The alginate-chitosan microspheres with narrow size distribution were prepared by membrane emulsification technique in combination with ion (Ca(2+)) and polymer (chitosan) solidification. The preparation procedure was observed, and the physical properties (particle size distribution, surface morphology, chitosan distribution, zeta potential) of the microspheres were characterized. Subsequently, the microspheres were employed to load model peptide of insulin. The effect of loading ways on the loading efficiency and immunological activity of insulin were investigated. It was shown that the higher loading efficiency (56.7%) and remarkable activity maintenance (99.4%) were obtained when the insulin was loaded during the chitosan solidification ...
The aim of this work was to develop a novel composite alginate/poly(lactic-co-glycolic) acid micropa...
Effective oral delivery of protein and peptide drugs remains an active topic in scientific research...
Enas Elmowafy, Rihab Osman, Abdel Hameed El-Shamy,† Gehanne AS AwadDepartment of Pharmaceutic...
Insulin-loaded alginate microspheres prepared by emulsification/internal gelation were reinforced by...
WOS: 000176037600005PubMed ID: 12066877Insulin was encapsulated in calcium alginate beads coated wit...
Objective: The present study aimed to develop and characterize Chitosan coated Alginate Nanocapsules...
Objective: The present work is aimed to formulate and evaluate alginate-chitosan microspheres of gli...
Alginate microspheres for a highly water soluble antidiabetic drug Metformin hydrochloride was prepa...
WOS: 000390500600019In this study, we aimed to develop a novel protein - nanoencapsulated system for...
Abstract Purpose To evaluate the pharmacological activity of insulin-loaded alginate/chitosan nanop...
Effective oral delivery of protein and peptide drugs remains an active topic in scientific research....
Chitosan microsphere has potential applications in orally and other mucosally administration of prot...
In a previous study, insulin was efficiently encapsulated in alginate microspheres using an emulsifi...
Recombinant human insulin was encapsulated within alginate microspheres by the emulsification/intern...
Alginate-chitosan (ALG-CHI) microspheres obtained by polyelectrolyte complexation are pH-sensitive, ...
The aim of this work was to develop a novel composite alginate/poly(lactic-co-glycolic) acid micropa...
Effective oral delivery of protein and peptide drugs remains an active topic in scientific research...
Enas Elmowafy, Rihab Osman, Abdel Hameed El-Shamy,† Gehanne AS AwadDepartment of Pharmaceutic...
Insulin-loaded alginate microspheres prepared by emulsification/internal gelation were reinforced by...
WOS: 000176037600005PubMed ID: 12066877Insulin was encapsulated in calcium alginate beads coated wit...
Objective: The present study aimed to develop and characterize Chitosan coated Alginate Nanocapsules...
Objective: The present work is aimed to formulate and evaluate alginate-chitosan microspheres of gli...
Alginate microspheres for a highly water soluble antidiabetic drug Metformin hydrochloride was prepa...
WOS: 000390500600019In this study, we aimed to develop a novel protein - nanoencapsulated system for...
Abstract Purpose To evaluate the pharmacological activity of insulin-loaded alginate/chitosan nanop...
Effective oral delivery of protein and peptide drugs remains an active topic in scientific research....
Chitosan microsphere has potential applications in orally and other mucosally administration of prot...
In a previous study, insulin was efficiently encapsulated in alginate microspheres using an emulsifi...
Recombinant human insulin was encapsulated within alginate microspheres by the emulsification/intern...
Alginate-chitosan (ALG-CHI) microspheres obtained by polyelectrolyte complexation are pH-sensitive, ...
The aim of this work was to develop a novel composite alginate/poly(lactic-co-glycolic) acid micropa...
Effective oral delivery of protein and peptide drugs remains an active topic in scientific research...
Enas Elmowafy, Rihab Osman, Abdel Hameed El-Shamy,† Gehanne AS AwadDepartment of Pharmaceutic...