Surface-imprinted polymers allow for specific cell detection based on simultaneous recognition of the cell shape, cell size, and cell membrane functionalities by macromolecular cell imprints. In this study, the specificity of detection and the detection sensitivity for target cells within a pool of non-target cells were analyzed for a cell-specific surface-imprinted polymer combined with a heat-transfer-based read-out technique (HTM). A modified Chinese hamster ovarian cell line (CHO-<i>ldlD</i>) was used as a model system on which the transmembrane protein mucin-1 (MUC1) could be excessively expressed and for which the occurrence of MUC1 glycosylation could be controlled. In specific cancer cells, the overexpressed MUC1 protein typically s...
Conventional in vitro culture studies on flat surfaces do not reproduce tissue environments, which h...
In this work we present the first steps towards a molecularly imprinted polymer (MIP)-based biomimet...
The strong affinity of biological receptors for their targets has been studied for many years. Nonco...
Surface-imprinted polymers allow for specific cell detection based on simultaneous recognition of th...
Previous work has indicated that surface imprinted polymers (SIPs) allow for highly specific cell de...
In this article, we describe a novel straightforward method for the specific identification of viabl...
In this article, we describe a novel straightforward method for the specific identification of viabl...
Previous studies have shown that selective synthetic cell receptors can be produced by cell imprinti...
Previous studies have shown that selective synthetic cell receptors can be produced by cell imprinti...
Cell imprinting on polymer layers produces synthetic receptors, so called surface imprinted polymers...
Proteomic mapping of cell surfaces is an invaluable tool for drug development and clinical diagnosti...
Selective cell recognition and capture has recently attracted significant interest due to its potent...
In this work we present the first steps towards a molecularly imprinted polymer (MIP)-based biomime...
Conventional in vitro culture studies on flat surfaces do not reproduce tissue environments, which h...
In this work we present the first steps towards a molecularly imprinted polymer (MIP)-based biomimet...
The strong affinity of biological receptors for their targets has been studied for many years. Nonco...
Surface-imprinted polymers allow for specific cell detection based on simultaneous recognition of th...
Previous work has indicated that surface imprinted polymers (SIPs) allow for highly specific cell de...
In this article, we describe a novel straightforward method for the specific identification of viabl...
In this article, we describe a novel straightforward method for the specific identification of viabl...
Previous studies have shown that selective synthetic cell receptors can be produced by cell imprinti...
Previous studies have shown that selective synthetic cell receptors can be produced by cell imprinti...
Cell imprinting on polymer layers produces synthetic receptors, so called surface imprinted polymers...
Proteomic mapping of cell surfaces is an invaluable tool for drug development and clinical diagnosti...
Selective cell recognition and capture has recently attracted significant interest due to its potent...
In this work we present the first steps towards a molecularly imprinted polymer (MIP)-based biomime...
Conventional in vitro culture studies on flat surfaces do not reproduce tissue environments, which h...
In this work we present the first steps towards a molecularly imprinted polymer (MIP)-based biomimet...
The strong affinity of biological receptors for their targets has been studied for many years. Nonco...