PNA-Based Graphene Oxide/Porous Silicon Hybrid Biosensor: Towards a Label-Free Optical Assay for Brugada Syndrome

Peptide nucleic acid (PNA) is a synthetic DNA mimic that outperforms the properties of traditional oligonucleotides (ONs). On account of its outstanding features, such as remarkable binding affinity towards complementary DNA or RNA as well as high thermal and chemical stability, PNA has been propose...

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Veröffentlicht in:Nanomaterials (Basel, Switzerland) Switzerland), 2020-11, Vol.10 (11), p.2233
Hauptverfasser: Moretta, Rosalba, Terracciano, Monica, Borbone, Nicola, Oliviero, Giorgia, Schiattarella, Chiara, Piccialli, Gennaro, Falanga, Andrea Patrizia, Marzano, Maria, Dardano, Principia, De Stefano, Luca, Rea, Ilaria
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Sprache:eng
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Zusammenfassung:Peptide nucleic acid (PNA) is a synthetic DNA mimic that outperforms the properties of traditional oligonucleotides (ONs). On account of its outstanding features, such as remarkable binding affinity towards complementary DNA or RNA as well as high thermal and chemical stability, PNA has been proposed as a valuable alternative to the ON probe in gene-sensor design. In this study, a hybrid transducer made-up of graphene oxide (GO) nano-sheets covalently grafted onto a porous silicon (PSi) matrix has been investigated for the early detection of a genetic cardiac disorder, the Brugada syndrome (BS). A functionalization strategy towards the realization of a potential PNA-based device is described. A PNA, able to detect the SCN5A gene associated with the BS, has been properly synthesized and used as a bioprobe for the realization of a proof-of-concept label-free optical PNA-biosensor. PSi reflectance and GO photoluminescence signals were simultaneously exploited for the monitoring of the device functionalization and response.
ISSN:2079-4991
2079-4991
DOI:10.3390/nano10112233