In this article, we describe a novel straightforward method for the specific identification of viable cells (macrophages and cancer cell lines MCF-7 and Jurkat) in a buffer solution. The detection of the various cell types is based on changes of the heat transfer resistance at the solid-liquid interface of a thermal sensor device induced by binding of the cells to a surface-imprinted polymer layer covering an aluminum chip. We observed that the binding of cells to the polymer layer results in a measurable increase of heat transfer resistance, meaning that the cells act as a thermally insulating layer. The detection limit was found to be on the order of 10(4) cells/mL, and mutual cross-selectivity effects between the cells and different type...
Molecularly Imprinted Polymers (MIPs) are synthetic receptors that are able to selectively bind thei...
Previous studies have shown that selective synthetic cell receptors can be produced by cell imprinti...
Dynamic detection, as one of the core tenets in tumor diagnosis, relies on specific recognition, rap...
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...
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 increased the sensitivity of the heat-transfer method (HTM) for the detection of...
Surface-imprinted polymers allow for specific cell detection based on simultaneous recognition of th...
In recent years, biosensors have become increasingly important in various scientific domains includi...
© 2016 American Chemical Society. This work focuses on the development of a label-free biomimetic se...
Molecularly Imprinted Polymers (MIPs) are synthetic receptors that are able to selectively bind thei...
Previous studies have shown that selective synthetic cell receptors can be produced by cell imprinti...
Dynamic detection, as one of the core tenets in tumor diagnosis, relies on specific recognition, rap...
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...
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 increased the sensitivity of the heat-transfer method (HTM) for the detection of...
Surface-imprinted polymers allow for specific cell detection based on simultaneous recognition of th...
In recent years, biosensors have become increasingly important in various scientific domains includi...
© 2016 American Chemical Society. This work focuses on the development of a label-free biomimetic se...
Molecularly Imprinted Polymers (MIPs) are synthetic receptors that are able to selectively bind thei...
Previous studies have shown that selective synthetic cell receptors can be produced by cell imprinti...
Dynamic detection, as one of the core tenets in tumor diagnosis, relies on specific recognition, rap...