Polyamidoamine (PAMAM) dendrimers are one of the smallest and most precise nanomolecules available today, which have promising applications for the treatment of brain diseases. Each aspect of the dendrimer (core, size or generation, size of cavities, and surface functional groups) can be precisely modulated to yield a variety of nanocarriers for delivery of drugs and genes to brain cells in vitro or in vivo. Two of the most important criteria to consider when using PAMAM dendrimers for neuroscience applications is their safety profile and their potential to be prepared in a reproducible manner. Based on these criteria, features of PAMAM dendrimers are described to help the neuroscience researcher to judiciously choose the right type of dend...
Dendrimers have been described as one of the most tunable and therefore potentially applicable nanop...
Dendrimers have been described as one of the most tunable and therefore potentially applicable nanop...
Dendrimers have been described as one of the most tunable and therefore potentially applicable nanop...
Polyamidoamine (PAMAM) dendrimers are one of the smallest and most precise nanomolecules available t...
Dendrimers are nanoscopic compounds, which are monodispersed, and they are generally considered as h...
Dendrimers are nanoscopic compounds, which are monodispersed, and they are generally considered as h...
Clinical applications of many small molecules are limited due to poor solubility and lack of control...
Research Article published MDPIClinical applications of many small molecules are limited due to poor...
AbstractDendrimers are branched polymers with spherical morphology. Their tuneable chemistry and sur...
Drug delivery to the central nervous system is restricted by the blood-brain barrier (BBB). However,...
Drug delivery to the central nervous system is restricted by the blood-brain barrier (BBB). However,...
Drug delivery into the central nervous system (CNS) is challenging due to the blood–brain barrier (B...
Drug delivery into the central nervous system (CNS) is challenging due to the blood–brain barrier (B...
Objectives: The aim of this review is to provide brief description of synthesis, structure, properti...
Dendrimers have been described as one of the most tunable and therefore potentially applicable nanop...
Dendrimers have been described as one of the most tunable and therefore potentially applicable nanop...
Dendrimers have been described as one of the most tunable and therefore potentially applicable nanop...
Dendrimers have been described as one of the most tunable and therefore potentially applicable nanop...
Polyamidoamine (PAMAM) dendrimers are one of the smallest and most precise nanomolecules available t...
Dendrimers are nanoscopic compounds, which are monodispersed, and they are generally considered as h...
Dendrimers are nanoscopic compounds, which are monodispersed, and they are generally considered as h...
Clinical applications of many small molecules are limited due to poor solubility and lack of control...
Research Article published MDPIClinical applications of many small molecules are limited due to poor...
AbstractDendrimers are branched polymers with spherical morphology. Their tuneable chemistry and sur...
Drug delivery to the central nervous system is restricted by the blood-brain barrier (BBB). However,...
Drug delivery to the central nervous system is restricted by the blood-brain barrier (BBB). However,...
Drug delivery into the central nervous system (CNS) is challenging due to the blood–brain barrier (B...
Drug delivery into the central nervous system (CNS) is challenging due to the blood–brain barrier (B...
Objectives: The aim of this review is to provide brief description of synthesis, structure, properti...
Dendrimers have been described as one of the most tunable and therefore potentially applicable nanop...
Dendrimers have been described as one of the most tunable and therefore potentially applicable nanop...
Dendrimers have been described as one of the most tunable and therefore potentially applicable nanop...
Dendrimers have been described as one of the most tunable and therefore potentially applicable nanop...