Three-dimensional (3D) printing has been used to fabricate biomaterial scaffolds with finely controlled physical architecture and user-defined patterning of biological ligands. Excitingly, recent advances in bioprinting have enabled the development of highly biomimetic hydrogels for the treatment of fibrosis and the promotion of wound healing. Bioprinted hydrogels offer more accurate spatial recapitulation of the biochemical and biophysical cues that inhibit fibrosis and promote tissue regeneration, augmenting the therapeutic potential of hydrogel-based therapies. Accordingly, bioprinted hydrogels have been used for the treatment of fibrosis in a diverse array of tissues and organs, including the skin, heart, and endometrium. Furthermore, b...
The goal of regenerative medicine is the synthesis of replacement tissue by positioning vital cells ...
With the advent of additive manufacturing and its recent use in regenerative medicine, bioprinting h...
Robotic dispensing-based 3D bioprinting represents one of the most powerful technologies to develop ...
The past a few decades have seen exponential growth in the field of regenerative medicine. What bega...
3D bioprinting has been rising lately in importance due to the shortage of organs for transplants an...
Hydrogels are three-dimensional polymer networks with hydrophilic properties. The modifiable propert...
In recent years, tissue engineering has achieved significant advancements towards the repair of dama...
Significance: Skin tissue damage is a major challenge and a burden on healthcare systems, from burns...
Three-dimensional (3D) printing is well acknowledged to constitute an important technology in tissue...
Development of biomaterial-based bioinks is critical for replacement and/or regeneration of tissues ...
Tissue regeneration using in-vitro scaffold becomes a vital mean to mimic the in-vivo counterpart du...
Regenerative medicine and tissue engineering have seen unprecedented growth in the past decade, driv...
[[abstract]]Chronic cutaneous wounds from tissue trauma or extensive burns could impair skin barrier...
The use of three-dimensional bioprinting technology combined with the principle of tissue engineerin...
It has been widely perceived that three-dimensional bioprinted synthetic tissues and organ can be a ...
The goal of regenerative medicine is the synthesis of replacement tissue by positioning vital cells ...
With the advent of additive manufacturing and its recent use in regenerative medicine, bioprinting h...
Robotic dispensing-based 3D bioprinting represents one of the most powerful technologies to develop ...
The past a few decades have seen exponential growth in the field of regenerative medicine. What bega...
3D bioprinting has been rising lately in importance due to the shortage of organs for transplants an...
Hydrogels are three-dimensional polymer networks with hydrophilic properties. The modifiable propert...
In recent years, tissue engineering has achieved significant advancements towards the repair of dama...
Significance: Skin tissue damage is a major challenge and a burden on healthcare systems, from burns...
Three-dimensional (3D) printing is well acknowledged to constitute an important technology in tissue...
Development of biomaterial-based bioinks is critical for replacement and/or regeneration of tissues ...
Tissue regeneration using in-vitro scaffold becomes a vital mean to mimic the in-vivo counterpart du...
Regenerative medicine and tissue engineering have seen unprecedented growth in the past decade, driv...
[[abstract]]Chronic cutaneous wounds from tissue trauma or extensive burns could impair skin barrier...
The use of three-dimensional bioprinting technology combined with the principle of tissue engineerin...
It has been widely perceived that three-dimensional bioprinted synthetic tissues and organ can be a ...
The goal of regenerative medicine is the synthesis of replacement tissue by positioning vital cells ...
With the advent of additive manufacturing and its recent use in regenerative medicine, bioprinting h...
Robotic dispensing-based 3D bioprinting represents one of the most powerful technologies to develop ...