Fabrication of a paper-based analytical device for multiple colorimetric analysis via inkjet-printing and paper-cutting

We introduce a process for the fabrication of a paper-based analytical device (PAD) for multiple colorimetric analysis via paper- cutting and inkjet-printing. To create the selective flow channels, hydrophobic barriers were formed by using hydrophobic polyvinyl chloride tape-cutting and ultraviolet-...

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Published inBiochip journal Vol. 9; no. 2; pp. 139 - 143
Main Authors Yu, Jun Ho, Jeong, Seong-Gun, Lee, Chang-Soo, Hwang, Jun-Young, Kang, Kyung-Tae, Kang, Heuiseok, Lee, Sang-Ho
Format Journal Article
LanguageEnglish
Published Seoul The Korean BioChip Society (KBCS) 01.06.2015
Springer Nature B.V
한국바이오칩학회
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ISSN1976-0280
2092-7843
DOI10.1007/s13206-015-9207-2

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Abstract We introduce a process for the fabrication of a paper-based analytical device (PAD) for multiple colorimetric analysis via paper- cutting and inkjet-printing. To create the selective flow channels, hydrophobic barriers were formed by using hydrophobic polyvinyl chloride tape-cutting and ultraviolet-curable resin printing. Multiple paper channels were isolated by the hydrophobic barriers on a single chip. An assay model was created from bovine serum albumin (BSA) and tetrabromophenol blue (TBPB) to verify the feasibility of the fabricated PAD. A multiple colorimetric analysis was demonstrated a reaction with different BSA concentrations after the TBPB regent was elaborately deposited onto the circular test spot areas by inkjet printing.
AbstractList We introduce a process for the fabrication of a paper-based analytical device (PAD) for multiple colorimetric analysis via paper- cutting and inkjet-printing. To create the selective flow channels, hydrophobic barriers were formed by using hydrophobic polyvinyl chloride tape-cutting and ultraviolet-curable resin printing. Multiple paper channels were isolated by the hydrophobic barriers on a single chip. An assay modelwas created from bovine serum albumin (BSA) andtetrabromophenol blue (TBPB) to verify the feasibilityof the fabricated PAD. A multiple colorimetric analysiswas demonstrated a reaction with different BSAconcentrations after the TBPB regent was elaboratelydeposited onto the circular test spot areas by inkjetprinting. KCI Citation Count: 12
We introduce a process for the fabrication of a paper-based analytical device (PAD) for multiple colorimetric analysis via paper- cutting and inkjet-printing. To create the selective flow channels, hydrophobic barriers were formed by using hydrophobic polyvinyl chloride tape-cutting and ultraviolet-curable resin printing. Multiple paper channels were isolated by the hydrophobic barriers on a single chip. An assay model was created from bovine serum albumin (BSA) and tetrabromophenol blue (TBPB) to verify the feasibility of the fabricated PAD. A multiple colorimetric analysis was demonstrated a reaction with different BSA concentrations after the TBPB regent was elaborately deposited onto the circular test spot areas by inkjet printing.
Author Yu, Jun Ho
Jeong, Seong-Gun
Kang, Kyung-Tae
Kang, Heuiseok
Lee, Chang-Soo
Hwang, Jun-Young
Lee, Sang-Ho
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  organization: Korea Institute of Industrial Technology
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Cutting
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Paper Chip
Colorimetric analysis
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  start-page: 115
  year: 1921
  ident: 9207_CR11
  publication-title: PNAS
  doi: 10.1073/pnas.7.4.115
– volume: 81
  start-page: 5990
  year: 2009
  ident: 9207_CR5
  publication-title: Anal. Chem.
  doi: 10.1021/ac900847g
– volume: 81
  start-page: 8447
  year: 2009
  ident: 9207_CR6
  publication-title: Anal. Chem.
  doi: 10.1021/ac901307q
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Snippet We introduce a process for the fabrication of a paper-based analytical device (PAD) for multiple colorimetric analysis via paper- cutting and inkjet-printing....
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StartPage 139
SubjectTerms Biomedical Engineering and Bioengineering
Biotechnology
Bovine serum albumin
Channels
Chemistry
Chemistry and Materials Science
Colorimetry
Hydrophobicity
Inkjet printing
Original Article
Polyvinyl chloride
Printing
Serum albumin
생물공학
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Title Fabrication of a paper-based analytical device for multiple colorimetric analysis via inkjet-printing and paper-cutting
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Volume 9
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