Rapid and effective differentiation between normal and cancer cells is an important challenge for the diagnosis and treatment of tumors. Here, we describe an array-based system for identification of normal and cancer cells based on a “chemical nose/tongue” approach that exploits subtle changes in the physicochemical nature of different cell surfaces. Their differential interactions with functionalized nanoparticles are transduced through displacement of a multivalent polymer fluorophore that is quenched when bound to the particle and fluorescent after release. Using this sensing strategy we can rapidly (minutes/seconds) and effectively distinguish (i) different cell types; (ii) normal, cancerous and metastatic human breast cells; and (iii) ...
Following exposure to human plasma (HP), nanoparticles (NPs) are coated with a biomolecular layer re...
Stimuli-responsive nanomaterials are increasingly important in a variety of applications such as bio...
We report a nanosensor that uses cell lysates to rapidly profile the tumorigenicity of cancer cells....
Rapid and effective differentiation between normal and cancer cells is an important challenge for th...
A family of conjugated fluorescent polymers was used to create an array for cell sensing. Fluorescen...
Cancer stem cells (CSCs) contribute to multidrug resistance, tumor recurrence and metastasis, making...
Stimuli-responsive nanomaterials are increasingly important in a variety of applications such as bio...
La détection de biomarqueurs cancéreux pour le diagnostic est un enjeu clé dans la prise en charge e...
Rapid and sensitive detection of biomolecules is an important issue in nanomedicine. Many disorders ...
Gold nanoparticles (NPs) efficiently quench adsorbed fluorophores. Upon disruption of such complexes...
It is challenging to detect a broad range of malignant tumours at high resolution, because of profou...
The detection of cancer biomarkers in medical diagnostics is crucial for early detection and treatme...
Detection of a wide range of tumours remains a challenge in cancer diagnostics. By exploiting change...
Accurately distinguishing tumors from noncancerous inflammation and normal tissues is hugely signifi...
Two key features of cancer cells are sustained proliferation and invasion, which is preceded by a mo...
Following exposure to human plasma (HP), nanoparticles (NPs) are coated with a biomolecular layer re...
Stimuli-responsive nanomaterials are increasingly important in a variety of applications such as bio...
We report a nanosensor that uses cell lysates to rapidly profile the tumorigenicity of cancer cells....
Rapid and effective differentiation between normal and cancer cells is an important challenge for th...
A family of conjugated fluorescent polymers was used to create an array for cell sensing. Fluorescen...
Cancer stem cells (CSCs) contribute to multidrug resistance, tumor recurrence and metastasis, making...
Stimuli-responsive nanomaterials are increasingly important in a variety of applications such as bio...
La détection de biomarqueurs cancéreux pour le diagnostic est un enjeu clé dans la prise en charge e...
Rapid and sensitive detection of biomolecules is an important issue in nanomedicine. Many disorders ...
Gold nanoparticles (NPs) efficiently quench adsorbed fluorophores. Upon disruption of such complexes...
It is challenging to detect a broad range of malignant tumours at high resolution, because of profou...
The detection of cancer biomarkers in medical diagnostics is crucial for early detection and treatme...
Detection of a wide range of tumours remains a challenge in cancer diagnostics. By exploiting change...
Accurately distinguishing tumors from noncancerous inflammation and normal tissues is hugely signifi...
Two key features of cancer cells are sustained proliferation and invasion, which is preceded by a mo...
Following exposure to human plasma (HP), nanoparticles (NPs) are coated with a biomolecular layer re...
Stimuli-responsive nanomaterials are increasingly important in a variety of applications such as bio...
We report a nanosensor that uses cell lysates to rapidly profile the tumorigenicity of cancer cells....