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High-throughput roll-to-roll production of polymer biochips for multiplexed DNA detection in point-of-care diagnostics.
Toren, Pelin; Smolka, Martin; Haase, Anja; Palfinger, Ursula; Nees, Dieter; Ruttloff, Stephan; Kuna, Ladislav; Schaude, Cindy; Jauk, Sandra; Rumpler, Markus; Hierschlager, Bettina; Katzmayr, Ingo; Sonnleitner, Max; Thesen, Manuel W; Lohse, Mirko; Horn, Martin; Weigel, Wilfried; Strbac, Matija; Bijelic, Goran; Hemanth, Suhith; Okulova, Nastasia; Kafka, Jan; Kostler, Stefan; Stadlober, Barbara; Hesse, Jan.
Afiliação
  • Toren P; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
  • Smolka M; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
  • Haase A; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
  • Palfinger U; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
  • Nees D; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
  • Ruttloff S; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
  • Kuna L; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
  • Schaude C; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
  • Jauk S; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
  • Rumpler M; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Health - Institute for Biomedicine and Health Sciences, 8010 Graz, Austria.
  • Hierschlager B; GENSPEED Biotech GmbH, 4261 Rainbach, Austria.
  • Katzmayr I; GENSPEED Biotech GmbH, 4261 Rainbach, Austria.
  • Sonnleitner M; GENSPEED Biotech GmbH, 4261 Rainbach, Austria.
  • Thesen MW; micro resist technology GmbH, 12555 Berlin, Germany.
  • Lohse M; micro resist technology GmbH, 12555 Berlin, Germany.
  • Horn M; SCIENION AG, D-12489 Berlin, Germany.
  • Weigel W; SCIENION AG, D-12489 Berlin, Germany.
  • Strbac M; TECNALIA Research & Innovation, E-48160 Derio, Bizkaia, Spain.
  • Bijelic G; TECNALIA Research & Innovation, E-48160 Derio, Bizkaia, Spain.
  • Hemanth S; INMOLD A/S, Savsvinget 4B, DK-2970 Horsholm, Denmark.
  • Okulova N; INMOLD A/S, Savsvinget 4B, DK-2970 Horsholm, Denmark.
  • Kafka J; INMOLD A/S, Savsvinget 4B, DK-2970 Horsholm, Denmark.
  • Kostler S; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
  • Stadlober B; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
  • Hesse J; JOANNEUM RESEARCH Forschungsgesellschaft mbH, Materials-Institute for Surface Technologies and Photonics, A-8160 Weiz, Austria. Pelin.ToerenOezguen@joanneum.at Jan.Hesse@joanneum.at.
Lab Chip ; 20(22): 4106-4117, 2020 11 10.
Article em En | MEDLINE | ID: mdl-33090158
ABSTRACT
Roll-to-roll UV nanoimprint lithography has superior advantages for high-throughput manufacturing of micro- or nano-structures on flexible polymer foils with various geometries and configurations. Our pilot line provides large-scale structure imprinting for cost-effective polymer biochips (4500 biochips/hour), enabling rapid and multiplexed detections. A complete high-volume process chain of the technology for producing structures like µ-sized, triangular optical out-couplers or capillary channels (width from 1 µm to 2 mm, height from 200 nm up to 100 µm) to obtain biochips (width 25 mm, length 75 mm, height 100 µm to 1.5 mm) was described. The imprinting process was performed with custom-developed resins on polymer foils with resin thicknesses ranging between 125-190 µm. The produced chips were tested in a commercial point-of-care diagnostic system for multiplexed DNA analysis of methicillin resistant Staphylococcus aureus (e.g., mecA, mecC gene detections). Specific target DNA capturing was based on hybridisation between surface bound DNA probes and biotinylated targets from the sample. The immobilised biotinylated targets subsequently bind streptavidin-horseradish peroxidase conjugates, which in turn generate light upon incubation with a chemiluminescent substrate. To enhance the light out-coupling thus to improve the system performance, optical structures were integrated into the design. The limits-of-detection of mecA (25 bp) for chips with and without structures were calculated as 0.06 and 0.07 µM, respectively. Further, foil-based chips with fluidic channels were DNA functionalised in our roll-to-roll micro-array spotter following the imprinting. This straightforward approach of sequential imprinting and multiplexed DNA functionalisation on a single foil was also realised for the first time. The corresponding foil-based chips were able to detect mecA gene DNA sequences down to a 0.25 µM concentration.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Staphylococcus aureus Resistente à Meticilina Tipo de estudo: Diagnostic_studies Idioma: En Revista: Lab Chip Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Staphylococcus aureus Resistente à Meticilina Tipo de estudo: Diagnostic_studies Idioma: En Revista: Lab Chip Ano de publicação: 2020 Tipo de documento: Article