Reversible self-folding actions of natural biomacromolecules play crucial roles for specific and unique biological functions in Nature. Hence, controlled folding of single polymer chains has attracted significant attention in recent years. Herein, reversible single-chain folded glycopolymer structures in α-shape with different density of sugar moieties in the knot were created. The influence of folding as well as the sugar density in the knot was investigated on the binding capability with lectins, such as ConA, DC-SIGN, and DC-SIGNR. The synthesis of triblock glycocopolymers bearing β-CD and adamantane for the host–guest interaction and also mannose residues for the lectin interaction was achieved using the reversible addition–fragmentatio...
For synthetic glycopolymers, multivalent carbohydrate-protein interactions have been mostly studied ...
AbstractSingle-molecule manipulation techniques have enabled the characterization of the unfolding a...
Free to read on publisher website The current contribution serves as a critical update to a previous...
Reversible self-folding actions of natural biomacromolecules play crucial roles for specific and uni...
A novel, highly efficient methodology to synthesize gradient glycopolymers has been successfully dev...
A novel, highly efficient methodology to synthesize gradient glycopolymers has been successfully dev...
In this work, we describe the physicochemical characterization of amphiphilic glycopolymers synthesi...
Saccharides act important roles in many biological processes as recognition molecules, signalling m...
The emulation of natural processes and the design of chemical reaction sequences inspired by nature ...
Glycopolymers are synthetic analogues of natural polysaccharides that connect saccharides through a ...
In the present communication we introduce a new platform technology for the reversible folding of si...
The present feature article highlights the preparation of polymeric nanoparticles and initial attemp...
With the long term aim of preparing synthetic macromolecules that mimic the folding actions of natur...
For synthetic glycopolymers, multivalent carbohydrate-protein interactions have been mostly studied ...
This article belongs to the Special Issue Single-Chain Polymer Nanotechnology.The folding of certain...
For synthetic glycopolymers, multivalent carbohydrate-protein interactions have been mostly studied ...
AbstractSingle-molecule manipulation techniques have enabled the characterization of the unfolding a...
Free to read on publisher website The current contribution serves as a critical update to a previous...
Reversible self-folding actions of natural biomacromolecules play crucial roles for specific and uni...
A novel, highly efficient methodology to synthesize gradient glycopolymers has been successfully dev...
A novel, highly efficient methodology to synthesize gradient glycopolymers has been successfully dev...
In this work, we describe the physicochemical characterization of amphiphilic glycopolymers synthesi...
Saccharides act important roles in many biological processes as recognition molecules, signalling m...
The emulation of natural processes and the design of chemical reaction sequences inspired by nature ...
Glycopolymers are synthetic analogues of natural polysaccharides that connect saccharides through a ...
In the present communication we introduce a new platform technology for the reversible folding of si...
The present feature article highlights the preparation of polymeric nanoparticles and initial attemp...
With the long term aim of preparing synthetic macromolecules that mimic the folding actions of natur...
For synthetic glycopolymers, multivalent carbohydrate-protein interactions have been mostly studied ...
This article belongs to the Special Issue Single-Chain Polymer Nanotechnology.The folding of certain...
For synthetic glycopolymers, multivalent carbohydrate-protein interactions have been mostly studied ...
AbstractSingle-molecule manipulation techniques have enabled the characterization of the unfolding a...
Free to read on publisher website The current contribution serves as a critical update to a previous...