The workshop held at the Casaccia Research Center on Jan 26, 2016 addressed the issue of self assembly of hybrid bio-inorganic electronic, sensing and information devices, exploiting the DNA property of self assembling into programmable shapes. Such nano sized DNA structures can be used as breadboards to self-organize specific connectors, such as peptides, aptamers and antibodies, functional protein components, inorganic nanostructure such as quantum dots or metal nanoparticles, single conducting polymer chains, and even natural prefabricated structures such as viral particles. The relevant skills available in the ENEA laboratories have been reviewed and are reported here together with an introductory note and the abstracts of the short presentations.
Il workshop tenuto il 26 gennaio 2016 presso il Centro della Casaccia ha affrontato la tematica dell'autoassemblaggio di dispositivi ibridi bio-inorganici di tipo sensoristico, elettronico e informatico, basati sulle proprietà di autoassemblaggio del DNA in forme programmabili. Queste nanostrutture di DNA possono poi essere utilizzate come basi di montaggio automatico e programmato per mezzo di connettori specifico quali peptidi, aptameri e anticorpi, di componentistica funzionale proteica, di quantum dota inorganici e nanoparticelle conduttrici di interesse fotonico, di singole catene di polimeri conduttori, e perfino di ulteriori nanostrutture prefabbricate come particelle virali.
Costruire dispositivi con un nanoLEGO bio-inorganico
Lico, Chiara;Dalmastri, Claudia;Cantale, Cristina;Baschieri, Selene;Morales, Pietro
2016-02-10
Abstract
The workshop held at the Casaccia Research Center on Jan 26, 2016 addressed the issue of self assembly of hybrid bio-inorganic electronic, sensing and information devices, exploiting the DNA property of self assembling into programmable shapes. Such nano sized DNA structures can be used as breadboards to self-organize specific connectors, such as peptides, aptamers and antibodies, functional protein components, inorganic nanostructure such as quantum dots or metal nanoparticles, single conducting polymer chains, and even natural prefabricated structures such as viral particles. The relevant skills available in the ENEA laboratories have been reviewed and are reported here together with an introductory note and the abstracts of the short presentations.File | Dimensione | Formato | |
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