Hydrogels are attractive materials for stimulating 3D cell growth and tissue regeneration, and they provide mechanical support and physical cues to guide cell behavior. Herein, we developed a robust methodology to increase the stiffness of polyethylene glycol (PEG) hydrogels by successfully incorporating carbon nanotubes (CNTs) within the polymer matrix. Interestingly, hydrogels containing pristine CNTs showed a higher stiffness (1915 ± 102 Pa) than both hydrogels without CNTs (1197 ± 125 Pa) and hydrogels incorporating PEG-grafted CNTs (867 ± 103 Pa) (p < 0.005). The swelling ratio was lower for hydrogels with pristine CNTs (45.4 ± 3.5) and hydrogels without CNTs (46.7 ± 5.1) compared to the hydrogels with PEG-grafted CNTs (62.8 ± 2.6). To...
Mechanical robustness is an essential consideration in the development of hydrogel platforms for bon...
Poly(ethylene glycol) (PEG) hydrogels are popular for cell culture and tissue-engineering applicatio...
Hydrogels have great promise as an innovative biomedical material possessing many advantages such as...
Hydrogels are attractive materials for stimulating 3D cell growth and tissue regeneration, and they ...
Nanocomposite hydrogels based on carbon nanotubes (CNTs) are known to possess remarkable stiffness, ...
Nanocomposite hydrogels based on carbon nanotubes (CNTs) are known to possess remarkable stiffness, ...
Hydrogel has been widely used in tissue engineering application due to its biocompatibility and its ...
Hydrogels that mimic biological extracellular matrix (ECM) can provide cells with mechanical support...
Hongyu Sun,* Jing Zhou,* Zhu Huang,* Linlin Qu,* Ning Lin,* Chengxiao Liang, Ruiwu Dai, Lijun Tang, ...
Hydrogels have great potential as soft body tissue replacements. However due to their weak mechanica...
62 p.Biomaterials for cardiovascular tissue engineering should have good mechanical properties to wi...
Blood-contacting devices are increasingly important for the management of cardiovascular diseases. P...
Here we demonstrate a polysaccharide hydrogel reinforced with finely dispersed single-walled carbon ...
Nanocomposite hydrogels with enhanced mechanical properties could have tremendous biomedical applica...
Carbone nanotubes (CNTs) possess distinct properties, for example, hardness, which is very complemen...
Mechanical robustness is an essential consideration in the development of hydrogel platforms for bon...
Poly(ethylene glycol) (PEG) hydrogels are popular for cell culture and tissue-engineering applicatio...
Hydrogels have great promise as an innovative biomedical material possessing many advantages such as...
Hydrogels are attractive materials for stimulating 3D cell growth and tissue regeneration, and they ...
Nanocomposite hydrogels based on carbon nanotubes (CNTs) are known to possess remarkable stiffness, ...
Nanocomposite hydrogels based on carbon nanotubes (CNTs) are known to possess remarkable stiffness, ...
Hydrogel has been widely used in tissue engineering application due to its biocompatibility and its ...
Hydrogels that mimic biological extracellular matrix (ECM) can provide cells with mechanical support...
Hongyu Sun,* Jing Zhou,* Zhu Huang,* Linlin Qu,* Ning Lin,* Chengxiao Liang, Ruiwu Dai, Lijun Tang, ...
Hydrogels have great potential as soft body tissue replacements. However due to their weak mechanica...
62 p.Biomaterials for cardiovascular tissue engineering should have good mechanical properties to wi...
Blood-contacting devices are increasingly important for the management of cardiovascular diseases. P...
Here we demonstrate a polysaccharide hydrogel reinforced with finely dispersed single-walled carbon ...
Nanocomposite hydrogels with enhanced mechanical properties could have tremendous biomedical applica...
Carbone nanotubes (CNTs) possess distinct properties, for example, hardness, which is very complemen...
Mechanical robustness is an essential consideration in the development of hydrogel platforms for bon...
Poly(ethylene glycol) (PEG) hydrogels are popular for cell culture and tissue-engineering applicatio...
Hydrogels have great promise as an innovative biomedical material possessing many advantages such as...