The challenge of mimicking the extracellular matrix with artificial scaffolds that are able to reduce immunoresponse is still unmet. Recent findings have shown that mesenchymal stem cells (MSC) infiltrating into the implanted scaffold have effects on the implant integration by improving the healing process. Toward this aim, a novel polyamidoamine-based nanocomposite hydrogel is synthesized, cross-linked with porous nanomaterials (i.e., mesoporous silica nanoparticles), able to release chemokine proteins. A comprehensive viscoelasticity study confirms that the hydrogel provides optimal structural support for MSC infiltration and proliferation. The efficiency of this hydrogel, containing the chemoattractant stromal cell-derived factor 1\u3b1 ...
Instructive materials are expected to revolutionize stem cell based tissue engineering. As many stem...
The aim of stem cell therapy is to repair damaged tissues. Some of the challenges facing its success...
Hydrogels play an important role in tissue engineering due to their native extracellular matrix-like...
Chronic, non-healing skin wounds arising as a sequela of underlying disease are often difficult to t...
In situ tissue repair holds great potential as a cell-free regenerative strategy. A critical aspect ...
Therapeutic cell delivery is a major strategy to stimulate the repair in tissue engineering and rege...
The defined self-assembly of peptides (SAPs) into nanostructured bioactive hydrogels has great poten...
Polymeric hydrogel-based 3D scaffolds are well-known structures, being used for cultivation and diff...
The defined self-assembly of peptides (SAPs) into nanostructured bioactive hydrogels has great poten...
Biophysical cues can regulate stem cell behaviours and have been considered as critical parameters o...
Abstract Background Controlling the fate of mesenc...
To achieve effective tumor therapy and regenerate new tissue from defects formed by tumor atrophy, a...
Hydrogels play an important role in tissue engineering due to their native extracellular matrix-like...
Instructive materials are expected to revolutionize stem cell based tissue engineering. As many stem...
Instructive materials are expected to revolutionize stem cell based tissue engineering. As many stem...
Instructive materials are expected to revolutionize stem cell based tissue engineering. As many stem...
The aim of stem cell therapy is to repair damaged tissues. Some of the challenges facing its success...
Hydrogels play an important role in tissue engineering due to their native extracellular matrix-like...
Chronic, non-healing skin wounds arising as a sequela of underlying disease are often difficult to t...
In situ tissue repair holds great potential as a cell-free regenerative strategy. A critical aspect ...
Therapeutic cell delivery is a major strategy to stimulate the repair in tissue engineering and rege...
The defined self-assembly of peptides (SAPs) into nanostructured bioactive hydrogels has great poten...
Polymeric hydrogel-based 3D scaffolds are well-known structures, being used for cultivation and diff...
The defined self-assembly of peptides (SAPs) into nanostructured bioactive hydrogels has great poten...
Biophysical cues can regulate stem cell behaviours and have been considered as critical parameters o...
Abstract Background Controlling the fate of mesenc...
To achieve effective tumor therapy and regenerate new tissue from defects formed by tumor atrophy, a...
Hydrogels play an important role in tissue engineering due to their native extracellular matrix-like...
Instructive materials are expected to revolutionize stem cell based tissue engineering. As many stem...
Instructive materials are expected to revolutionize stem cell based tissue engineering. As many stem...
Instructive materials are expected to revolutionize stem cell based tissue engineering. As many stem...
The aim of stem cell therapy is to repair damaged tissues. Some of the challenges facing its success...
Hydrogels play an important role in tissue engineering due to their native extracellular matrix-like...