Three-dimensional (3D) cell culture is often mentioned in the context of regenerative medicine, for example, for the replacement of ischemic myocardium with tissue-engineered muscle constructs. Additionally, 3D cell culture is used, although less commonly, in basic research, toxicology, and drug development. These applications have recently benefited from innovations in stem cell technologies allowing the mass-production of hiPSC-derived cardiomyocytes or other cardiovascular cells, and from new culturing methods including organ-on-chip and bioprinting technologies. On the analysis side, improved sensors, computer-assisted image analysis, and data collection techniques have lowered the bar for switching to 3D cell culture models. Neverthele...
Cardiomyocytes (CMs), endothelial cells (ECs), smooth-muscle cells (SMCs), and cardiac fibroblasts (...
Purpose: Both cardiomyocytes and cardiac fibroblasts (CF) play essential roles in cardiac developmen...
Three-dimensional (3D) myocardial tissues for studying human heart biology, physiology and pharmacol...
The adult human heart cannot regain complete cardiac function following tissue injury, making cardia...
In the last decade, 3D bioprinting technology has emerged as an innovative tissue engineering approa...
In the last decade, 3D bioprinting technology has emerged as an innovative tissue engineering approa...
Two-dimensional (2D) cell culture is a valuable method for cell-based research, However, it may prov...
The substantial progress of the human induced pluripotent stem cell (hiPSC) technologies over the la...
Recently, stem cells have been drawing increasing interest in basic and translational research that ...
Research in mammalian cell biology often relies on developing in vitro models to enable the growth o...
Abstract: Cell culture is an important tool for biological research. Two-dimensional cell culture ha...
Traditional two dimensional cell culture has enabled great strides in biomedicine but needs to be im...
Although historically, the traditional bidimensional in vitro cell system has been widely used in re...
3D cell cultures are becoming the new standard for cell-based in vitro research, due to their higher...
Cell culture is an important tool for biological research. Two-dimensional cell culture has been use...
Cardiomyocytes (CMs), endothelial cells (ECs), smooth-muscle cells (SMCs), and cardiac fibroblasts (...
Purpose: Both cardiomyocytes and cardiac fibroblasts (CF) play essential roles in cardiac developmen...
Three-dimensional (3D) myocardial tissues for studying human heart biology, physiology and pharmacol...
The adult human heart cannot regain complete cardiac function following tissue injury, making cardia...
In the last decade, 3D bioprinting technology has emerged as an innovative tissue engineering approa...
In the last decade, 3D bioprinting technology has emerged as an innovative tissue engineering approa...
Two-dimensional (2D) cell culture is a valuable method for cell-based research, However, it may prov...
The substantial progress of the human induced pluripotent stem cell (hiPSC) technologies over the la...
Recently, stem cells have been drawing increasing interest in basic and translational research that ...
Research in mammalian cell biology often relies on developing in vitro models to enable the growth o...
Abstract: Cell culture is an important tool for biological research. Two-dimensional cell culture ha...
Traditional two dimensional cell culture has enabled great strides in biomedicine but needs to be im...
Although historically, the traditional bidimensional in vitro cell system has been widely used in re...
3D cell cultures are becoming the new standard for cell-based in vitro research, due to their higher...
Cell culture is an important tool for biological research. Two-dimensional cell culture has been use...
Cardiomyocytes (CMs), endothelial cells (ECs), smooth-muscle cells (SMCs), and cardiac fibroblasts (...
Purpose: Both cardiomyocytes and cardiac fibroblasts (CF) play essential roles in cardiac developmen...
Three-dimensional (3D) myocardial tissues for studying human heart biology, physiology and pharmacol...