Polymeric micelles (PM) are extensively used to improve the delivery of hydrophobic drugs. Many different PM have been designed and evaluated over the years, and some of them have steadily progressed through clinical trials. Increasing evidence suggests, however, that for prolonged circulation times and for efficient EPR-mediated drug targeting to tumors and to sites of inflammation, PM need to be stabilized, to prevent premature disintegration. Core-crosslinking is among the most popular methods to improve the in vivo stability of PM, and a number of core-crosslinked polymeric micelles (CCPM) have demonstrated promising efficacy in animal models. The latter is particularly true for CCPM in which (pro-) drugs are covalently entrapped. This ...
Complex coacervate core micelles (C3Ms) are formed by mixing aqueous solutions of a charged (bio)mac...
Over the last decade, polymer micelles attracted an increasing interest in drug pharmaceutical resea...
Core cross-linked polymeric micelles (CCPMs) are designed to improve the therapeutic profile of hydr...
Polymeric micelles (PM) are extensively used to improve the delivery of hydrophobic drugs. Many diff...
Polymeric micelles (PM) are extensively used to improve the delivery of hydrophobic drugs. Many diff...
The in vivo administration of chemotherapeutic drugs is a challenge due to their poor pharmacokineti...
To optimally exploit the potential of (tumor-) targeted nanomedicines, platform technologies are nee...
Polymeric micelles (PM) have been extensively used for tumor-targeted delivery of hydrophobic anti-c...
There are several barriers that drug molecules encounter in body beginning from kidney filtration an...
Nowadays, polymer micelles have attracted an increasing interest in pharmaceutical research because ...
This dissertation addresses the broad applicability of the nanomedicine platform core-cross-linked p...
Covalent entrapment of drug molecules within core-crosslinked polymeric micelles (CCPM) represents a...
In recent years, colloidal systems (e.g. liposomes, nanoparticles and micelles) are increasingly app...
This thesis aimed to investigate core cross-linked polymeric micelles (CCPMs) and expand their poten...
Complex coacervate core micelles (C3Ms) are formed by mixing aqueous solutions of a charged (bio)mac...
Over the last decade, polymer micelles attracted an increasing interest in drug pharmaceutical resea...
Core cross-linked polymeric micelles (CCPMs) are designed to improve the therapeutic profile of hydr...
Polymeric micelles (PM) are extensively used to improve the delivery of hydrophobic drugs. Many diff...
Polymeric micelles (PM) are extensively used to improve the delivery of hydrophobic drugs. Many diff...
The in vivo administration of chemotherapeutic drugs is a challenge due to their poor pharmacokineti...
To optimally exploit the potential of (tumor-) targeted nanomedicines, platform technologies are nee...
Polymeric micelles (PM) have been extensively used for tumor-targeted delivery of hydrophobic anti-c...
There are several barriers that drug molecules encounter in body beginning from kidney filtration an...
Nowadays, polymer micelles have attracted an increasing interest in pharmaceutical research because ...
This dissertation addresses the broad applicability of the nanomedicine platform core-cross-linked p...
Covalent entrapment of drug molecules within core-crosslinked polymeric micelles (CCPM) represents a...
In recent years, colloidal systems (e.g. liposomes, nanoparticles and micelles) are increasingly app...
This thesis aimed to investigate core cross-linked polymeric micelles (CCPMs) and expand their poten...
Complex coacervate core micelles (C3Ms) are formed by mixing aqueous solutions of a charged (bio)mac...
Over the last decade, polymer micelles attracted an increasing interest in drug pharmaceutical resea...
Core cross-linked polymeric micelles (CCPMs) are designed to improve the therapeutic profile of hydr...