Purpose: To optimize the preparation of insulin-chitosan nanoparticles (ICNS) using response surface methodology (RSM). Methods: ICNS were formulated through ionic cross linking method. The effects of the ratio between insulin and chitosan, pH of the medium and rotation speed on insulin encapsulation efficiency (EE) were investigated. Box-Behnken experimental design coupled with response surface method was employed to optimize formulation. Properties such as particle shape, size, zeta potential and release behavior were analyzed. Results: The best formulation was produced under the following conditions: the ratio between insulin and chitosan was 0.08, pH 3.0, and rotation speed 187.4 rpm. Verifying experiments were established under the opt...
Objectives: To formulate chitosan nanoparticles with specific combinations of molecular weight and d...
Research into responsive polymeric insulin delivery systems for the management of diabetes mellitus ...
WOS: 000390500600019In this study, we aimed to develop a novel protein - nanoencapsulated system for...
Purpose: To optimize the preparation of insulin-chitosan nanoparticles (ICNS) using response surface...
Insulin therapy has been the best choice for the clinical management of diabetes mellitus. The curre...
A nanoparticle insulin delivery system was prepared by complexation of dextran sulfate and chitosan ...
This study aims at the statistical optimization and in vitro characterization of insulin nanoparticl...
Insulin is a polypeptide hormone and usually administered for treatment of diabetic patients subcuta...
A new approach for the preparation of hydrophilic chitosan nanoparticles (CS2NPs), based on an ionic...
The aim of this study was to prepare and evaluate nanoparticles containing insulin in different poly...
A number of innovative techniques were developed for the extra-vascular delivery of insulin, of whic...
[[abstract]]©2007 ACS - Nanoparticles (NPs) composed of chitosan (CS) and poly(γ-glutamic acid) (γ-P...
Understanding the atomic interaction mechanism between chitosan and insulin at different pH levels i...
Objective: The present study aimed to develop and characterize Chitosan coated Alginate Nanocapsules...
Chitosan and chitosan derivative-based nanoparticles loaded with insulin were prepared by self-assem...
Objectives: To formulate chitosan nanoparticles with specific combinations of molecular weight and d...
Research into responsive polymeric insulin delivery systems for the management of diabetes mellitus ...
WOS: 000390500600019In this study, we aimed to develop a novel protein - nanoencapsulated system for...
Purpose: To optimize the preparation of insulin-chitosan nanoparticles (ICNS) using response surface...
Insulin therapy has been the best choice for the clinical management of diabetes mellitus. The curre...
A nanoparticle insulin delivery system was prepared by complexation of dextran sulfate and chitosan ...
This study aims at the statistical optimization and in vitro characterization of insulin nanoparticl...
Insulin is a polypeptide hormone and usually administered for treatment of diabetic patients subcuta...
A new approach for the preparation of hydrophilic chitosan nanoparticles (CS2NPs), based on an ionic...
The aim of this study was to prepare and evaluate nanoparticles containing insulin in different poly...
A number of innovative techniques were developed for the extra-vascular delivery of insulin, of whic...
[[abstract]]©2007 ACS - Nanoparticles (NPs) composed of chitosan (CS) and poly(γ-glutamic acid) (γ-P...
Understanding the atomic interaction mechanism between chitosan and insulin at different pH levels i...
Objective: The present study aimed to develop and characterize Chitosan coated Alginate Nanocapsules...
Chitosan and chitosan derivative-based nanoparticles loaded with insulin were prepared by self-assem...
Objectives: To formulate chitosan nanoparticles with specific combinations of molecular weight and d...
Research into responsive polymeric insulin delivery systems for the management of diabetes mellitus ...
WOS: 000390500600019In this study, we aimed to develop a novel protein - nanoencapsulated system for...