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e-journal

Bioelectrocatalytic System Coupled with Enzyme-Based Biocomputing Ensembles Performing Boolean Logic Operations: Approaching “Smart” Physiologically Controlled Biointerfaces

Jian Zhou - Nama Orang; Tsz Kin Tam - Nama Orang; Marcos Pita - Nama Orang; Maryna Ornatska - Nama Orang; Sergiy Minko - Nama Orang; Evgeny Katz - Nama Orang;

ABSTRACT
The modified electrode for electrocatalytic oxidation of NADH was developed using a pH-switchable redox interface. The operation of the modified electrode was controlled by logic operations performed by enzyme systems processing biochemical input signals. The electrocatalytic oxidation of NADH was activated upon appropriate combinations of the signals processed by the AND/OR logic operations performed by the enzymes. The modified interface was reset in a mute nonactive state by another enzyme reaction. The coupling between the enzyme logic systems and the bioelectrocatalytic interface was achieved by pH changes produced in situ by the enzyme reactions, resulting in different protonation states of the polymeric matrix associated with the electrode surface. The bioelectrocatalytic system integrated with biochemical computing systems opens the way to novel “smart” interfaces for multisignal biosensors and signal-controlled biofuel cells. In a long perspective, this approach will allow physiological control of implantable bioelectronic devices.

KEYWORDS: switchable interface • enzyme logic • switchable biolectrocatalysis • “smart” interface • signal-responsive material • modified surface


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Informasi Detail
Judul Seri
ACS Applied Materials & Interfaces
No. Panggil
-
Penerbit
Washington, DC : American Chemical Society., 2009
Deskripsi Fisik
ACS Appl. Mater. Interfaces, 2009, 1 (1), 144-149
Bahasa
English
ISBN/ISSN
-
Klasifikasi
-
Tipe Isi
-
Tipe Media
-
Tipe Pembawa
-
Edisi
-
Subjek
KIMIA
Info Detail Spesifik
-
Pernyataan Tanggungjawab
agus
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  • Bioelectrocatalytic System Coupled with Enzyme-Based Biocomputing Ensembles Performing Boolean Logic Operations: Approaching “Smart” Physiologically Controlled Biointerfaces
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