Stimuli-responsive materials activated by biological signals play an increasingly important role in biotechnology applications. We exploit the programmability of CRISPR-associated nucleases to actuate hydrogels containing DNA as a structural element or as an anchor for pendant groups. After activation by guide RNA–defined inputs, Cas12a cleaves DNA in the gels, thereby converting biological information into changes in material properties. We report four applications: (i) branched poly(ethylene glycol) hydrogels releasing DNA-anchored compounds, (ii) degradable polyacrylamide-DNA hydrogels encapsulating nanoparticles and live cells, (iii) conductive carbon-black–DNA hydrogels acting as degradable electrical fuses, and (iv) a polyacrylamide-D...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
In situ tissue repair holds great potential as a cell-free regenerative strategy. A critical aspect ...
The programmable spatiotemporal release of molecular outputs is a prerequisite for creating new clas...
Materials that sense and respond to biological signals in their environment have a broad range of po...
Due to considerable progress in DNA nanotechnology, DNA is gaining significant attention as a progra...
Due to considerable progress in DNA nanotechnology, DNA is gaining significant attention as a progra...
Hydrogels are crosslinked hydrophilic polymers that undergo swelling in water. The gel volume is aff...
DNA nanotechnology-based nanosystems and macrosystems have attracted much attention in the biomedica...
The ability to program soft materials to undergo observable shape transformations in response to env...
Engineering complex tissues that can enhance native tissue functions holds enormous promise for trea...
In this paper, a DNA hydrogel with low DNA concentration, short sticky end, and good mechanical stre...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
With the simple functionalization method and good biocompatibility, an aptamer-integrated DNA hydrog...
<div><p></p><p>Significant research has focused on investigating the potential of hydrogels in vario...
With the simple functionalization method and good biocompatibility, an aptamer-integrated DNA hydrog...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
In situ tissue repair holds great potential as a cell-free regenerative strategy. A critical aspect ...
The programmable spatiotemporal release of molecular outputs is a prerequisite for creating new clas...
Materials that sense and respond to biological signals in their environment have a broad range of po...
Due to considerable progress in DNA nanotechnology, DNA is gaining significant attention as a progra...
Due to considerable progress in DNA nanotechnology, DNA is gaining significant attention as a progra...
Hydrogels are crosslinked hydrophilic polymers that undergo swelling in water. The gel volume is aff...
DNA nanotechnology-based nanosystems and macrosystems have attracted much attention in the biomedica...
The ability to program soft materials to undergo observable shape transformations in response to env...
Engineering complex tissues that can enhance native tissue functions holds enormous promise for trea...
In this paper, a DNA hydrogel with low DNA concentration, short sticky end, and good mechanical stre...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
With the simple functionalization method and good biocompatibility, an aptamer-integrated DNA hydrog...
<div><p></p><p>Significant research has focused on investigating the potential of hydrogels in vario...
With the simple functionalization method and good biocompatibility, an aptamer-integrated DNA hydrog...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
In situ tissue repair holds great potential as a cell-free regenerative strategy. A critical aspect ...
The programmable spatiotemporal release of molecular outputs is a prerequisite for creating new clas...