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Microfluidic Sensors with Impregnated Fluorophores for Simultaneous Imaging of Spatial Structure and Chemical Oxygen Gradients.
Grate, Jay W; Liu, Bingwen; Kelly, Ryan T; Anheier, Norman C; Schmidt, Thomas M.
Afiliação
  • Grate JW; Pacific Northwest National Laboratory, P.O. Box 999, Richland , Washington 99352 , United States.
  • Liu B; Pacific Northwest National Laboratory, P.O. Box 999, Richland , Washington 99352 , United States.
  • Kelly RT; Pacific Northwest National Laboratory, P.O. Box 999, Richland , Washington 99352 , United States.
  • Anheier NC; Pacific Northwest National Laboratory, P.O. Box 999, Richland , Washington 99352 , United States.
  • Schmidt TM; Department of Ecology and Evolutionary Biology , University of Michigan , Ann Arbor , Michigan 48109 , United States.
ACS Sens ; 4(2): 317-325, 2019 02 22.
Article em En | MEDLINE | ID: mdl-30609370
ABSTRACT
Interior surfaces of polystyrene microfluidic structures were impregnated with the oxygen sensing dye Pt(II) tetra(pentafluorophenyl)porphyrin (PtTFPP) using a solvent-induced fluorophore impregnation (SIFI) method. Using this technique, microfluidic oxygen sensors are obtained that enable simultaneous imaging of both chemical oxygen gradients and the physical structure of the microfluidic interior. A gentle method of fluorophore impregnation using acetonitrile solutions of PtTFPP at 50 °C was developed leading to a 10-µm-deep region containing fluorophore. This region is localized at the surface to sense oxygen in the interior fluid during use. Regions of the device that do not contact the interior fluid pathways lack fluorophores and are dark in fluorescent imaging. The technique was demonstrated on straight microchannel and pore network devices, the latter having pillars of 300 µm diameter spaced center to center at 340 µm providing pore throats of 40 µm. Sensing within channels or pores and imaging across the pore network devices were performed using a Lambert LIFA-P frequency domain fluorescence lifetime imaging system on a Leica microscope platform. Calibrations of different devices prepared by the SIFI method were indistinguishable. Gradient imaging showed fluorescent regions corresponding to the fluid pore network, dark pillars, and fluorescent lifetime varying across the gradient, thus providing both physical and chemical imaging. More generally, the SIFI technique can impregnate the interior surfaces of other polystyrene containers, such as cuvettes or cell and tissue culture containers, to enable sensing of interior conditions.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Oxigênio / Dispositivos Lab-On-A-Chip / Imagem Óptica / Corantes Fluorescentes Idioma: En Revista: ACS Sens Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Oxigênio / Dispositivos Lab-On-A-Chip / Imagem Óptica / Corantes Fluorescentes Idioma: En Revista: ACS Sens Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Estados Unidos