Due to their unique structure, poly(amidoamine) (PAMAM) dendrimers can bind active ingredients in two ways: inside the structure or on their surface. The location of drug molecules significantly impacts the kinetics of active substance release and the mechanism of internalization into the cell. This study focuses on the effect of the protonation degree of the G4PAMAM dendrimer and the anticancer drug 5-fluorouracil (5FU) on the efficiency of complex formation. The most favorable conditions for constructing the G4PAMAM-5FU complex are a low degree of protonation of the dendrimer molecule with the drug simultaneously present in a deprotonated form. The fluorine components in the XPS spectra confirm the formation of the stable complex. Through...
Understanding the dendrimer-drug interaction is of great importance to design and optimize the dendr...
Vergara-Jaque, A (Vergara-Jaque, Ariela)[ 1 ]; Monsalve, L (Monsalve, Luis)[ 1 ] . Univ Talca, Ctr...
Clinical applications of many small molecules are limited due to poor solubility and lack of control...
Due to their unique structure, poly(amidoamine) (PAMAM) dendrimers can bind active ingredients in tw...
Two generations of positively charged poly(amidoamine) dendrimers (PAMAMs) were selected for study a...
<p>Poly(amidoamine) dendrimers (PAMAM) are polymeric macromolecules that can find their use as carri...
Due to its unique properties of dendrimers as well as with high-level groups, a special ability to c...
Understanding the dendrimer–drug interaction is of great importance to design and optimize the dendr...
Computational studies performed on dendrimer-drug complexes usually consider 1:1 stoichiometry, whic...
Small molecule chemotherapy drugs used in clinical practice are plagued by dose-limiting side effect...
Poly(amidoamine) and Poly(propylenimine) dendrimers with different generations and peripheral groups...
<p>Dendrimers are the valuable additives in different routes of drug administration and are the most...
Understanding the dendrimer–drug interaction is of great importance to design and optimize the dendr...
The search for new nano-systems for targeted biomedical applications and controlled drug release has...
AbstractWe used fluorescence spectroscopy and surface tensiometry to study the interaction between l...
Understanding the dendrimer-drug interaction is of great importance to design and optimize the dendr...
Vergara-Jaque, A (Vergara-Jaque, Ariela)[ 1 ]; Monsalve, L (Monsalve, Luis)[ 1 ] . Univ Talca, Ctr...
Clinical applications of many small molecules are limited due to poor solubility and lack of control...
Due to their unique structure, poly(amidoamine) (PAMAM) dendrimers can bind active ingredients in tw...
Two generations of positively charged poly(amidoamine) dendrimers (PAMAMs) were selected for study a...
<p>Poly(amidoamine) dendrimers (PAMAM) are polymeric macromolecules that can find their use as carri...
Due to its unique properties of dendrimers as well as with high-level groups, a special ability to c...
Understanding the dendrimer–drug interaction is of great importance to design and optimize the dendr...
Computational studies performed on dendrimer-drug complexes usually consider 1:1 stoichiometry, whic...
Small molecule chemotherapy drugs used in clinical practice are plagued by dose-limiting side effect...
Poly(amidoamine) and Poly(propylenimine) dendrimers with different generations and peripheral groups...
<p>Dendrimers are the valuable additives in different routes of drug administration and are the most...
Understanding the dendrimer–drug interaction is of great importance to design and optimize the dendr...
The search for new nano-systems for targeted biomedical applications and controlled drug release has...
AbstractWe used fluorescence spectroscopy and surface tensiometry to study the interaction between l...
Understanding the dendrimer-drug interaction is of great importance to design and optimize the dendr...
Vergara-Jaque, A (Vergara-Jaque, Ariela)[ 1 ]; Monsalve, L (Monsalve, Luis)[ 1 ] . Univ Talca, Ctr...
Clinical applications of many small molecules are limited due to poor solubility and lack of control...