative techniques were developed for the extra-vascular delivery of insulin, of whic...
Objectives: To formulate chitosan nanoparticles with specific combinations of molecular weight and d...
Mucoadhesive chitosan based films, incorporated with insulin loaded nanoparticles (NPs) made of poly...
Insulin therapy has been the best choice for the clinical management of diabetes mellitus. The curre...
Research into responsive polymeric insulin delivery systems for the management of diabetes mellitus ...
[[abstract]]The oral route is considered to be the most convenient and comfortable means of drug adm...
The smart self-regulated drug delivery systems for insulin administration are desirable to achieve g...
AbstractIn an answer to the challenge of enzymatic instability and low oral bioavailability of prote...