Injectable therapeutic formulations locally releasing their cargo with tunable kinetics in response to external biochemical/physical cues are gaining interest in the scientific community, with the aim to overcome the cons of traditional administration routes. In this work, we proposed an alternative solution to this challenging goal by combining thermo-sensitive hydrogels based on custom-made amphiphilic poly(ether urethane)s (PEUs) and mesoporous silica nanoparticles coated with a self-immolative polymer sensitive to acid pH (MSN-CS-SIP). By exploiting PEU chemical versatility, Boc-protected amino groups were introduced as PEU building block (PEU-Boc), which were then subjected to a deprotection reaction to expose pendant primary amines al...
Polymeric-inorganic hybrid nanomaterials have emerged as novel multifunctional platforms because the...
Amphiphilic hydrogels are widely reported as systems with great potential for controlled drug releas...
Over the last decade, polymer micelles and nanoparticles have attracted an increasing interest as ef...
In this work, a novel polyurethane-based hydrogel system encapsulating pH-sensitive nanocarriers ha...
7noThe design of multi-stimuli-responsive vehicles for the controlled and localized release of drugs...
Despite great potential, the delivery of genetic materials into cells or tissues of interest remains...
Mesoporous silica nanoparticles (MSNs) exhibit significant advantages for efficient drug/gene delive...
We have produced hybrid poly(urethane–urea)/silica nanocapsules with controlled molecular-scale reg...
To achieve a pH-responsive switchable on-demand release of nanoparticles (NPs) from intravaginal rin...
A novel pH-sensitive nanocarrier based on mesoporous silica nanoparticles with self-immolative polym...
pH/thermosensitive hydrogels whose thermosensitivity is activated by the electrostatic interaction o...
Stimuli-responsive, smart, intelligent, or environmentally sensitive polymers respond to changes in ...
International audienceMesoporous silica nanoparticles (MSNPs) are functionalized with molecular-reco...
Poloxamer P407 (P407) is a Food and Drug Administration approved triblock copolymer; its hydrogels s...
Accepted ManuscriptThe aim of this research was to develop thermo- and pH-responsive hydrogels based...
Polymeric-inorganic hybrid nanomaterials have emerged as novel multifunctional platforms because the...
Amphiphilic hydrogels are widely reported as systems with great potential for controlled drug releas...
Over the last decade, polymer micelles and nanoparticles have attracted an increasing interest as ef...
In this work, a novel polyurethane-based hydrogel system encapsulating pH-sensitive nanocarriers ha...
7noThe design of multi-stimuli-responsive vehicles for the controlled and localized release of drugs...
Despite great potential, the delivery of genetic materials into cells or tissues of interest remains...
Mesoporous silica nanoparticles (MSNs) exhibit significant advantages for efficient drug/gene delive...
We have produced hybrid poly(urethane–urea)/silica nanocapsules with controlled molecular-scale reg...
To achieve a pH-responsive switchable on-demand release of nanoparticles (NPs) from intravaginal rin...
A novel pH-sensitive nanocarrier based on mesoporous silica nanoparticles with self-immolative polym...
pH/thermosensitive hydrogels whose thermosensitivity is activated by the electrostatic interaction o...
Stimuli-responsive, smart, intelligent, or environmentally sensitive polymers respond to changes in ...
International audienceMesoporous silica nanoparticles (MSNPs) are functionalized with molecular-reco...
Poloxamer P407 (P407) is a Food and Drug Administration approved triblock copolymer; its hydrogels s...
Accepted ManuscriptThe aim of this research was to develop thermo- and pH-responsive hydrogels based...
Polymeric-inorganic hybrid nanomaterials have emerged as novel multifunctional platforms because the...
Amphiphilic hydrogels are widely reported as systems with great potential for controlled drug releas...
Over the last decade, polymer micelles and nanoparticles have attracted an increasing interest as ef...