Emerging Designs of Electronic Devices in Biomedicine
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A long-standing goal of nanoelectronics is the development of integrated systems to be used in medicine as sensor, therapeutic, or theranostic devices. In this review, we examine the phenomena of transport and the interaction between electro-active charges and the material at the nanoscale. We then demonstrate how these mechanisms can be exploited to design and fabricate devices for applications in biomedicine and bioengineering. Specifically, we present and discuss electrochemical devices based on the interaction between ions and conductive polymers, such as organic electrochemical transistors (OFETs), electrolyte gated field-effect transistors (FETs), fin field-effect transistor (FinFETs), tunnelling field-effect transistors (TFETs), electrochemical lab-on-chips (LOCs). For these systems, we comment on their use in medicine.
Anti-Reflective Zeolite Coating for Implantable Bioelectronic Devices.
Oliva G, Bianco M, Fiorillo A, Pullano S Bioengineering (Basel). 2022; 9(8).
PMID: 36004929 PMC: 9405366. DOI: 10.3390/bioengineering9080404.
Methylglyoxal Adducts Levels in Blood Measured on by Portable Near-Infrared Spectroscopy.
Bonapace G, Gentile F, Coppede N, Coluccio M, Garo V, Vismara M Nanomaterials (Basel). 2021; 11(9).
PMID: 34578748 PMC: 8472697. DOI: 10.3390/nano11092432.
Nanoparticles: A New Approach to Upgrade Cancer Diagnosis and Treatment.
Yu Z, Gao L, Chen K, Zhang W, Zhang Q, Li Q Nanoscale Res Lett. 2021; 16(1):88.
PMID: 34014432 PMC: 8137776. DOI: 10.1186/s11671-021-03489-z.
Porfireva A, Plastinina K, Evtugyn V, Kuzin Y, Evtugyn G Sensors (Basel). 2021; 21(9).
PMID: 33922359 PMC: 8122775. DOI: 10.3390/s21092949.
Pirri C, Cocuzza M Micromachines (Basel). 2021; 12(3).
PMID: 33801509 PMC: 8000441. DOI: 10.3390/mi12030254.