Research in our group on covalently crosslinked single-chain polymer nanoparticles (SCNPs) has previously shown consistent and monodisperse formation with particle sizes of around 10 nm. These SCNPs have the ability to incorporate various functional groups with high biocompatibility. These properties make the SCNPs an interesting nanoparticle class for biomedical applications. This dissertation focuses on using covalently crosslinked SCNPs in controlled drug delivery, with the aim of developing highly efficient nanocarriers for cytosolic delivery
Single-chain technology (SCT) allows the manipulation of polymeric architectures at an individual po...
Therapeutic Nanoparticles have shown significant impact in the field of medicine, particularly in an...
A breakthrough innovation in water-based polymeric nanoparticles has enabled significant progress in...
Research in our group on covalently crosslinked single-chain polymer nanoparticles (SCNPs) has previ...
As a relatively new class of materials, single-chain polymer nanoparticles (SCNPs) just entered the ...
Intracellular delivery of nanoparticles is crucial in nanomedicine to reach optimal delivery of ther...
Single-chain polymer nanoparticles (SCNPs) are protein-inspired materials based on intramolecularly ...
Cytosolic delivery of therapeutic agents is key to improving their efficacy, as the therapeutics are...
Intracellular delivery of nanoparticles is crucial in nanomedicine to reach optimal delivery of ther...
Nanotechnology is a multidisciplinary scientific field undergoing explosive development. One of the ...
Polymeric nanoparticles have been utilized in an increasing number of fields over the past two decad...
Single-chain nanoparticles (SCNPs) are polymeric soft nano-objects constructed via individual chain ...
Polymer-based nanoparticles of tailored size, morphology, and surface properties have attracted incr...
In recent decades, self-confinement effects arising from the folding of individual synthetic polymer...
Abstract: In recent years, water soluble conjugated polymer nanoparticles (CPNs) have gained widespr...
Single-chain technology (SCT) allows the manipulation of polymeric architectures at an individual po...
Therapeutic Nanoparticles have shown significant impact in the field of medicine, particularly in an...
A breakthrough innovation in water-based polymeric nanoparticles has enabled significant progress in...
Research in our group on covalently crosslinked single-chain polymer nanoparticles (SCNPs) has previ...
As a relatively new class of materials, single-chain polymer nanoparticles (SCNPs) just entered the ...
Intracellular delivery of nanoparticles is crucial in nanomedicine to reach optimal delivery of ther...
Single-chain polymer nanoparticles (SCNPs) are protein-inspired materials based on intramolecularly ...
Cytosolic delivery of therapeutic agents is key to improving their efficacy, as the therapeutics are...
Intracellular delivery of nanoparticles is crucial in nanomedicine to reach optimal delivery of ther...
Nanotechnology is a multidisciplinary scientific field undergoing explosive development. One of the ...
Polymeric nanoparticles have been utilized in an increasing number of fields over the past two decad...
Single-chain nanoparticles (SCNPs) are polymeric soft nano-objects constructed via individual chain ...
Polymer-based nanoparticles of tailored size, morphology, and surface properties have attracted incr...
In recent decades, self-confinement effects arising from the folding of individual synthetic polymer...
Abstract: In recent years, water soluble conjugated polymer nanoparticles (CPNs) have gained widespr...
Single-chain technology (SCT) allows the manipulation of polymeric architectures at an individual po...
Therapeutic Nanoparticles have shown significant impact in the field of medicine, particularly in an...
A breakthrough innovation in water-based polymeric nanoparticles has enabled significant progress in...