Tissue engineering of chondrocytes on a Random Positioning Machine (RPM) is a new strategy for cartilage regeneration. Using a three-dimensional RPM, a device designed to simulate microgravity on Earth, we investigated the early effects of RPM exposure on human chondrocytes of six different donors after 30 min, 2 h, 4 h, 16 h, and 24 h and compared the results with the corresponding static controls cultured under normal gravity conditions. As little as 30 min of RPM exposure resulted in increased expression of several genes responsible for cell motility, structure and integrity (beta-actin); control of cell growth, cell proliferation, cell differentiation and apoptosis (TGF-b1, osteopontin); and cytoskeletal components such as microtubules ...
Purpose During in vitro chondrogenesis of human mesenchymal stem cells (hMSCs) hypertrophy is an ina...
Adequate mechanical stimulation is essential for cellular health and tissue maintenance, including a...
How microgravity affects the biology of human cells and the formation of 3D cell cultures in real an...
Tissue engineering of chondrocytes on a Random Positioning Machine (RPM) is a new strategy for carti...
Tissue engineering with chondrocytes on the random positioning machine (RPM) is a new strategy of ca...
Chondrocytes are the only cell type found in human cartilage consisting of proteoglycans and type II...
Tissue engineering of chondrocytes on a Random Positioning Machine (RPM) is a new strategy for carti...
Investigations under simulated microgravity offer the opportunity for a better understanding of the ...
Investigations under simulated microgravity offer the opportunity for a better understanding of the ...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Background: Chondrocytes are the main cellular component of articular cartilage. In healthy tissue, ...
Human cells, when exposed to both real and simulated microgravity (s-µg), form 3D tissue const...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Purpose During in vitro chondrogenesis of human mesenchymal stem cells (hMSCs) hypertrophy is an ina...
Adequate mechanical stimulation is essential for cellular health and tissue maintenance, including a...
How microgravity affects the biology of human cells and the formation of 3D cell cultures in real an...
Tissue engineering of chondrocytes on a Random Positioning Machine (RPM) is a new strategy for carti...
Tissue engineering with chondrocytes on the random positioning machine (RPM) is a new strategy of ca...
Chondrocytes are the only cell type found in human cartilage consisting of proteoglycans and type II...
Tissue engineering of chondrocytes on a Random Positioning Machine (RPM) is a new strategy for carti...
Investigations under simulated microgravity offer the opportunity for a better understanding of the ...
Investigations under simulated microgravity offer the opportunity for a better understanding of the ...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Background: Chondrocytes are the main cellular component of articular cartilage. In healthy tissue, ...
Human cells, when exposed to both real and simulated microgravity (s-µg), form 3D tissue const...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Purpose During in vitro chondrogenesis of human mesenchymal stem cells (hMSCs) hypertrophy is an ina...
Adequate mechanical stimulation is essential for cellular health and tissue maintenance, including a...
How microgravity affects the biology of human cells and the formation of 3D cell cultures in real an...