We present the results of discontinuous molecular dynamics (DMD) simulations aimed at understanding the formation of DNA-mediated hydrogels and assessing their drug loading ability. Poly(ethylene glycol) (PEG) precursors of four and six arms that are covalently functionalized on all ends with oligonucleotides are cross-linked by a single oligonucleotide whose sequence is complementary to the oligonucleotide conjugated to the precursor. We show that the precursors with large molecular weight and many arms are advantageous in forming a three-dimensional percolated network. Analysis of the percolated networks shows that the pore diameter distribution becomes narrower as the precursor concentration, the number of arms, and the molecular weight...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
DNA can be utilized as structural components of hydrogels, which are widely used biomaterials in the...
The control of the three-dimensional (3D) polymer network structure is important for permselective m...
Hydrogels – crosslinked polymer networks holding a large amount of water – have many properties that...
DNA-polyacrylamide hybrid hydrogels designed with covalent and double-stranded (dsDNA) crosslinks re...
DNA is commonly viewed as a genetic material in all life forms, which is responsible for storing and...
DNA-polyacrylamide hybrid hydrogels designed with covalent and double-stranded (dsDNA) crosslinks re...
© 2019 American Chemical Society. We introduce a coarse-grained numerical model that represents a ge...
A new pH-responsive hydrogel biomaterial, that is composed of solely two popular biocompatible mater...
Self-assembling hydrogels, consisting of aqueous solutions of poly(ethylene glycol)s end-capped with...
Self-assembling hydrogels, consisting of aqueous solutions of poly(ethylene glycol)s end-capped with...
In the present study, we expand on the understanding of hydrogels with embedded deoxyribonucleic aci...
Self-assembling hydrogels, consisting of aqueous solutions of poly(ethylene glycol)s end-capped with...
Traditionally, a drug is administered initially at a higher dosage so as to repeat the next dose aft...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
DNA can be utilized as structural components of hydrogels, which are widely used biomaterials in the...
The control of the three-dimensional (3D) polymer network structure is important for permselective m...
Hydrogels – crosslinked polymer networks holding a large amount of water – have many properties that...
DNA-polyacrylamide hybrid hydrogels designed with covalent and double-stranded (dsDNA) crosslinks re...
DNA is commonly viewed as a genetic material in all life forms, which is responsible for storing and...
DNA-polyacrylamide hybrid hydrogels designed with covalent and double-stranded (dsDNA) crosslinks re...
© 2019 American Chemical Society. We introduce a coarse-grained numerical model that represents a ge...
A new pH-responsive hydrogel biomaterial, that is composed of solely two popular biocompatible mater...
Self-assembling hydrogels, consisting of aqueous solutions of poly(ethylene glycol)s end-capped with...
Self-assembling hydrogels, consisting of aqueous solutions of poly(ethylene glycol)s end-capped with...
In the present study, we expand on the understanding of hydrogels with embedded deoxyribonucleic aci...
Self-assembling hydrogels, consisting of aqueous solutions of poly(ethylene glycol)s end-capped with...
Traditionally, a drug is administered initially at a higher dosage so as to repeat the next dose aft...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
DNA can be utilized as structural components of hydrogels, which are widely used biomaterials in the...
The control of the three-dimensional (3D) polymer network structure is important for permselective m...