Dip-pen lithography (DPL) technique has been employed to develop a new flexible biosensor realized on nylon with the aim to detect the activity of human topoisomerase. The sensor is constituted by an ordered array of a DNA substrate on flexible nylon supports that can be exploited as a drug screening platform for anticancer molecules. Here, we demonstrate a rapid protocol that permits to immobilize minute quantities of DNA oligonucleotides by DPL on nylon surfaces. Theoretical and experimental aspects have been investigated to successfully print DNA oligonucleotides by DPL on such a porous and irregular substrate
In this paper, we report a novel DNA molecular beacon (MB)-based plastic biochip platform for scanom...
This paper presents a label-free biosensor for the detection of single-stranded pathogen DNA through...
A novel DNA sensing platform based on a Peptide Nucleic Acid - functionalized Microstructured Optica...
Dip-pen lithography (DPL) technique has been employed to develop a new flexible biosensor realized o...
The study of interaction between human Topoisomerase I (hTopo I) and the appropriate sequences of DN...
The first step for prevention and treatment of diseases is the accurate diagnosis. However, proper d...
Miniaturization of biosensors is envisaged by the development of biochips consisting of parallel mic...
Development of simple functionalization methods to attach biomolecules such as proteins and DNA on i...
A novel and highly sensitive fiber-optic DNA sensor based on a thin-core fiber modal interferometer ...
We report the description af a new low cost method to create a device based on a chemically modified...
High-performing hybridization platforms fabricated by reactive microcontact printing of DNA probes a...
The fabrication and characterization of surface-attached PEG-diacrylate hydrogel structures and thei...
The immobilization of biomolecules onto polymeric surfaces employed in the fabrication of biomedical...
The fabrication and characterization of surface-attached PEG-diacrylate hydrogel structures and thei...
A photochemical functionalization process which passivates the porous silicon surface of optical bio...
In this paper, we report a novel DNA molecular beacon (MB)-based plastic biochip platform for scanom...
This paper presents a label-free biosensor for the detection of single-stranded pathogen DNA through...
A novel DNA sensing platform based on a Peptide Nucleic Acid - functionalized Microstructured Optica...
Dip-pen lithography (DPL) technique has been employed to develop a new flexible biosensor realized o...
The study of interaction between human Topoisomerase I (hTopo I) and the appropriate sequences of DN...
The first step for prevention and treatment of diseases is the accurate diagnosis. However, proper d...
Miniaturization of biosensors is envisaged by the development of biochips consisting of parallel mic...
Development of simple functionalization methods to attach biomolecules such as proteins and DNA on i...
A novel and highly sensitive fiber-optic DNA sensor based on a thin-core fiber modal interferometer ...
We report the description af a new low cost method to create a device based on a chemically modified...
High-performing hybridization platforms fabricated by reactive microcontact printing of DNA probes a...
The fabrication and characterization of surface-attached PEG-diacrylate hydrogel structures and thei...
The immobilization of biomolecules onto polymeric surfaces employed in the fabrication of biomedical...
The fabrication and characterization of surface-attached PEG-diacrylate hydrogel structures and thei...
A photochemical functionalization process which passivates the porous silicon surface of optical bio...
In this paper, we report a novel DNA molecular beacon (MB)-based plastic biochip platform for scanom...
This paper presents a label-free biosensor for the detection of single-stranded pathogen DNA through...
A novel DNA sensing platform based on a Peptide Nucleic Acid - functionalized Microstructured Optica...