This review covers the application of polymeric materials in stem cell bioengineering. Main emphasis is directed towards current material design concepts that mimic distinct exogenous signals of the stem cell microenvironment. Progress within the field of stem cell-specific biomaterials will be discussed, focusing on pluripotent, hematopoietic, mesenchymal and neural stem cells. The future role of biomaterials will be outlined with possible applications for cell reprogramming and engineering cancer cell microenvironments
Abstract: Tissue engineering and regenerative medicine strategies could offer new hope for patients ...
International audienceCells respond to a variety of stimuli, including biochemical, topographical an...
Proper tissue function and regeneration rely on robust spatial and temporal control of biophysical a...
This review covers the application of polymeric materials in stem cell bioengineering. Main emphasis...
Patients with organ failure often suffer from increased morbidity and decreased quality of life. Cur...
Human pluripotent stem cells (hPSCs), including embryonic stem cells (hESCs) and induced pluripotent...
Tissue engineering is a very rapidly developing domain of science. There is a huge interest in the b...
Stem cells are well-known to have prominent roles in tissue engineering applications. Embryonic stem...
Since Langer’s seminal work, polymers have been on every corner of tissue engineering. The roles of ...
Biomaterials and tissue regeneration represent two fields of intense research and rapid advancement....
The development of distinct biomimetic microenvironments for regulating stem cell behavior and bioen...
Abstract Cell therapy has revolutionized the treatment of various diseases, such as cancers, genetic...
In this review, current research in the field of biomaterial properties for directing stem cells are...
Pluripotent stem cells (PSCs) represent an exciting cell source for tissue engineering and regenerat...
The aim of this PhD thesis was to prepare bioactive scaffolds to support and guide the cardiac tissu...
Abstract: Tissue engineering and regenerative medicine strategies could offer new hope for patients ...
International audienceCells respond to a variety of stimuli, including biochemical, topographical an...
Proper tissue function and regeneration rely on robust spatial and temporal control of biophysical a...
This review covers the application of polymeric materials in stem cell bioengineering. Main emphasis...
Patients with organ failure often suffer from increased morbidity and decreased quality of life. Cur...
Human pluripotent stem cells (hPSCs), including embryonic stem cells (hESCs) and induced pluripotent...
Tissue engineering is a very rapidly developing domain of science. There is a huge interest in the b...
Stem cells are well-known to have prominent roles in tissue engineering applications. Embryonic stem...
Since Langer’s seminal work, polymers have been on every corner of tissue engineering. The roles of ...
Biomaterials and tissue regeneration represent two fields of intense research and rapid advancement....
The development of distinct biomimetic microenvironments for regulating stem cell behavior and bioen...
Abstract Cell therapy has revolutionized the treatment of various diseases, such as cancers, genetic...
In this review, current research in the field of biomaterial properties for directing stem cells are...
Pluripotent stem cells (PSCs) represent an exciting cell source for tissue engineering and regenerat...
The aim of this PhD thesis was to prepare bioactive scaffolds to support and guide the cardiac tissu...
Abstract: Tissue engineering and regenerative medicine strategies could offer new hope for patients ...
International audienceCells respond to a variety of stimuli, including biochemical, topographical an...
Proper tissue function and regeneration rely on robust spatial and temporal control of biophysical a...