3D-printed microfluidics integrated with optical nanostructured porous aptasensors for protein detection.
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ABSTRACT: Microfluidic integration of biosensors enables improved biosensing performance and sophisticated lab-on-a-chip platform design for numerous applications. While soft lithography and polydimethylsiloxane (PDMS)-based microfluidics are still considered the gold standard, 3D-printing has emerged as a promising fabrication alternative for microfluidic systems. Herein, a 3D-printed polyacrylate-based microfluidic platform is integrated for the first time with a label-free porous silicon (PSi)-based optical aptasensor via a facile bonding method. The latter utilizes a UV-curable adhesive as an intermediate layer, while preserving the delicate nanostructure of the porous regions within the microchannels. As a proof-of-concept, a generic model aptasensor for label-free detection of his-tagged prote
SUBMITTER: Arshavsky-Graham S
PROVIDER: S-EPMC7862519 | biostudies-literature | 2021 Feb
REPOSITORIES: biostudies-literature
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