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Article detail · 2020 · article

Differential chemical imaging of extracellular acidification within microfluidic channels using a plasma-functionalized light-addressable potentiometric sensor (LAPS)

ISSN2352-4510
YÖKSİS OpenAlex Open access · hybrid
Year2020
Citations10OpenAlex
Percentile%72.9
FWCI1.171.00 = world average
Scopus (SJR)Q1

Data source split

  • YÖKSİSYÖKSİS article record
  • YÖKSİS venuePhysics in Medicine
  • Catalog match (ISSN)Physics in Medicine
  • OpenAlexOpenAlex enrichment (abstract, citations, topics)
  • Semantic Scholarcitation count (not merged with OpenAlex)

Abstract

OpenAlex English

Extracellular acidification is a basic indicator for alterations in two vital metabolic pathways: glycolysis and cellular respiration. Measuring these alterations by monitoring extracellular acidification using cell-based biosensors such as LAPS plays an important role in studying these pathways whose disorders are associated with numerous diseases including cancer. However, the surface of the biosensors must be specially tailored to ensure high cell compatibility so that cells can represent more in vivo-like behavior, which is critical to gain more realistic in vitro results from the analyses, e.g., drug discovery experiments. In this work, O2 plasma patterning on the LAPS surface is studied to enhance surface features of the sensor chip, e.g., wettability and biofunctionality. The surface treated with O2 plasma for 30 s exhibits enhanced cytocompatibility for adherent CHO–K1 cells, which promotes cell spreading and proliferation. The plasma-modified LAPS chip is then integrated into a microfluidic system, which provides two identical channels to facilitate differential measurements of the extracellular acidification of CHO–K1 cells. To the best of our knowledge, it is the first time that extracellular acidification within microfluidic channels is quantitatively visualized as differential (bio-)chemical images.

Topics

Citations

OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.

10citationsOpenAlex · cited_by_count (cache / database)

1 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).

  1. 2021 Cryopreservation of a cell-based biosensor chip modified with elastic polymer fibers enabling ready-to-use on-site applicationsCitations 29 · OpenAlex

Authors

4
  1. DUA ÖZSOYLU 1
  2. SEFA KIZILDAĞ DOKUZ EYLÜL ÜNİVERSİTESİ 2
  3. Michael J Schoning 3
  4. Torsten Wagner 4