DocumentCode
2725257
Title
A nanosensor interface based on delta-sigma Arrays
Author
Crescentini, M. ; Rossi, Mattia ; Bennati, M. ; Thei, Frederico ; Baschirotto, A. ; Tartagni, M.
Author_Institution
Second Sch. of Eng., Univ. of Bologna, Cesena, Italy
fYear
2009
fDate
25-26 June 2009
Firstpage
163
Lastpage
167
Abstract
An emerging area of biosensors is based on the use of structures provided by recent advances of Nanotechnology such as nanowires, nanotubes and nanopores. Among them, the integration of natural nanopores such as ion channels with electronics is a promising approach to develop rapid, sensitive and reliable biosensors able to detect low concentration of target molecules or DNA sequencing. This paper presents a compact and low-cost system able to readout, process and record current in the pA range, provided by biological or synthetic nanopores. The approach is based on the idea that by processing the outputs of a large amount of single-molecule nanosensors would result in a significant increase of resolution and signal-to-noise ratio. The approach consists of an electronic interface able to detect current-based array of nanosensors, where the management of very large amount of data is critical for the readout process. As working example, we acquired the single molecule signals derived from non-covalent bindings between single alpha-hemolysin pores, embedded into an artificial lipid bilayer, and beta-cyclodextrin molecules. The system embeds the electronic readout with the microfluidic where is placed the nanosensor array. The electronic interface is a 0.5 mm2 current amplifier based on an array of SigmaDelta converters. Then the high rate data streams are processed and downsampled by a DSP that communicates with a PC via a USB interface for data processing and storage.
Keywords
DNA; biosensors; digital signal processing chips; nanobiotechnology; readout electronics; DNA sequencing; USB interface; artificial lipid bilayer; beta-cyclodextrin; biosensors; data processing; data storage; delta sigma arrays; electronic readout; ion channels; nanopores; nanosensor interface; nanotubes; nanowires; Biosensors; DNA; Lipidomics; Nanobioscience; Nanoporous materials; Nanotechnology; Nanotubes; Nanowires; Signal resolution; Signal to noise ratio;
fLanguage
English
Publisher
ieee
Conference_Titel
Advances in sensors and Interfaces, 2009. IWASI 2009. 3rd International Workshop on
Conference_Location
Trani
Print_ISBN
978-1-4244-4708-4
Electronic_ISBN
978-1-4244-4709-1
Type
conf
DOI
10.1109/IWASI.2009.5184788
Filename
5184788
Link To Document