Despite the rapid and great developments in the field of 3D hydrogel printing, a major ongoing challenge is represented by the development of new processable materials that can be effectively used for bioink formulation. In this work, we present an approach to 3D deposit, a new class of fully-synthetic, biocompatible PolyIsoCyanide (PIC) hydrogels that exhibit a reverse gelation temperature close to physiological conditions (37 °C). Being fully-synthetic, PIC hydrogels are particularly attractive for tissue engineering, as their properties—such as hydrogel stiffness, polymer solubility, and gelation kinetics—can be precisely tailored according to process requirements. Here, for the first time, we demonstrate the feasibility ...
Progress within the field of biofabrication is hindered by a lack of suitable hydrogel formulations....
A major challenge in 3D bioprinting is the limited number of bioinks that fulfill the physiochemical...
[[abstract]]Three-dimensional (3D) bioprinting is a technology to print materials (bioink) with cell...
Despite the rapid and great developments in the field of 3D hydrogel printing, a major ongoing chall...
Despite the rapid and great developments in the field of 3D hydrogel printing, a major ongoing chall...
Contains fulltext : 192456.pdf (publisher's version ) (Open Access)11 p
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
Despite their highly attractive properties, 3D printing of hydrogel materials can be rather challeng...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
Progress within the field of biofabrication is hindered by a lack of suitable hydrogel formulations....
Progress within the field of biofabrication is hindered by a lack of suitable hydrogel formulations....
Thanks to their unique advantages, additive manufacturing technologies are revolutionizing almost al...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
There is a current need for the development of robust smart materials for a variety of medical, cons...
3D bioprinting has been rising lately in importance due to the shortage of organs for transplants an...
Progress within the field of biofabrication is hindered by a lack of suitable hydrogel formulations....
A major challenge in 3D bioprinting is the limited number of bioinks that fulfill the physiochemical...
[[abstract]]Three-dimensional (3D) bioprinting is a technology to print materials (bioink) with cell...
Despite the rapid and great developments in the field of 3D hydrogel printing, a major ongoing chall...
Despite the rapid and great developments in the field of 3D hydrogel printing, a major ongoing chall...
Contains fulltext : 192456.pdf (publisher's version ) (Open Access)11 p
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
Despite their highly attractive properties, 3D printing of hydrogel materials can be rather challeng...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
Progress within the field of biofabrication is hindered by a lack of suitable hydrogel formulations....
Progress within the field of biofabrication is hindered by a lack of suitable hydrogel formulations....
Thanks to their unique advantages, additive manufacturing technologies are revolutionizing almost al...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
There is a current need for the development of robust smart materials for a variety of medical, cons...
3D bioprinting has been rising lately in importance due to the shortage of organs for transplants an...
Progress within the field of biofabrication is hindered by a lack of suitable hydrogel formulations....
A major challenge in 3D bioprinting is the limited number of bioinks that fulfill the physiochemical...
[[abstract]]Three-dimensional (3D) bioprinting is a technology to print materials (bioink) with cell...