Previous work has indicated that surface imprinted polymers (SIPs) allow for highly specific cell detection through macromolecular cell imprints. The combination of SIPs with a heat-transfer-based read-out technique has led to the development of a selective, label-free, low-cost, and user-friendly cell detection assay. In this study, the breast cancer cell line ZR-75-1 is used to assess the potential of the platform for monitoring the quality of a cell culture in time. For this purpose, we show that the proposed methodology is able to discriminate between the original cell line (adherent growth, ZR-75-1a) and a descendant cell line (suspension growth, ZR-75-1s). Moreover, ZR-75-1a cells were cultured for a prolonged period of time and analy...
Background: It is becoming recognised that traditional methods of culture in vitro on flat substrate...
In this work we present the first steps towards a molecularly imprinted polymer (MIP)-based biomime...
In this work we present the first steps towards a molecularly imprinted polymer (MIP)-based biomimet...
Previous work has indicated that surface imprinted polymers (SIPs) allow for highly specific cell de...
Surface-imprinted polymers allow for specific cell detection based on simultaneous recognition of th...
In this article, we describe a novel straightforward method for the specific identification of viabl...
Surface-imprinted polymers allow for specific cell detection based on simultaneous recognition of th...
In this article, we describe a novel straightforward method for the specific identification of viabl...
In this article, we increased the sensitivity of the heat-transfer method (HTM) for the detection of...
In recent years, biosensors have become increasingly important in various scientific domains includi...
Previous studies have shown that selective synthetic cell receptors can be produced by cell imprinti...
This work focuses on the development of a label-free biomimetic sensor for the specific and selectiv...
Background: It is becoming recognised that traditional methods of culture in vitro on flat substrate...
In this work we present the first steps towards a molecularly imprinted polymer (MIP)-based biomime...
In this work we present the first steps towards a molecularly imprinted polymer (MIP)-based biomimet...
Previous work has indicated that surface imprinted polymers (SIPs) allow for highly specific cell de...
Surface-imprinted polymers allow for specific cell detection based on simultaneous recognition of th...
In this article, we describe a novel straightforward method for the specific identification of viabl...
Surface-imprinted polymers allow for specific cell detection based on simultaneous recognition of th...
In this article, we describe a novel straightforward method for the specific identification of viabl...
In this article, we increased the sensitivity of the heat-transfer method (HTM) for the detection of...
In recent years, biosensors have become increasingly important in various scientific domains includi...
Previous studies have shown that selective synthetic cell receptors can be produced by cell imprinti...
This work focuses on the development of a label-free biomimetic sensor for the specific and selectiv...
Background: It is becoming recognised that traditional methods of culture in vitro on flat substrate...
In this work we present the first steps towards a molecularly imprinted polymer (MIP)-based biomime...
In this work we present the first steps towards a molecularly imprinted polymer (MIP)-based biomimet...