3-dimensional (3D) culture models have the potential to bridge the gap between monolayer cell culture and in vivo studies. To benefit anti-cancer drug discovery from 3D models, new techniques are needed that enable their use in high-throughput (HT) screening amenable formats. We have established miniaturized 3D culture methods robust enough for automated HT screens. We have applied these methods to evaluate the sensitivity of normal and tumorigenic breast epithelial cell lines against a panel of oncology drugs when cultured as monolayers (2D) and spheroids (3D). We have identified two classes of compounds that exhibit preferential cytotoxicity against cancer cells over normal cells when cultured as 3D spheroids: microtubule-targeting agents...
Culture of cells as three-dimensional (3D) aggregates can enhance in vitro tests for basic biologica...
Anti-cancer drug development typically utilizes high-throughput screening with two-dimensional (2D) ...
Background: Three-dimensional (3D) in-vitro cultures are recognized for recapitulating the physiolog...
<div><p>3-dimensional (3D) culture models have the potential to bridge the gap between monolayer cel...
<div><p>The traditional method for studying cancer <i>in vitro</i> is to grow immortalized cancer ce...
The traditional method for studying cancer in vitro is to grow immortalized cancer cells in two-dime...
High attrition of new oncology drug candidates in clinical trials is partially caused by the poor pr...
Over the past few years, establishment and adaptation of cell-based assays for drug development and ...
3D tissue cultures provide a more physiologically relevant context for the screening of compounds, c...
3D tissue cultures provide a more physiologically relevant context for the screening of compounds, c...
3D tissue cultures provide a more physiologically relevant context for the screening of compounds, c...
Today, innovative three-dimensional (3D) cell culture models have been proposed as viable and biomim...
BACKGROUND:Three-dimensional (3D) in-vitro cultures are recognized for recapitulating the physiologi...
Cancer cells have routinely been cultured in 2-dimensions (2D) on a plastic surface. This technique,...
Two-dimensional (2D) cell culture models are frequently used in drug discovery for the development o...
Culture of cells as three-dimensional (3D) aggregates can enhance in vitro tests for basic biologica...
Anti-cancer drug development typically utilizes high-throughput screening with two-dimensional (2D) ...
Background: Three-dimensional (3D) in-vitro cultures are recognized for recapitulating the physiolog...
<div><p>3-dimensional (3D) culture models have the potential to bridge the gap between monolayer cel...
<div><p>The traditional method for studying cancer <i>in vitro</i> is to grow immortalized cancer ce...
The traditional method for studying cancer in vitro is to grow immortalized cancer cells in two-dime...
High attrition of new oncology drug candidates in clinical trials is partially caused by the poor pr...
Over the past few years, establishment and adaptation of cell-based assays for drug development and ...
3D tissue cultures provide a more physiologically relevant context for the screening of compounds, c...
3D tissue cultures provide a more physiologically relevant context for the screening of compounds, c...
3D tissue cultures provide a more physiologically relevant context for the screening of compounds, c...
Today, innovative three-dimensional (3D) cell culture models have been proposed as viable and biomim...
BACKGROUND:Three-dimensional (3D) in-vitro cultures are recognized for recapitulating the physiologi...
Cancer cells have routinely been cultured in 2-dimensions (2D) on a plastic surface. This technique,...
Two-dimensional (2D) cell culture models are frequently used in drug discovery for the development o...
Culture of cells as three-dimensional (3D) aggregates can enhance in vitro tests for basic biologica...
Anti-cancer drug development typically utilizes high-throughput screening with two-dimensional (2D) ...
Background: Three-dimensional (3D) in-vitro cultures are recognized for recapitulating the physiolog...