The aim of the work reported herein was to investigate the effect of various low molecular weight chitosans (LMWCs) on the stability of insulin using USP HPLC methods. Insulin was found to be stable in a polyelectrolyte complex (PEC) consisting of insulin and LMWC in the presence of a Tris-buffer at pH 6.5. In the presence of LMWC, the stability of insulin increased with decreasing molecular weight of LMWC; 13 kDa LMWC was the most efficient molecular weight for enhancing the physical and chemical stability of insulin. Solubilization of insulin-LMWC polyelectrolyte complex (I-LMWC PEC) in a reverse micelle (RM) system, administered to diabetic rats, results in an oral delivery system for insulin with acceptable bioactivity
Introduction: Therapeutic peptides are administered via parenteral route due to poor absorption in t...
Funding: Supported in part by UID/DTP/04138/2019 from FCT, Portugal and DREAMS (ULHT). SEM analysis ...
Chitosan and chitosan derivative-based nanoparticles loaded with insulin were prepared by self-assem...
The aim of the work reported herein was to investigate the effect of various low molecular weight ch...
The objective of the present study was to prepare and characterize low molecular weight chitosan (LM...
The aim of this project was to prepare, optimize, characterize and compare a subcutaneous/oral deliv...
Objectives: To formulate chitosan nanoparticles with specific combinations of molecular weight and d...
The present study was aimed at developing a delivery system for controlled release of insulin at bas...
Polyelectrolyte nanocomposites rarely reach a stable state and aggregation often occurs. Here, we re...
A nanoparticle insulin delivery system was prepared by complexation of dextran sulfate and chitosan ...
Oral insulin delivery that better mimics physiological pathways is a necessity as it ensures patient...
Currently, insulin can only be administered through the subcutaneous route. Due to the flaws associa...
This study considers the molecular weight, conformation, stability and nanoparticle formation of the...
The overall objective of our research is to produce polyanion/chitosan nanoparticulate oral delivery...
The smart self-regulated drug delivery systems for insulin administration are desirable to achieve g...
Introduction: Therapeutic peptides are administered via parenteral route due to poor absorption in t...
Funding: Supported in part by UID/DTP/04138/2019 from FCT, Portugal and DREAMS (ULHT). SEM analysis ...
Chitosan and chitosan derivative-based nanoparticles loaded with insulin were prepared by self-assem...
The aim of the work reported herein was to investigate the effect of various low molecular weight ch...
The objective of the present study was to prepare and characterize low molecular weight chitosan (LM...
The aim of this project was to prepare, optimize, characterize and compare a subcutaneous/oral deliv...
Objectives: To formulate chitosan nanoparticles with specific combinations of molecular weight and d...
The present study was aimed at developing a delivery system for controlled release of insulin at bas...
Polyelectrolyte nanocomposites rarely reach a stable state and aggregation often occurs. Here, we re...
A nanoparticle insulin delivery system was prepared by complexation of dextran sulfate and chitosan ...
Oral insulin delivery that better mimics physiological pathways is a necessity as it ensures patient...
Currently, insulin can only be administered through the subcutaneous route. Due to the flaws associa...
This study considers the molecular weight, conformation, stability and nanoparticle formation of the...
The overall objective of our research is to produce polyanion/chitosan nanoparticulate oral delivery...
The smart self-regulated drug delivery systems for insulin administration are desirable to achieve g...
Introduction: Therapeutic peptides are administered via parenteral route due to poor absorption in t...
Funding: Supported in part by UID/DTP/04138/2019 from FCT, Portugal and DREAMS (ULHT). SEM analysis ...
Chitosan and chitosan derivative-based nanoparticles loaded with insulin were prepared by self-assem...