An iron-based SBA-16 mesoporous silica (ferrisilicate) with a large surface area and three-dimensional (3D) pores is explored as a potential insulin delivery vehicle with improved encapsulation and loading efficiency. Fe was incorporated into a framework of ferrisilicate using the isomorphous substitution technique for direct synthesis. Fe3+ species were identified using diffuse reflectance spectroscopy. The large surface area (804 m2/g), cubic pores (3.2 nm) and insulin loading were characterized using XRD, BET surface area, FTIR and TEM analyses. For pH sensitivity, the ferrisilicate was wrapped with polyethylene glycol (MW = 400 Daltons) (PEG). For comparison, Fe (10 wt%) was impregnated on a Korea Advanced Institute of Science and Techn...
Production of bacterial nanocellulose was pursued as a matrix system for the stabilization of human ...
YesThe aim of this study was to design a controlled release vehicle for insulin to preserve its stab...
[[abstract]]We aimed to develop a diabetes mellitus (DM) treatment that could be administered by int...
The advancements in nanoscience have brought attention to the potential of utilizing nanoparticles a...
The present study reports the production and characterization of PEG-coated silica nanoparticles (Si...
Diabetes Mellitus is a metabolic condition of the body, where there is a high blood glucose content,...
Particulate delivery system can be used for improving the efficacy of protein and peptide drug. In a...
The present work aimed at studying the interaction between insulin and SiNP surfaced with mucoadhesi...
We report a pH-controlled insulin release system to provide an oral administration route. Mesoporous...
Diabetes mellitus is a chronic illness manifested by improper blood glucose management, affecting ov...
Mesoporous silica particles (MSPs) have a high surface area, pore volume, and tunable pore size and ...
Effective oral delivery of protein and peptide drugs remains an active topic in scientific research....
Diabetes mellitus is a chronic disease which affects over 425 million people worldwide (2017), a num...
Cationic solid lipid nanoparticles (cSLN) loaded with insulin for oral delivery were prepared by the...
Insulin therapy has been the best choice for the clinical management of diabetes mellitus. The curre...
Production of bacterial nanocellulose was pursued as a matrix system for the stabilization of human ...
YesThe aim of this study was to design a controlled release vehicle for insulin to preserve its stab...
[[abstract]]We aimed to develop a diabetes mellitus (DM) treatment that could be administered by int...
The advancements in nanoscience have brought attention to the potential of utilizing nanoparticles a...
The present study reports the production and characterization of PEG-coated silica nanoparticles (Si...
Diabetes Mellitus is a metabolic condition of the body, where there is a high blood glucose content,...
Particulate delivery system can be used for improving the efficacy of protein and peptide drug. In a...
The present work aimed at studying the interaction between insulin and SiNP surfaced with mucoadhesi...
We report a pH-controlled insulin release system to provide an oral administration route. Mesoporous...
Diabetes mellitus is a chronic illness manifested by improper blood glucose management, affecting ov...
Mesoporous silica particles (MSPs) have a high surface area, pore volume, and tunable pore size and ...
Effective oral delivery of protein and peptide drugs remains an active topic in scientific research....
Diabetes mellitus is a chronic disease which affects over 425 million people worldwide (2017), a num...
Cationic solid lipid nanoparticles (cSLN) loaded with insulin for oral delivery were prepared by the...
Insulin therapy has been the best choice for the clinical management of diabetes mellitus. The curre...
Production of bacterial nanocellulose was pursued as a matrix system for the stabilization of human ...
YesThe aim of this study was to design a controlled release vehicle for insulin to preserve its stab...
[[abstract]]We aimed to develop a diabetes mellitus (DM) treatment that could be administered by int...