In the treatment of brain diseases, most potent drugs that have been developed exhibit poor therapeutic outcomes resulting from the inability of a therapeutic amount of the drug to reach the brain. These drugs do not exhibit targeted drug delivery mechanisms, resulting in a high concentration of the drugs in vital organs leading to drug toxicity. Chitosan (CS) is a natural-based polymer. It has unique properties such as good biodegradability, biocompatibility, mucoadhesive properties, and it has been approved for biomedical applications. It has been used to develop nanocarriers for brain targeting via intranasal administration. Nanocarriers such as nanoparticles, in situ gels, nanoemulsions, and liposomes have been developed. In vitro and i...
Nasal delivery has been indicated as one of the most interesting alternative routes for the brain de...
Chitosan-based nanoparticles (chitosan-based nanocomposites; chitosan nanoparticles; ChNPs) are prom...
Aim: Drug targeting to the CNS is challenging due to the presence of blood-brain barrier. We investi...
Global prevalence of neurological disorders such as Parkinson's disease, Alzheimer's disease, epilep...
There is an obvious need for efficient and safe nasal absorption enhancers for the development of th...
Chitosan-based nanomaterials have attracted significant attention in the biomedical field because of...
Drug delivery to the brain represents a challenge, especially in the therapy of central nervous syst...
The aim of the present study was the development of human serum albumin nanoparticles (HSA NPs) as n...
The number of neurodegenerative diseases is estimated to be a few hundred. Despite the high prevalen...
Chitosan is a biodegradable natural polymer with great potential for pharmaceutical applications due...
This review discusses different forms of nanomaterials generated from chitosan and its derivatives f...
The nasal delivery has been indicated as one of the most interesting alternative routes for brain de...
The focus of this review is to provide an overview of the chitosan based nanoparticles for various n...
Importance of the field: Chitosan represents a multifunctional polymer, featuring both mucoadhesive ...
Intranasal administration offers an alternative and promising approach for direct nose-to-brain deli...
Nasal delivery has been indicated as one of the most interesting alternative routes for the brain de...
Chitosan-based nanoparticles (chitosan-based nanocomposites; chitosan nanoparticles; ChNPs) are prom...
Aim: Drug targeting to the CNS is challenging due to the presence of blood-brain barrier. We investi...
Global prevalence of neurological disorders such as Parkinson's disease, Alzheimer's disease, epilep...
There is an obvious need for efficient and safe nasal absorption enhancers for the development of th...
Chitosan-based nanomaterials have attracted significant attention in the biomedical field because of...
Drug delivery to the brain represents a challenge, especially in the therapy of central nervous syst...
The aim of the present study was the development of human serum albumin nanoparticles (HSA NPs) as n...
The number of neurodegenerative diseases is estimated to be a few hundred. Despite the high prevalen...
Chitosan is a biodegradable natural polymer with great potential for pharmaceutical applications due...
This review discusses different forms of nanomaterials generated from chitosan and its derivatives f...
The nasal delivery has been indicated as one of the most interesting alternative routes for brain de...
The focus of this review is to provide an overview of the chitosan based nanoparticles for various n...
Importance of the field: Chitosan represents a multifunctional polymer, featuring both mucoadhesive ...
Intranasal administration offers an alternative and promising approach for direct nose-to-brain deli...
Nasal delivery has been indicated as one of the most interesting alternative routes for the brain de...
Chitosan-based nanoparticles (chitosan-based nanocomposites; chitosan nanoparticles; ChNPs) are prom...
Aim: Drug targeting to the CNS is challenging due to the presence of blood-brain barrier. We investi...