Several years ago, we detected the formation of multicellular spheroids in experiments with human thyroid cancer cells cultured on the Random Positioning Machine (RPM), a ground-based model to simulate microgravity by continuously changing the orientation of samples. Since then, we have studied cellular mechanisms triggering the cells to leave a monolayer and aggregate to spheroids. Our work focused on spheroid-related changes in gene expression patterns, in protein concentrations, and in factors secreted to the culture supernatant during the period when growth is altered. We detected that factors inducing angiogenesis, the composition of integrins, the density of the cell monolayer exposed to microgravity, the enhanced production of caveol...
Many cell types form three-dimensional aggregates (MCS; multicellular spheroids), when they are cult...
Studies of astronauts, experimental animals, and cells have shown that, after spaceflights, the func...
In this study we focused on gravity-sensitive proteins of two human thyroid cancer cell lines (ML-1;...
Several years ago, we detected the formation of multicellular spheroids in experiments with human th...
Several years ago, we detected the formation of multicellular spheroids in experiments with human th...
Microgravity induces three-dimensional (3D) growth in numerous cell types. Despite substantial effor...
Three-dimensional multicellular spheroids (MCS) of human cells are important in cancer research. We ...
This study focused on the effects induced by a random positioning machine (RPM) on FTC-133 thyroid c...
Many types of cells transit in vitro from a two-to a three-dimensional growth, when they are exposed...
We recently demonstrated that the CAV1 gene was down-regulated, when poorly differentiated thyroid F...
When monolayers of tissue cancer cells of various origins are exposed to real or simulated micrograv...
MCF7 human breast cancer cells were cultured under normal gravity (1 g) and on a random positioning ...
Background/Aims: Spaceflight impacts on the function of the thyroid gland in vivo. In vitro normal a...
Background: Multicellular tumor spheroids (MCTS) formed scaffold-free under microgravity are of high...
Background: Multicellular tumor spheroids (MCTS) formed scaffold-free under microgravity are of high...
Many cell types form three-dimensional aggregates (MCS; multicellular spheroids), when they are cult...
Studies of astronauts, experimental animals, and cells have shown that, after spaceflights, the func...
In this study we focused on gravity-sensitive proteins of two human thyroid cancer cell lines (ML-1;...
Several years ago, we detected the formation of multicellular spheroids in experiments with human th...
Several years ago, we detected the formation of multicellular spheroids in experiments with human th...
Microgravity induces three-dimensional (3D) growth in numerous cell types. Despite substantial effor...
Three-dimensional multicellular spheroids (MCS) of human cells are important in cancer research. We ...
This study focused on the effects induced by a random positioning machine (RPM) on FTC-133 thyroid c...
Many types of cells transit in vitro from a two-to a three-dimensional growth, when they are exposed...
We recently demonstrated that the CAV1 gene was down-regulated, when poorly differentiated thyroid F...
When monolayers of tissue cancer cells of various origins are exposed to real or simulated micrograv...
MCF7 human breast cancer cells were cultured under normal gravity (1 g) and on a random positioning ...
Background/Aims: Spaceflight impacts on the function of the thyroid gland in vivo. In vitro normal a...
Background: Multicellular tumor spheroids (MCTS) formed scaffold-free under microgravity are of high...
Background: Multicellular tumor spheroids (MCTS) formed scaffold-free under microgravity are of high...
Many cell types form three-dimensional aggregates (MCS; multicellular spheroids), when they are cult...
Studies of astronauts, experimental animals, and cells have shown that, after spaceflights, the func...
In this study we focused on gravity-sensitive proteins of two human thyroid cancer cell lines (ML-1;...